Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (21)

Search Parameters:
Keywords = bisexual flower

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
32 pages, 10539 KB  
Review
From Reproductive Biology to Woody Oil Utilization: An Integrated Review and Bibliometric Analysis of Idesia polycarpa
by Xiufang Huang, Zhikang Guo, Yuxuan Gan, Fang Chen and Mu Peng
Agronomy 2026, 16(18), 1833; https://doi.org/10.3390/agronomy16181833 - 17 Sep 2026
Viewed by 193
Abstract
Idesia polycarpa Maxim. is a predominantly dioecious woody oil species valued for its oil-bearing fruits, bioactive metabolites, and distinctive reproductive biology. To provide an integrated understanding of its biological characteristics, resource utilization, and research evolution, this study combines a concise review of current [...] Read more.
Idesia polycarpa Maxim. is a predominantly dioecious woody oil species valued for its oil-bearing fruits, bioactive metabolites, and distinctive reproductive biology. To provide an integrated understanding of its biological characteristics, resource utilization, and research evolution, this study combines a concise review of current knowledge with a bibliometric analysis of English-language publications from 2005 to 2025. The review summarizes current knowledge on reproductive biology, fruit and oil quality, lipid biosynthesis, phytochemical diversity, and processing utilization, while the bibliometric analysis includes 109 eligible publications from the Web of Science Core Collection using Microsoft Excel 2021, bibliometrix 4.5.0, VOSviewer 1.6.20, CiteSpace 7.0.R0, and SCImago Graphica 1.0.51. The review highlights that the resource value of I. polycarpa is determined by the interaction between reproductive characteristics, fruit development, lipid accumulation, phytochemical composition, and processing strategies, while available evidence indicates that molecular findings remain largely associated with developmental regulation and require further functional validation. Publication output rose markedly during 2023–2025 and peaked in 2025. China contributed the most publications, while institutional and author collaboration networks consisted of several relatively distinct groups with limited intergroup links. Reference co-citation and keyword analyses revealed three major bibliometric thematic domains: natural products and biological activities; fruit-oil evaluation and utilization; and genomic, developmental, and reproductive research. Fatty acids and oil-related traits remained persistent topics, whereas recent bursts of “cloning”, “allocation”, and “bisexual flower” indicated growing interest in molecular regulation and reproductive development. Overall, research on I. polycarpa has progressed from resource characterization toward molecular regulation and utilization-oriented studies. Future work should integrate germplasm evaluation, reproductive biology, oil quality, and processing traits through coordinated multidimensional approaches. Full article
Show Figures

Figure 1

18 pages, 9733 KB  
Article
Developmental and Molecular Insights into AgNO3-Induced Partial Masculinization and Stamen Abortion in Siraitia grosvenorii C. Jeffrey ex A.M. Lu and Zhi Y. Zhang
by Yan Wang, Yanyan Pei, Keke Ning, Jiahe Ning, Gang Li, Shixiang Wang, Qiong Zhou and Yunchuan Mo
Plants 2026, 15(18), 2796; https://doi.org/10.3390/plants15182796 - 11 Sep 2026
Viewed by 212
Abstract
This study focuses on Siraitia grosvenorii, an economically important crop endemic to Guangxi Province, China, with significant value in both the pharmaceutical and food industries. However, its dioecious reproductive system results in low natural pollination efficiency, necessitating reliance on costly artificial pollination [...] Read more.
This study focuses on Siraitia grosvenorii, an economically important crop endemic to Guangxi Province, China, with significant value in both the pharmaceutical and food industries. However, its dioecious reproductive system results in low natural pollination efficiency, necessitating reliance on costly artificial pollination in commercial production, which severely constrains large-scale cultivation and the breeding of improved varieties. Herein, we systematically investigated the molecular mechanisms of silver nitrate (AgNO3)-induced partial masculinization of female flowers, resulting in the formation of morphologically bisexual flowers with aborted stamens. Morphological observations revealed that untreated female flowers exhibited permanently arrested stamen primordia, whereas spraying treatments with 0–300 mg/L AgNO3 triggered the development of morphologically complete bisexual flowers. Nevertheless, AgNO3-induced stamens exhibited severely disrupted male reproductive development, as indicated by the absence of mature pollen grains at anthesis. Cytological evidence demonstrated that pollen abortion was initiated at the pollen mother cell (PMC) stage, accompanied by abnormal vacuolation and impaired nutrient metabolism in tapetal cells. The dominant abortive phenotype was that PMCs exhibited abnormal development and progressive degeneration during the meiotic developmental window. Methylation-sensitive amplification polymorphism (MSAP) assays further revealed markedly elevated CpG-type methylation levels in AgNO3-induced bisexual flowers at early developmental stages. Expression analysis revealed that SgWIP1 exhibited distinct temporal expression patterns among female, male, and AgNO3-induced bisexual flowers, with reduced expression during later stages of stamen development in induced bisexual flowers. Collectively, our findings confirm that AgNO3 only partially activates the stamen developmental cascade in S. grosvenorii. Extensive epigenetic reprogramming triggered by AgNO3, together with the inability to sustain the expression of core male-determining genes, is tightly linked to tapetal dysfunction and subsequent pollen sterility. This study aims to elucidate the unique mechanism by which AgNO3-induced partial masculinization in S. grosvenorii from multiple perspectives—including tissue and cellular structure, DNA methylation epigenetic modifications, and gene transcription regulation—using techniques such as morphoanatomy, histochemistry, epigenetics (MSAP), and gene expression analysis. The findings of this study will contribute to molecular breeding efforts focused on sex regulation and promote industrial development. Full article
(This article belongs to the Section Plant Development and Morphogenesis)
Show Figures

Figure 1

20 pages, 753 KB  
Review
Deciphering the Molecular Mechanisms That Control Ovule Development in Pomegranate
by Yujie Zhao, Hidenori Sassa, Ming Li, Yifei Miao, Xiaoyan Zhu, Pengbo Hao, Ran Wan, Kunxi Zhang, Liu Cong, Yawen Shen, Yu Liu, Miaomiao Wang, Jiangli Shi, Shangwei Song, Tuanhui Bai, Jian Jiao, Zhaohe Yuan and Xianbo Zheng
Horticulturae 2026, 12(1), 26; https://doi.org/10.3390/horticulturae12010026 - 26 Dec 2025
Viewed by 1136
Abstract
Plant seed number depends on ovule number initiated within the carpels, and it serves as a primary factor shaping fruit yield. Pomegranate trees exhibit bisexual flowers and functional male flowers. Pomegranate have anatropous ovules which are bitegmic and crassinucellate. Bisexual flowers possess the [...] Read more.
Plant seed number depends on ovule number initiated within the carpels, and it serves as a primary factor shaping fruit yield. Pomegranate trees exhibit bisexual flowers and functional male flowers. Pomegranate have anatropous ovules which are bitegmic and crassinucellate. Bisexual flowers possess the fertile pistil, while functional male flowers have abnormally developed ovules, a small ovary with few chambers, and a short style. The formation of functional male flowers is due to abnormal and stagnant development of ovule integument. Ovule number directly determines the yield of pomegranate seeds. Recent studies have highlighted the molecular mechanisms through which ovule-related genes regulate pomegranate ovule development. Pomegranate PgCRC and PgINO genes positively regulate the increase in the number of ovules, and PgBEL1 to synergistically regulate seed development. PgAGL11 (the SEEDSTICK orthologous gene) promotes ovule development in transgenic Arabidopsis. PgSEP protein can bridge interactions among PgBEL1, PgSTK and PgAG, which regulate ovule development. At the level of post-transcriptional regulation, PgmiRNA167, PgmiRNA164 and PgmiRNA160 are differentially expressed during pomegranate flower development, and PgmiR166a interacts with its target genes to affect ovule development. This review summarizes the key regulators of ovule development and their molecular pathways, integrating these interactions into a model that describes pomegranate ovule development. Full article
Show Figures

Figure 1

11 pages, 3065 KB  
Article
Paired Flowers of Core Eudicots Discovered from Mid-Cretaceous Myanmar Amber
by Fengyan Li, Weijia Huang and Xin Wang
Taxonomy 2025, 5(4), 67; https://doi.org/10.3390/taxonomy5040067 - 9 Dec 2025
Viewed by 1360
Abstract
A pair of connected flowers preserved in a mid-Cretaceous (early Cenomanian) Myanmar amber is described and named Antiquigemina pilosa Wang and Li gen. et sp. nov. Antiquigemina pilosa has bisexual flowers with a calyx of at least 3 sepals, a corolla of 5 [...] Read more.
A pair of connected flowers preserved in a mid-Cretaceous (early Cenomanian) Myanmar amber is described and named Antiquigemina pilosa Wang and Li gen. et sp. nov. Antiquigemina pilosa has bisexual flowers with a calyx of at least 3 sepals, a corolla of 5 petals, a whorl of at least 4 stamens and a tricarpellate pistil with a semi-inferior ovary. The differences in style divergence and calyx presence between paired flowers indicate different developmental stages. Considering that differentiated calyx and corolla and pentamery of corolla are features frequently observed in core eudicots, we propose treating Antiquigemina pilosa, which has a pentamerous perianth and differentiated sepals and petals, as an earlier representative of core eudicots. Antiquigemina pilosa provides first-hand evidence for the early diversification of core eudicots. Full article
Show Figures

Figure 1

13 pages, 1956 KB  
Article
ECE-CYC1 Transcription Factor CmCYC1a May Interact with CmCYC2 in Regulating Flower Symmetry and Stamen Development in Chrysanthemum morifolium
by Yi Yang, Ming Sun, Cunquan Yuan and Qixiang Zhang
Genes 2025, 16(2), 152; https://doi.org/10.3390/genes16020152 - 26 Jan 2025
Viewed by 1775
Abstract
Background: The attractive inflorescence of Chrysanthemum morifolium, its capitulum, is always composed of ray (female, zygomorphy) and disc (bisexual, actinomorphy) florets, but the formation mechanism remains elusive. The gene diversification pattern of the ECE (CYC/TB1) clade has been speculated to correlate with [...] Read more.
Background: The attractive inflorescence of Chrysanthemum morifolium, its capitulum, is always composed of ray (female, zygomorphy) and disc (bisexual, actinomorphy) florets, but the formation mechanism remains elusive. The gene diversification pattern of the ECE (CYC/TB1) clade has been speculated to correlate with the capitulum. Within the three subclades of ECE, the involvement of CYC2 in defining floret identity and regulating flower symmetry has been demonstrated in many species of Asteraceae, including C. morifolium. Differential expression of the other two subclade genes, CYC1 and CYC3, in different florets has been reported in other Asteraceae groups, yet their functions in flower development have not been investigated. Methods: Here, a CYC1 gene, CmCYC1a, was isolated and its expression pattern was studied in C. morifolium. The function of CmCYC1a was identified with gene transformation in Arabidopsis thaliana and yeast two-hybrid (Y2H) assays were performed to explore the interaction between CmCYC1 and CmCYC2. Results: CmCYC1a was expressed at higher levels in disc florets than in ray florets and the expression of CmCYC1a was increased in both florets during the flowering process. Overexpression of CmCYC1a in A. thaliana changed flower symmetry from actinomorphic to zygomorphic, with fewer stamens. Furthermore, CmCYC1a could interact with CmCYC2b, CmCYC2d, and CmCYC2f in Y2H assays. Conclusions: The results provide evidence for the involvement of CmCYC1a in regulating flower symmetry and stamen development in C. morifolium and deepen our comprehension of the contributions of ECE genes in capitulum formation. Full article
(This article belongs to the Special Issue Genetics and Breeding of Ornamental Plants)
Show Figures

Figure 1

16 pages, 5278 KB  
Article
A Flowering Morphological Investigation, Fruit Fatty Acids, and Mineral Elements Dynamic Changes of Idesia polycarpa Maxim
by Yanpeng Wang, Cuiyu Liu, Jiasong Hu, Kaiyun Wu, Bangchu Gong and Yang Xu
Plants 2024, 13(18), 2663; https://doi.org/10.3390/plants13182663 - 23 Sep 2024
Cited by 11 | Viewed by 2268
Abstract
Idesia polycarpa Maxim is a high-value species of fruit oil with edible, abundant linoleic acid and polyphenols. Idesia polycarpa is described as a dioecious species, and the flowers are male; female and bisexual flowers are produced on separate plants. In order to explore [...] Read more.
Idesia polycarpa Maxim is a high-value species of fruit oil with edible, abundant linoleic acid and polyphenols. Idesia polycarpa is described as a dioecious species, and the flowers are male; female and bisexual flowers are produced on separate plants. In order to explore the flower types of Idesia polycarpa, the morphology of its flowers and inflorescence were investigated in this study. The flower and inflorescence types, the diameter, and the flowering sequencing in male and female inflorescence were determined. We also detected the length, width, and fresh weight of leaves, shoots, and female inflorescence, as well as the length and fresh weight of the petiole during the development. Additionally, we compared the length, width, the length/width ratio, and the flowering density between 5- and 7-year-old female trees. The phenological period observation of Idesia polycarpa showed that the development process can be roughly divided into 12 stages, including bud burst, leaf expansion, inflorescence growth, initial flowering, full flowering, flower decline, initial fruiting, fruit enlargement, fruit color change, fruit ripening, post-ripening of fruit, and leaf fall periods. Furthermore, four elites’ fruit determined the oil content and the composition of fatty acid content during the development. The dynamic of fatty acids contents, the palrnitic acid, palmitoleic acid, stearic acid, oleic acid, and linolenic acid contents were detected during the fruit development of four elites. Moreover, the mineral elements content of fruit of four elites during development were determined. The patterns of vegetative and reproductive growth in young dioecious trees of Idesia polycarpa provided the theoretical basis for artificial pruning and training. Full article
(This article belongs to the Section Plant Development and Morphogenesis)
Show Figures

Figure 1

18 pages, 3458 KB  
Article
Sex-Related Gene Network Revealed by Transcriptome Differentiation of Bisexual and Unisexual Flowers of Orchid Cymbidium tortisepalum
by Xiaokai Ma, Song Ju, Han Lin, Huaxing Huang, Jie Huang, Donghui Peng, Ray Ming, Siren Lan and Zhong-Jian Liu
Int. J. Mol. Sci. 2023, 24(23), 16627; https://doi.org/10.3390/ijms242316627 - 22 Nov 2023
Cited by 2 | Viewed by 2537
Abstract
Despite extensive research on orchid reproductive strategies, the genetic studies of sex differentiation in the orchid family are still lacking. In this study, we compared three sexual phenotypes of Cymbidium tortisepalum bisexual flowers as well as female and male unisexual mutants. Through comparative [...] Read more.
Despite extensive research on orchid reproductive strategies, the genetic studies of sex differentiation in the orchid family are still lacking. In this study, we compared three sexual phenotypes of Cymbidium tortisepalum bisexual flowers as well as female and male unisexual mutants. Through comparative transcriptomes, we analyzed the sex-biased differentially expressed genes (DEGs) and gene co-expression networks of sex organs (gynostemium and ovary) among them, identified the candidate genes of sex differentiation, and validated their expression by qRT-PCR. The C. tortisepalum unisexual mutants with degenerated phenotypes were compared to the bisexual plants with respect to both the flower organs and plant morphologies. Totally, 12,145, 10,789, and 14,447 genes were uniquely expressed in the female, male, and hermaphrodite sex organs, respectively. A total of 4291 sex-biased DEGs were detected among them, with 871, 2867, and 1937 DEGs in the comparisons of bisexual vs. female, bisexual vs. male, and male vs. female flowers, respectively. Two co-expressed network modules, with 81 and 419 genes were tightly correlated with female sexual traits, while two others with 265 and 135 genes were highly correlated with male sexual traits. Two female-biased hub genes (CtSDR3b and CtSDR3b-like) nested in the female modules, the homologs of maize sex determinant tasselseed2, may control the feminization of C. tortisepalum. At the same time, two male-biased hub genes (CtYAB2 and CtYAB5) nested in the male modules, the homologs of grape sex determinant VviYABBY3, may control the androphany of C. tortisepalum. This study discovered the molecular regulation networks and proposed a model for orchid sex differentiation, therefore providing for the first time the genetic basis for the sex separation in the orchid family. Full article
(This article belongs to the Section Molecular Plant Sciences)
Show Figures

Figure 1

20 pages, 12539 KB  
Article
Transcription Factor and Zeatin Co-Regulate Mixed Catkin Differentiation of Chinese Chestnut (Castanea mollissima)
by Xuan Zhou, Lu Wang, Qian Yin, Xinghui Liu, Joseph Masabni, Huan Xiong, Deyi Yuan and Feng Zou
Forests 2023, 14(10), 2057; https://doi.org/10.3390/f14102057 - 14 Oct 2023
Cited by 5 | Viewed by 2641
Abstract
Castanea mollissima is an important monoecious fruit crop with high economic and ecological value in China. However, its yield is restricted by an imbalanced ratio of male and female flowers for chestnut production. To address this issue, we examined the morphology of bisexual [...] Read more.
Castanea mollissima is an important monoecious fruit crop with high economic and ecological value in China. However, its yield is restricted by an imbalanced ratio of male and female flowers for chestnut production. To address this issue, we examined the morphology of bisexual flower organs, measured the levels of endogenous hormones in the flowers, profiled gene expression related to plant hormone biosynthesis and signaling pathways and transcription factors, and investigated the effects of exogenous jasmonic acid (JA) and zeatin (ZT) hormone application on flower development in C. mollissima ‘Tanqiao’. Morphological studies indicated that the development of male and female flowers can be divided into nine and eight stages, respectively. Male flowers contained higher levels of gibberellic acid (GA3) and abscisic acid (ABA) than female flowers, whereas female flowers had higher levels of JA and ZT. The analysis of the Kyoto encyclopedia of genes and genomes (KEGG) pathways revealed that the major significant enrichment pathways of differentially expressed genes (DEGs) consisted of plant hormone signal transduction and zeatin biosynthesis. Through time-series analyses, we screened 3 genes related to jasmonic acid biosynthesis and signal transduction and 21 genes related to zeatin biosynthesis and transduction. Among these genes, only the gene family LOG, related to zeatin biosynthesis, was highly expressed in female flowers. This result indicated that LOG may be the core gene hormone family involved in regulating female flower development. However, a weighted gene co-expression network analysis (WGCNA) suggested that IDD7 was the core gene involved in regulating female flower development. The results of exogenous hormone application indicated that zeatin could greatly increase the quantity of fertile female flowers, but JA was not significant. These findings demonstrated that zeatin and transcription factors were crucial regulators in the formation of female flowers in C. mollissima. Full article
(This article belongs to the Special Issue Non-timber Forestry Breeding, Cultivation and Processing Technology)
Show Figures

Figure 1

20 pages, 9307 KB  
Article
Mutant Bisexual and Wild Male Flowers Were Compared by Integrated Proteome and Transcriptome Analyses to Provide Insight into the Sex Conversion of Idesia polycarpa Maxim
by Huimin Wang, Zhi Li, Qifei Cai, Yanmei Wang, Xiaodong Geng, Shunfu Li, Lisha Fang, Shunyang Yao, Huiyun Li and Zhen Liu
Forests 2023, 14(9), 1737; https://doi.org/10.3390/f14091737 - 28 Aug 2023
Cited by 9 | Viewed by 2489
Abstract
Idesia polycarpa is a dioecious tree; in field surveys, there are rare sex conversions in I. polycarpa individuals with bisexual flowers. To identify the molecular mechanisms underlying sex conversion in this species, an integrative analysis of the proteome and transcriptome profiles of I. [...] Read more.
Idesia polycarpa is a dioecious tree; in field surveys, there are rare sex conversions in I. polycarpa individuals with bisexual flowers. To identify the molecular mechanisms underlying sex conversion in this species, an integrative analysis of the proteome and transcriptome profiles of I. polycarpa male and bisexual flowers at key developmental stages was conducted in this study using isobaric tags for relative and absolute quantification and RNA-seq technology. A total of 15,003 proteins were identified; the differentially expressed proteins (DEPs) were enriched in metabolic pathways, biosynthesis of secondary metabolites, and flavonoid metabolism pathways in all comparison groups. A total of 290,442 unigenes were obtained; these were compared with seven databases, revealing 196,366 annotated unigenes. In general, the expression of proteins and genes tended to be positively correlated, with Spearman correlation coefficients in the ranges of 0.152–0.262 (all genes and all proteins) and 0.497–0.778 (DEPs and DEGs). The integrative analysis of DEPs and DEGs between male and bisexual flowers revealed that the most significantly enriched pathways were flavonoid pathways, metabolic pathways, and the biosynthesis of secondary metabolites. Finally, four co-expressed proteins and transcripts and one gene associated with the flavonoid biosynthesis pathway were screened out. The proteins identified were p-coumaroyl shikimate 3′-hydroxylase, and shikimate/quinate hydroxycinnamoyl transferase, and the gene was caffeoyl-CoA O-methyltransferase. The analysis has revealed key potential proteins and genes involved in sex conversion at the molecular level and has provided a basis for future investigations of artificial regulation of sex differentiation in I. polycarpa. Full article
(This article belongs to the Special Issue Advances in Tree Germplasm Innovation and High-Efficiency Propagation)
Show Figures

Figure 1

17 pages, 2622 KB  
Article
Reproductive Biology and Breeding Systems of Two Opisthopappus Endemic and Endangered Species on the Taihang Mountains
by Yiling Wang, Yafei Lan, Hang Ye, Xiaolong Feng, Qiyang Qie, Li Liu and Min Chai
Plants 2023, 12(10), 1954; https://doi.org/10.3390/plants12101954 - 11 May 2023
Cited by 9 | Viewed by 3632
Abstract
Opisthopappus is a perennial, endemic herb of the Taihang Mountains in China. Two species of this genus (O. longilobus and O. taihangensis) are important wild genetic resources for Asteraceae; however, their reproductive biology has been lacking until now. This study is [...] Read more.
Opisthopappus is a perennial, endemic herb of the Taihang Mountains in China. Two species of this genus (O. longilobus and O. taihangensis) are important wild genetic resources for Asteraceae; however, their reproductive biology has been lacking until now. This study is the first detailed report on the reproductive biology and breeding systems of two Opisthopappus species. Through field observations, the floral syndromes of O. longilobus and O. taihangensis were found to possess a similar pattern, although O. taihangensis has a relatively larger capitulum, more ray ligules, and disc florets. The flowers of both O. longilobus and O. taihangensis are protandrous, a character that can prevent autogamy at the single-flower level, and insects are required for pollination. Further, brightly ligules, brightly bisexual florets, unique fragrance, and amount of nectar suggest that these species propagate via an entomophilous pollination system. Hymenopteran and Diptera species were observed as the effective pollinators for these two species. The outcrossing index, pollen/ovule ratio and the results of hand pollination indicated that these Opisthopappus species might have a mixed mating system that combines cross-fertilization and partial self-fertilization for O. longilobus and O. taihangensis, outcrossing predominated in the breeding system, while self-pollination played an important role in seed production when insect pollination was unavailable, particularly in a harsh environment, such as the Taihang Mountains cliffs. Meanwhile, O. taihangensis might better adapt to severe surroundings with relatively complex floral syndromes, specifically through the attraction of visiting insects and a high seed set rate. The above results not only provide reference information toward a better understanding of the survival strategies of O. longilobus and O. taihangensis in the Taihang Mountains but also lay a solid foundation for further exploring the molecular mechanisms that underly their adaptation under cliff environments. Full article
(This article belongs to the Special Issue Plant Reproductive Development and Ecology)
Show Figures

Figure 1

8 pages, 1558 KB  
Communication
Unique Morphology of Sarcobatus baileyi Male Inflorescence and Its Botanical Implications
by Wenzhe Liu, Xiuping Xu and Xin Wang
Plants 2023, 12(9), 1917; https://doi.org/10.3390/plants12091917 - 8 May 2023
Cited by 2 | Viewed by 2705
Abstract
A typical angiosperm flower is usually bisexual, with entomophilous plants having four whorls of organs: the calyx, corolla, stamens, and gynoecium. The flower is usually colorful, and thus, distinct from the dull-colored reproductive organs of gymnosperms; however, this formula is not applicable to [...] Read more.
A typical angiosperm flower is usually bisexual, with entomophilous plants having four whorls of organs: the calyx, corolla, stamens, and gynoecium. The flower is usually colorful, and thus, distinct from the dull-colored reproductive organs of gymnosperms; however, this formula is not applicable to all flowers. For example, the male flower of Sarcobatus baileyi is reduced into only a single stamen. Such unusual flowers are largely poorly documented and underappreciated. To fill such a lacuna in our knowledge of the male reproductive organ of S. baileyi, we collected and studied materials of the male inflorescence of S. baileyi (Sarcobataceae). The outcomes of our Micro-CT (micro computed tomography), SEM (scanning electron microscopy), and paraffin sectioning indicate that a male inflorescence of S. baileyi is more comparable with the cone of conifers; its male flowers lack the perianth, are directly attached to a central axis and sheltered by peltate indusium-like shields. To understand the evolutionary logic underlying such a rarely seen male inflorescence, we also studied and compared it with a female cone of Cupressus sempervirens. Although the genera Sarcobatus and Cupressus belong to two distinct major plant groups (angiosperms and gymnosperms), they apply the same propagule-protecting strategy. Full article
(This article belongs to the Special Issue Floral Biology 2.0)
Show Figures

Figure 1

21 pages, 814 KB  
Review
Sex Chromosomes and Sex Determination in Dioecious Agricultural Plants
by Olga V. Razumova, Oleg S. Alexandrov, Karina D. Bone, Gennady I. Karlov and Mikhail G. Divashuk
Agronomy 2023, 13(2), 540; https://doi.org/10.3390/agronomy13020540 - 14 Feb 2023
Cited by 17 | Viewed by 10433
Abstract
Unlike in animals, dioecy among flowering plants is a rare phenomenon. The vast majority of angiosperm species have a bisexual flower that combines male (androecium) and female (gynoecium) reproductive organs. However, about a quarter of species have dioecious flowers, which can be located [...] Read more.
Unlike in animals, dioecy among flowering plants is a rare phenomenon. The vast majority of angiosperm species have a bisexual flower that combines male (androecium) and female (gynoecium) reproductive organs. However, about a quarter of species have dioecious flowers, which can be located within the same plant (monoecious) or on different plants (dioecious). The flower formation in dioecious plants is determined by various genetic mechanisms. They become more complex from the work of a single gene to the functioning of full-fledged heteromorphic sex chromosomes, which can directly affect sex differentiation or participate in the balance determination of sex (where the formation of male or female flower organs depends on the ratio of X chromosomes to autosomes, for example). In recent years, the development of sequencing techniques, bioinformatics, and molecular biology has led to an increase in interest in the sex determination mechanisms among plants. It is noteworthy that a significant number of dioecious plants have economic value. At the same time, dioeciousness often complicates the growing process. This fact increases the relevance of studies on dioecious crops. In this review, we attempt to summarize the current information on sex chromosomes and the mechanisms of sex determination in dioecious plants, concentrating on species with agricultural importance. Full article
(This article belongs to the Topic Plant Breeding, Genetics and Genomics)
Show Figures

Figure 1

18 pages, 4466 KB  
Article
A Phylogenetic and Morphological Evolution Study of Ribes L. in China Using RAD-Seq
by Baoshan Zhang, Ziyang Yu, Zhichao Xu and Baojiang Zheng
Plants 2023, 12(4), 829; https://doi.org/10.3390/plants12040829 - 13 Feb 2023
Cited by 19 | Viewed by 4349
Abstract
Ribes L. belongs to the Grossulariaceae family and has important edible, medicinal, ornamental, and landscaping values. Taxonomic classification within this genus is difficult due to its large variety of species, wide distribution, large morphological variations, and presence of two complex taxonomic groups with [...] Read more.
Ribes L. belongs to the Grossulariaceae family and has important edible, medicinal, ornamental, and landscaping values. Taxonomic classification within this genus is difficult due to its large variety of species, wide distribution, large morphological variations, and presence of two complex taxonomic groups with bisexual or unisexual flowers. Our study aims to clarify the phylogenetic relationships of Ribes L. taxa in China, and further, to provide a reference for a revised global classification of it. The phylogenetic analysis of 52 Ribes L. samples from 30 species was constructed based on restriction site-associated DNA sequencing and single nucleotide polymorphisms. Afterward, two important taxonomic characters were selected for ancestral state reconstruction over the molecular phylogeny. The results showed that the 52 samples could be divided into six branches, i.e., six subgenera, which caused some controversy regarding the morphological classification of Ribes L. in China. The molecular phylogeny supported the separation of subg. Coreosma from subg. Ribesia and subg. Hemibotrya from subg. Berisia and validated the rationale for recognizing subg. Grossularia as an independent subgenus, the rationality of which was further verified by the reconstruction of ancestor traits. Gene flow among Ribes L. was identified and further confirmed our results. Full article
(This article belongs to the Special Issue Plant Morphology and Phylogenetic Evolution)
Show Figures

Figure 1

17 pages, 4458 KB  
Article
Genome-Wide Identification and Characterization of Members of the ACS Gene Family in Cucurbita maxima and Their Transcriptional Responses to the Specific Treatments
by Chaojie Wang, Wenling Li, Fangyuan Chen, Yaqian Cheng, Xin Huang, Bingxue Zou, Yunli Wang, Wenlong Xu and Shuping Qu
Int. J. Mol. Sci. 2022, 23(15), 8476; https://doi.org/10.3390/ijms23158476 - 30 Jul 2022
Cited by 14 | Viewed by 3221
Abstract
Ethylene biosynthesis and signal transduction play critical roles in plant sex differentiation. ACS (1-aminocyclopropane-1-carboxylic acid synthase) is a rate-limiting enzyme in ethylene biosynthesis. However, the understanding of the ACS gene family in Cucurbita maxima is limited. Here, we identified and characterized 13 ACS [...] Read more.
Ethylene biosynthesis and signal transduction play critical roles in plant sex differentiation. ACS (1-aminocyclopropane-1-carboxylic acid synthase) is a rate-limiting enzyme in ethylene biosynthesis. However, the understanding of the ACS gene family in Cucurbita maxima is limited. Here, we identified and characterized 13 ACS genes in the C. maxima genome. All ACS genes could be divided into three groups according to a conserved serine residue at the C-terminus. Thirteen CmaACS genes were found to be randomly distributed on 10 of the 20 chromosomes of C. maxima. The ACS gene exhibits different tissue-specific expression patterns in pumpkin, and four ACS genes (CmaACS1, CmaACS4, CmaACS7, and CmaACS9) were expressed specifically in both the female and male flowers of C. maxima. In addition, the expression levels of CmaACS4 and CmaACS7 were upregulated after ethephon and IAA treatments, which ultimately increased the number of female flowers, decreased the position of the first female flower and decreased the number of bisexual flowers per plant. These results provide relevant information for determining the function of the ACS genes in C. maxima, especially for regulating the function of ethylene in sex determination. Full article
(This article belongs to the Section Molecular Plant Sciences)
Show Figures

Figure 1

21 pages, 3972 KB  
Article
Identification, Analysis and Gene Cloning of the SWEET Gene Family Provide Insights into Sugar Transport in Pomegranate (Punica granatum)
by Xinhui Zhang, Sha Wang, Yuan Ren, Chengyan Gan, Bianbian Li, Yaoyuwei Fan, Xueqing Zhao and Zhaohe Yuan
Int. J. Mol. Sci. 2022, 23(5), 2471; https://doi.org/10.3390/ijms23052471 - 23 Feb 2022
Cited by 31 | Viewed by 4612
Abstract
Members of the sugars will eventually be exported transporter (SWEET) family regulate the transport of different sugars through the cell membrane and control the distribution of sugars inside and outside the cell. The SWEET gene family also plays important roles in plant growth [...] Read more.
Members of the sugars will eventually be exported transporter (SWEET) family regulate the transport of different sugars through the cell membrane and control the distribution of sugars inside and outside the cell. The SWEET gene family also plays important roles in plant growth and development and physiological processes. So far, there are no reports on the SWEET family in pomegranate. Meanwhile, pomegranate is rich in sugar, and three published pomegranate genome sequences provide resources for the study of the SWEET gene family. 20 PgSWEETs from pomegranate and the known Arabidopsis and grape SWEETs were divided into four clades (Ⅰ, Ⅱ, Ⅲ and Ⅳ) according to the phylogenetic relationships. PgSWEETs of the same clade share similar gene structures, predicting their similar biological functions. RNA-Seq data suggested that PgSWEET genes have a tissue-specific expression pattern. Foliar application of tripotassium phosphate significantly increased the total soluble sugar content of pomegranate fruits and leaves and significantly affected the expression levels of PgSWEETs. The plant growth hormone regulator assay also significantly affected the PgSWEETs expression both in buds of bisexual and functional male flowers. Among them, we selected PgSWEET17a as a candidate gene that plays a role in fructose transport in leaves. The 798 bp CDS sequence of PgSWEET17a was cloned, which encodes 265 amino acids. The subcellular localization of PgSWEET17a showed that it was localized to the cell membrane, indicating its involvement in sugar transport. Transient expression results showed that tobacco fructose content was significantly increased with the up-regulation of PgSWEET17a, while both sucrose and glucose contents were significantly down-regulated. The integration of the PgSWEET phylogenetic tree, gene structure and RNA-Seq data provide a genome-wide trait and expression pattern. Our findings suggest that tripotassium phosphate and plant exogenous hormone treatments could alter PgSWEET expression patterns. These provide a reference for further functional verification and sugar metabolism pathway regulation of PgSWEETs. Full article
(This article belongs to the Section Molecular Plant Sciences)
Show Figures

Figure 1

Back to TopTop