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Keywords = tropical botanic gardens

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19 pages, 1744 KiB  
Article
Physiological and Biochemical Adaptations to Repeated Drought–Rehydration Cycles in Ochroma lagopus Swartz: Implications for Growth and Stress Resilience
by Yuanxi Liu, Jianli Sun, Cefeng Dai, Guanben Du, Rui Shi and Junwen Wu
Plants 2025, 14(11), 1636; https://doi.org/10.3390/plants14111636 - 27 May 2025
Cited by 1 | Viewed by 503
Abstract
Ochroma lagopus Swartz is a rapidly growing plant known for its lightweight wood; it is widely utilized for timber production and ecological restoration. We investigated the effects of different numbers of drought–rehydration cycles on O. lagopus seedlings cultivated at the Xishuangbanna Tropical Botanical [...] Read more.
Ochroma lagopus Swartz is a rapidly growing plant known for its lightweight wood; it is widely utilized for timber production and ecological restoration. We investigated the effects of different numbers of drought–rehydration cycles on O. lagopus seedlings cultivated at the Xishuangbanna Tropical Botanical Garden of the Chinese Academy of Sciences. The experiment comprised three treatments: normal watering (CK, 80–85% field capacity), one drought–rehydration cycle (D1, one rewatering), and three drought–rehydration cycles (D2, three rewaterings). We characterized the effects of these treatments on seedling growth, biomass allocation, non-structural carbohydrates (NSCs), malondialdehyde (MDA), catalase (CAT) activity, peroxidase (POD) activity, superoxide dismutase (SOD) activity, proline content, and soluble protein content. The number of drought–rehydration cycles had a significant effect on the growth characteristics and physiological and biochemical properties of leaves. As the number of drought–rehydration cycles increased, the height increased significantly (by 17.17% under D2). The leaf biomass ratio, soluble sugar content, and starch content decreased (15.05%, 15.79%, and 46.92% reductions under the D2 treatment); the stem biomass ratio and root biomass ratio increased; CAT activity increased and then decreased (it was highest at 343.67 mg·g−1·min−1 under D1); and the POD and SOD activities, the MDA content, the soluble protein content, and the soluble sugar/starch ratio increased significantly (395.42%, 461.82%, 74.72%, 191.07%, and 59.79% higher under D2). The plasticity of growth was much greater than that of physiological and biochemical traits. In summary, O. lagopus seedlings adapted to multiple drought–rehydration cycles by increasing the accumulation of soluble proteins (likely associated with osmotic protection), activating enzymes (POD and SOD), promoting the conversion of NSCs (increasing stored carbon consumption), and allocating more biomass to plant height growth than to diameter expansion. Under climate change scenarios with intensified drought frequency, elucidating the drought resistance mechanisms of O. lagopus is critical to silvicultural practices in tropical plantation. Full article
(This article belongs to the Section Plant Response to Abiotic Stress and Climate Change)
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20 pages, 3834 KiB  
Article
Alien Plants in the Hortus Botanicus Karalitanus (HBK): Current and Future Threats to the Biodiversity of Sardinia, Italy
by Lina Podda, Andrea Lallai, Giacomo Calvia, Francesco Mascia, Gianluca Iiriti and Gianluigi Bacchetta
J. Zool. Bot. Gard. 2025, 6(2), 27; https://doi.org/10.3390/jzbg6020027 - 16 May 2025
Viewed by 757
Abstract
Botanical gardens have historically introduced alien species for agronomic, medicinal, and ornamental purposes, but they also contribute to plant invasions. The Hortus Botanicus Karalitanus (HBK) is a historic botanical garden established in 1866, as an acclimatisation arboretum for tropical plants, by the University [...] Read more.
Botanical gardens have historically introduced alien species for agronomic, medicinal, and ornamental purposes, but they also contribute to plant invasions. The Hortus Botanicus Karalitanus (HBK) is a historic botanical garden established in 1866, as an acclimatisation arboretum for tropical plants, by the University of Cagliari. This study inventoried alien vascular plants in the HBK that showed some degree of spontaneity, analysing their status, origin, life form, introduction pathways, reproductive strategies, and presence in Sardinian habitats. A focus on invasive species and their historical introduction based on their first records on the island and in the HBK was made. Field surveys from 2015 to 2024 allowed us to identify 146 alien taxa, primarily neophytes (83%), 45% of which were naturalised and 12% were invasive. Ornamental plants contributed to 70% of introductions, while accidental taxa (weeds and hitchhikers, 61%) were the most invasive. Seed reproduction was the most common way of propagation (41%). About the diffusion in Sardinia, 25% of taxa had no records in nature outside the HBK, 39% were found only in anthropogenic habitats, and 36% in natural habitats. Among them, 8% were invasive in both the HBK and Sardinia, with wetlands being the most affected (5%). However, only 3% of common invasive species were first recorded in the HBK. The results highlight the role of the HBK in alien species spread and early detection, aiding in invasion management and biodiversity conservation in Sardinia. Full article
(This article belongs to the Special Issue Invasive Species in Botanical and Zoological Gardens)
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14 pages, 8444 KiB  
Essay
Phytolith Characteristics in Leaves and Culm Sheaths of Three Sympodial Bamboo Genera (Bambusoideae) in the Xishuangbanna Tropical Botanical Garden, China
by Taiyang Zhao, Mengsi Duan, Guomi Luo, Kemei Gao, Tingxuan Fu, Xiao Wang, Rui Xu and Changming Wang
Agronomy 2025, 15(4), 999; https://doi.org/10.3390/agronomy15040999 - 21 Apr 2025
Viewed by 458
Abstract
This study focused on the phytolith characteristics of leaves and culm sheaths from nine bamboo species across three genera (Bambusa Schreb., Gigantochloa Nees, and Dendrocalamus Kurz ex Munro) in the Xishuangbanna Tropical Botanical Garden. By analyzing phytolith content, concentration, particle size distribution, [...] Read more.
This study focused on the phytolith characteristics of leaves and culm sheaths from nine bamboo species across three genera (Bambusa Schreb., Gigantochloa Nees, and Dendrocalamus Kurz ex Munro) in the Xishuangbanna Tropical Botanical Garden. By analyzing phytolith content, concentration, particle size distribution, morphometric parameters of elongated saddle-type phytoliths, and phytolith–assemblage composition, we aimed to elucidate the distribution patterns and morphological features of phytoliths in clumping bamboos, thereby providing morphological evidence for genus-level classification within the Bambusoideae. The results demonstrated the following. (1) Leaves exhibited significantly higher phytolith content and concentration than did culm sheaths across all genera, with Dendrocalamus being the sole exception, showing no significant intrageneric differences. (2) Distinct particle size distribution patterns were observed—leaves consistently peaked at 10–20 μm, whereas culm sheaths displayed triple peaks at 10–20 μm, 20–30 μm, and 900–1000 μm. (3) Morphometric analysis revealed that culm sheaths contained larger elongated saddle-type phytoliths (length, width, and area) compared to leaves across all genera. (4) Among the 37 identified phytolith morphotypes, culm sheaths exhibited greater diversity, with 35 types (dominated by rondel and elongate), while leaves contained 31 types primarily characterized by saddle and stomatal phytoliths, with elongated saddles being the most abundant. Collectively, our findings demonstrate significant morphological disparities between foliar and culm sheath phytoliths in sympodial bamboos (Bambusa), with culm sheath phytoliths exhibiting greater taxonomic potential for generic-level classification within the subfamily Bambusoideae. Full article
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17 pages, 1847 KiB  
Article
Educational Activities in the Ljubljana University Botanic Gardens
by Jože Bavcon, Katja Malovrh, Maja Tomšič and Blanka Ravnjak
J. Zool. Bot. Gard. 2024, 5(4), 788-804; https://doi.org/10.3390/jzbg5040052 - 9 Dec 2024
Viewed by 1298
Abstract
Botanic gardens have an important role in educating people about plants. Direct contact with plants has a positive effect on the perception and understanding of plants and prevents plant blindness. In botanic gardens, pupils can learn about plants through practical work. At the [...] Read more.
Botanic gardens have an important role in educating people about plants. Direct contact with plants has a positive effect on the perception and understanding of plants and prevents plant blindness. In botanic gardens, pupils can learn about plants through practical work. At the Ljubljana University Botanic Gardens, educational programmes for schools have existed since 1986. Every year the Ljubljana University Botanic Gardens is visited by many different groups, from the youngest to oldest (kindergarten, primary school, graduate and professional school students, and faculties). We run around 350 guided tours for groups per year. Groups can choose either a guided tour with work sheets and workshops or they can visit the botanic gardens on their own. Most of groups are children from primary school. Ljubljana University Botanic Gardens offers programmes related to the valid school curriculum in Slovenia. Our programmes include guided tours based on level of pupils and/or practical work. The most popular time to visit is spring. But, we still have visitors in winter due to our tropical greenhouse. The most popular programme at our botanic gardens is the general tour. With our pedagogical programmes we contribute to plant knowledge, since we teach our pupils about nature. Full article
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11 pages, 1857 KiB  
Article
Quantifying the Carbon Stocks in Urban Trees: The Rio de Janeiro Botanical Garden as an Important Tropical Carbon Sink
by Bruno Coutinho Kurtz, Thaís Moreira Hidalgo de Almeida, Marcus Alberto Nadruz Coelho, Lara Serpa Jaegge Deccache, Ricardo Maximo Tortorelli, Diego Rafael Gonzaga, Louise Klein Madureira, Ramon Guedes-Oliveira, Claudia Franca Barros and Marinez Ferreira de Siqueira
J. Zool. Bot. Gard. 2024, 5(4), 579-589; https://doi.org/10.3390/jzbg5040039 - 4 Oct 2024
Cited by 1 | Viewed by 2528
Abstract
The rapid urbanization process in recent decades has altered the carbon cycle and exacerbated the impact of climate change, prompting many cities to develop tree planting and green area preservation as mitigation and adaptation measures. While numerous studies have estimated the carbon stocks [...] Read more.
The rapid urbanization process in recent decades has altered the carbon cycle and exacerbated the impact of climate change, prompting many cities to develop tree planting and green area preservation as mitigation and adaptation measures. While numerous studies have estimated the carbon stocks of urban trees in temperate and subtropical cities, data from tropical regions, including tropical botanic gardens, are scarce. This study aimed to quantify the aboveground biomass and carbon (AGB and AGC, respectively) stocks in trees at the Rio de Janeiro Botanical Garden arboretum, Rio de Janeiro, Brazil. Our survey included 6793 stems with a diameter at breast height (DBH) ≥ 10 cm. The total AGB was 8047 ± 402 Mg, representing 4024 ± 201 Mg of AGC. The AGB density was 207 ± 10 Mg·ha−1 (AGC = 104 ± 5 Mg·ha−1), which is slightly lower than the density stored in Brazil’s main forest complexes, the Atlantic and Amazon forests, but much higher than in many cities worldwide. Our results suggest that, in addition to their global importance for plant conservation, tropical botanic gardens could function as significant carbon sinks within the urban matrix. Full article
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17 pages, 6625 KiB  
Article
Rio de Janeiro Botanical Garden: Biodiversity Conservation in a Tropical Arboretum
by Thaís Moreira Hidalgo de Almeida, Marcus Alberto Nadruz Coelho and Ariane Luna Peixoto
J. Zool. Bot. Gard. 2024, 5(3), 378-394; https://doi.org/10.3390/jzbg5030026 - 10 Jul 2024
Cited by 4 | Viewed by 2733
Abstract
In light of increasing human impacts on natural areas and climate change, urgent action is required to accelerate species conservation efforts. Ex situ conservation has gained importance, yet the increasing endangered species challenge is magnified in botanic gardens, notably tropical ones, insufficient to [...] Read more.
In light of increasing human impacts on natural areas and climate change, urgent action is required to accelerate species conservation efforts. Ex situ conservation has gained importance, yet the increasing endangered species challenge is magnified in botanic gardens, notably tropical ones, insufficient to safeguard such diverse flora. This study focused on the living collection of the arboretum at the Rio de Janeiro Botanical Garden, examining all cultivated specimens and institutional database records between January and July 2023. It cross-referenced the collection’s composition with the Flora e Funga do Brasil list, as well as Red Lists, to reveal that the collection includes 6960 specimens representing 1420 species, with 60.6% of these species native to Brazil, belonging to 134 botanical families. The collection encompasses all Brazilian phytogeographic domains, with the Atlantic Forest and the Amazon having the highest number of species in cultivation. In terms of conservation efforts, the collection includes 83 species from the Brazilian Red List and 106 species from the IUCN Red List, contributing to the Global Strategy for Plant Conservation, Target 8. This evaluation is the first step toward identifying collection gaps, future planning, and targeting species for acquisition to enhance the effectiveness of our conservation efforts. Full article
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23 pages, 2256 KiB  
Article
How Poor Is Aphyllophoroid Fungi Diversity in the Boreal Urban Greenhouses of Eastern Europe?
by Anton G. Shiryaev, Ivan V. Zmitrovich, Stepan A. Senator, Elena N. Minogina and Oleg B. Tkachenko
J. Fungi 2023, 9(11), 1116; https://doi.org/10.3390/jof9111116 - 17 Nov 2023
Cited by 3 | Viewed by 1463
Abstract
It is generally accepted that mycobiota diversity in urban greenhouses is poorer than in natural ecosystems, but our knowledge on this field of research is fragmentary. Here, we present the results of a long-term study of aphyllophoroid macrofungi (Basidiomycota) forming fruitbodies on non-native [...] Read more.
It is generally accepted that mycobiota diversity in urban greenhouses is poorer than in natural ecosystems, but our knowledge on this field of research is fragmentary. Here, we present the results of a long-term study of aphyllophoroid macrofungi (Basidiomycota) forming fruitbodies on non-native sub/tropical woody and herbaceous plants in the greenhouses of Saint Petersburg, Moscow, and Ekaterinburg botanical gardens located in the hemiboreal vegetation subzone of Eastern Europe. Over 20 years of research, fruitbodies of 58 species of aphyllophoroid fungi have been identified. Fungal species that developed on the wooden structures of greenhouses and building materials made of local wood are discussed separately. The list of fungi on non-native substrates is dominated by saprobes (93.1% of total list) as well as mycorrhizal with basidiomata on plants (8.6%). Phytopathogens have the lowest number (7.0%), and ¾ of species are widespread locally. Non-native plants are dominated by native fungal species (78.9%), while the percentage of non-native species is low (21.1%). In the three surveyed cities, the area of the studied greenhouses is 2.8 ha, and not a single species of fungi has been found twice on the same substrate. Half of the identified species are characterized by a single specimen (29 species/50.9%). Hymenochaete rheicolor was discovered in Russia for the first time and its known distribution is discussed. Only six (Antrodia gossypium, Hyphodontia arguta, Lyomyces sambuci, Peniophora cinerea, Ramariopsis kunzei, and Trechispora farinacea) local species (10.5%) were collected in all the three cities. The α-diversity of mycobiota (mean number of species per site, Shannon Index, and Menhinick Index) in the Ekaterinburg’s greenhouses is 1.2–3.0 times lower compared to suburban forest parks and old-growth natural forests, while β-diversity (Whittaker Index, Jaccard Index, and Morisita–Horn Index), on the contrary, is 2.1–7.7 times higher. With the plants’ age, the probability of detecting fungi on them increases significantly. In greenhouses, phytopathogenic aphyllophoroid macrofungi are collected on woody plants only, but the probability of their development is not related to the plants’ age. Full article
(This article belongs to the Section Fungal Evolution, Biodiversity and Systematics)
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19 pages, 4909 KiB  
Article
Genomic Diversity of Bradyrhizobium from the Tree Legumes Inga and Lysiloma (Caesalpinioideae-Mimosoid Clade)
by Diana Hernández-Oaxaca, Karen L. Claro-Mendoza, Marco A. Rogel, Mónica Rosenblueth, Jorge A. Velasco-Trejo, Enrique Alarcón-Gutiérrez, José Antonio García-Pérez, Julio Martínez-Romero, Euan K. James and Esperanza Martínez-Romero
Diversity 2022, 14(7), 518; https://doi.org/10.3390/d14070518 - 27 Jun 2022
Cited by 6 | Viewed by 3487
Abstract
We identified diverse bradyrhizobia having distinct ERIC-PCR genomic fingerprints from native American trees Inga vera and Lysiloma spp. In addition, two nodule isolates recovered from Lysiloma divaricatum seedlings inoculated with soil from the tropical house of a UK botanical garden were also identified [...] Read more.
We identified diverse bradyrhizobia having distinct ERIC-PCR genomic fingerprints from native American trees Inga vera and Lysiloma spp. In addition, two nodule isolates recovered from Lysiloma divaricatum seedlings inoculated with soil from the tropical house of a UK botanical garden were also identified as Bradyrhizobium. Genomes were obtained (with sizes around 9 Mb each) from nine Inga and Lysiloma bradyrhizobial isolates; plasmids were detected in two of the Inga strains analyzed. Average Nucleotide Identity of whole genomes revealed five novel Bradyrhizobium genomospecies from Mexican trees, while the UK isolates were identified as Bradyrhizobium cajani and Bradyrhizobium brasilense. Inga vera and Lysiloma isolates, despite their genetic distances and different hosts, shared a common set of nod genes that suggested that I. vera and Lysiloma bradyrhizobia produce fucosylated, methylated and carbamylated lipochitooligosaccharides. Uptake hydrogenase hup, hyp and secretion system genes were found in some of the isolates. Lysiloma strains were found to be ineffective on I. vera. Some of the isolates may be used as plant inoculants. Full article
(This article belongs to the Special Issue Recent Trends in Bacterial Diversity and Evolution)
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12 pages, 3065 KiB  
Article
Seven Sycoryctine Fig Wasp Species (Chalcidoidea: Pteromalidae) Associated with Dioecious Ficus hirta Inhabiting South China and Southeast Asia
by Da-Mien Wong, Songle Fan and Hui Yu
Biology 2022, 11(6), 801; https://doi.org/10.3390/biology11060801 - 24 May 2022
Cited by 1 | Viewed by 2554
Abstract
Even though non-pollinating fig wasps are essential components in tropical and subtropical habitats, yet they are poorly described in the Oriental communities. This study presented seven new sycoryctine fig wasp species associated with Ficus hirta fig trees inhabiting South China and Southeast Asia. [...] Read more.
Even though non-pollinating fig wasps are essential components in tropical and subtropical habitats, yet they are poorly described in the Oriental communities. This study presented seven new sycoryctine fig wasp species associated with Ficus hirta fig trees inhabiting South China and Southeast Asia. These new sycoryctine species belong to the genera Philotrypesis, Sycoryctes, and Sycoscapter. They can be easily distinguished by their adaptive morphologies such as face sculpture, body-color, and ovipositors. An identification key is provided to differentiate between them, and the relationships with their host fig trees are also discussed. The holotypes and paratypes are both deposited in the South China Botanical Garden, Chinese Academy of Sciences, China. Full article
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9 pages, 8982 KiB  
Communication
Diverse Novel Viruses Coinfecting the Tropical Ornamental Plant Polyscias balfouriana in China
by Yuxin Ma, Haiyan Che, Shengfeng Gao, Yating Lin and Shifang Li
Viruses 2022, 14(6), 1120; https://doi.org/10.3390/v14061120 - 24 May 2022
Cited by 2 | Viewed by 2483
Abstract
The viromic profile of Polyscias balfouriana cv. Marginata, a perennial woody and ornamental plant, was determined using ribosomal RNA-depleted total RNA (rRNA-depleted totRNA) sequencing. Five viruses (i.e., polyscias mosaic virus, PoMV; one potential novel rhabdovirus; and three novel viruses of Betaflexiviridae and Closteroviridae [...] Read more.
The viromic profile of Polyscias balfouriana cv. Marginata, a perennial woody and ornamental plant, was determined using ribosomal RNA-depleted total RNA (rRNA-depleted totRNA) sequencing. Five viruses (i.e., polyscias mosaic virus, PoMV; one potential novel rhabdovirus; and three novel viruses of Betaflexiviridae and Closteroviridae) were detected and prevalence-surveyed in Hainan province, China. The genomes of polyscias capillovirus 1 (PCaV-1) and polyscias citrivirus 1 (PCiV-1) of family Betaflexiviridae were completed, and the genomes of polyscias crinivirus 1 (PCrV-1) of Closteroviridae were nearly completed lacking the 5′ and 3′ termini. PCaV-1 shares 68% genome nucleotide (nt) identity and 66% replicase (Rep) amino acid (aa) identity with homologues in apple stem grooving virus (ASGV). PCiV-1 shares 65% genome nt identity and 64% Rep aa identity with homologs in citrus leaf blotch virus (CLBV). Meeting the species demarcation criteria, PCaV-1 and PCiV-1 were considered to be new species in genera Capillovirus and Citrivirus, respectively. PCrV-1 shares high genome nt identity (62%), heat shock protein 70-like protein (HSP70h) and RNA-dependent RNA polymerase (RdRp) aa identity (78–80%) with homologues in tomato chlorosis virus (ToCV). We tentatively consider PCrV-1 to be an unclassified member of the Crinivirus genus. PoMV, PCaV-1, PCiV-1, and PCrV-1 are the prevalent viruses with >73% occurrence in the Xinglong Tropical Botanical Garden, Hainan, China. Full article
(This article belongs to the Special Issue Next-Generation Sequencing in Plant Virology)
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29 pages, 3500 KiB  
Article
Natural and Historical Heritage of the Lisbon Botanical Gardens: An Integrative Approach with Tree Collections
by Ana Raquel Cunha, Ana Luísa Soares, Miguel Brilhante, Pedro Arsénio, Teresa Vasconcelos, Dalila Espírito-Santo, Maria Cristina Duarte and Maria Manuel Romeiras
Plants 2021, 10(7), 1367; https://doi.org/10.3390/plants10071367 - 4 Jul 2021
Cited by 4 | Viewed by 4678
Abstract
Botanical gardens have long contributed to plant science and have played a leading role in ex situ conservation, namely of threatened tree species. Focusing on the three botanical gardens of Lisbon (i.e., Botanical Garden of Ajuda—JBA, Lisbon Botanical Garden—JBL, and Tropical Botanical Garden—JBT), [...] Read more.
Botanical gardens have long contributed to plant science and have played a leading role in ex situ conservation, namely of threatened tree species. Focusing on the three botanical gardens of Lisbon (i.e., Botanical Garden of Ajuda—JBA, Lisbon Botanical Garden—JBL, and Tropical Botanical Garden—JBT), this study aims to reveal their natural heritage and to understand the historical motivations for their creation. Our results showed that these gardens contain a total of 2551 tree specimens, corresponding to 462 taxa, within 80 plant families. Of these, 85 taxa are found in the three gardens, and more than half of the taxa are hosted in JBL (334 taxa), whereas 230 and 201 taxa were recorded in JBT and JBA, respectively. The motivations for the creation of each garden are reflected in the different geographic origins of the trees they host in their living collections. The Palearctic species are dominant in JBA and JBL, and Tropical trees prevail in JBT. With more than 250 years of history, these gardens hold an invaluable natural and historical heritage, with their living collections providing valuable sources of information for the conservation of threatened plant species, at local and global scales. Full article
(This article belongs to the Special Issue Systematics and the Conservation of Plant Diversity)
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