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Keywords = vernal pools

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28 pages, 9297 KB  
Article
Filling the Last Major Gap in the Phylogeny of Lotus (Leguminosae): The Nearly Extinct Lotus benoistii from Morocco, a Potentially Important Breeding Resource
by Galina V. Degtjareva, Tahir H. Samigullin, Carmen M. Valiejo-Roman, Cyrille Chatelain, Dmitry D. Sokoloff and Tatiana E. Kramina
Taxonomy 2025, 5(1), 6; https://doi.org/10.3390/taxonomy5010006 - 20 Jan 2025
Cited by 1 | Viewed by 3410
Abstract
Lotus, with about 120 species, is the largest genus of Leguminosae–Loteae. The last global classification recognized 14 sections, of which 13 were then sampled in molecular phylogenetic analyses. The section remaining unsampled is Lotus sect. Benedictella with one critically endangered and possibly [...] Read more.
Lotus, with about 120 species, is the largest genus of Leguminosae–Loteae. The last global classification recognized 14 sections, of which 13 were then sampled in molecular phylogenetic analyses. The section remaining unsampled is Lotus sect. Benedictella with one critically endangered and possibly extinct species, L. benoistii. This is an annual species known from Mediterranean-type vernal pools in the lowlands of northwestern Morocco that differs from other species of the genus in many-seeded indehiscent fruits with thin pericarp and pinnate leaves with 6–9 leaflets. This species was described in a monospecific genus and later transferred to Lotus on the basis of suggested morphological similarities with three mainly desert annuals from North Africa and Southwest Asia currently classified in Lotus sect. Chamaelotus. We provide the first molecular phylogenetic data on L. benoistii and show that it is far from L. sect. Chamaelotus. It is close to plants traditionally classified in Lotus sect. Lotus that have a center of diversity in Europe and temperate Asia. Phylogenetic analyses of plastid markers showed that L. sect. Chamaelotus belongs to a clade with major taxonomic diversity in Macaronesia, Africa, SW Asia, and Australia. Morphology does not provide arguments against the novel hypothesis on the relationships of L. benoistii. Its possible extinction is a great loss for the breeding programs of the pasture plant L. corniculatus. We provide the first anatomical data of L. benoistii, showing that its non-shattering condition has a peculiar nature that differs from all other instances of indehiscence in Loteae. Full article
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13 pages, 2086 KB  
Article
Vernal Pool Amphibian Inventories in the Temperate Forests of Eastern North America: Can Environmental DNA Replace the Traditional Methods?
by Bautisse Postaire, Angélique Dupuch, Emilie Ladent and Yann Surget-Groba
Forests 2023, 14(10), 1930; https://doi.org/10.3390/f14101930 - 22 Sep 2023
Cited by 4 | Viewed by 2609
Abstract
Amphibian populations have been globally declining since at least 1990. In the temperate forests of eastern North America, vernal pools offer important breeding habitats to many amphibians but are usually not considered for forest management because of their small size and temporary status. [...] Read more.
Amphibian populations have been globally declining since at least 1990. In the temperate forests of eastern North America, vernal pools offer important breeding habitats to many amphibians but are usually not considered for forest management because of their small size and temporary status. The effective monitoring and management of amphibians rely on accurate knowledge of their spatiotemporal distributions, which is often expensive to collect due to the amount of fieldwork required. In this study, we tested whether eDNA metabarcoding could identify the same amphibian communities as the traditional inventory protocols. We collected eDNA samples in twelve vernal pools in the spring of 2019 and identified their communities via metabarcoding. At each pool, three traditional amphibian inventory methods were used: call surveys, trapping, and active search surveys. In total, 13 amphibian species were detected, with most of them being detected using both eDNA and the traditional methods. When comparing the results of eDNA with the traditional methods, we found that species ecology and behavior are key factors of its detectability via a specific method. With its higher taxonomical precision and repeatability, eDNA metabarcoding allows for the inventorying of amphibian species living and reproducing in vernal pools and their vicinity with accuracy. As eDNA metabarcoding is inexpensive compared to the traditional methods, we conclude that eDNA sampling should be considered for integration as a standard monitoring tool, after an initial assessment of amphibian diversity. Full article
(This article belongs to the Special Issue Environmental DNA as a Rapid Forest Biodiversity Inventory Tool)
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11 pages, 943 KB  
Article
Beyond the Hydro-Regime: Differential Regulation of Plant Functional Groups in Seasonal Ponds
by Jasmine Rios, Melanie Dibbell, Emely Flores and Jamie M. Kneitel
Diversity 2023, 15(7), 832; https://doi.org/10.3390/d15070832 - 2 Jul 2023
Cited by 6 | Viewed by 2318
Abstract
Plant community assembly can be influenced by many environmental factors. In seasonal wetlands, most studies focus on the considerable variation that occurs from the hydro-regime (patterns of inundation and desiccation). Other factors and their interactions also influence plants but are seldom studied, including [...] Read more.
Plant community assembly can be influenced by many environmental factors. In seasonal wetlands, most studies focus on the considerable variation that occurs from the hydro-regime (patterns of inundation and desiccation). Other factors and their interactions also influence plants but are seldom studied, including nutrient and thatch levels. Furthermore, the responses of aquatic and terrestrial functional groups can provide important insights into patterns of cover and richness. The aim of this study was to evaluate how algae and plant functional groups (aquatic and terrestrial plants) respond to variation in hydro-regime (stable and unstable), nutrient addition (none and added), and thatch (none, native plants, and exotic plants) addition. We measured algal cover, total species richness, and the cover of the functional groups over two years. Algal cover increased with unstable hydroperiods and the addition of nutrients. Algae were also negatively associated with aquatic plant cover and positively associated with terrestrial plant cover. Aquatic plant cover increased with a stable hydro-regime and decreased with increased thatch. Terrestrial plant cover increased with an unstable hydro-regime and decreased with thatch addition. Thatch accumulation and excess nutrients can be linked to human activities, which directly and indirectly alter plant community composition. The interactions of these factors with the hydro-regime should be considered when evaluating a plant community’s response to changing environmental conditions. Overall, these results are necessary for the conservation and management of essential wetland functions and services. Full article
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18 pages, 3907 KB  
Article
Description of Cylindrospermum solincola sp. nov. from Jammu and Kashmir, India and Further Insights into the Ecological Distribution and Morphological Attributes of Cylindrospermum badium
by Naresh Kumar, Aniket Saraf, Sagarika Pal and Prashant Singh
Diversity 2023, 15(5), 592; https://doi.org/10.3390/d15050592 - 25 Apr 2023
Cited by 5 | Viewed by 3507
Abstract
Two cyanobacterial strains KUT1-PS and 18C-PS were collected from the soil surface and vernal pool, respectively, from the Basantgarh village, Udhampur district of the union territory of Jammu and Kashmir, India and characterized by a polyphasic approach. The morphological characterization indicated that both [...] Read more.
Two cyanobacterial strains KUT1-PS and 18C-PS were collected from the soil surface and vernal pool, respectively, from the Basantgarh village, Udhampur district of the union territory of Jammu and Kashmir, India and characterized by a polyphasic approach. The morphological characterization indicated that both the strains showed typical Cylindrospermum-like morphology and probably belonged to the genus Cylindrospermum. Further, phylogenetic interpretations at the genus level were made using the 16S rRNA gene while the 16S-23S ITS region phylogenetic analysis and secondary structure analysis were conducted to enhance the resolution at the species level. The results from the comparative morphological analysis, the 16S rRNA gene percent similarity and phylogenetic analyses, the 16S-23S ITS percent dissimilarity and the ITS secondary structure analyses provided enough evidence that the strain 18C-PS is a representative of Cylindrospermum badium, providing further insights into its ecological distribution and morphological attributes. Additionally, the strain KUT1-PS was a novel species of the genus Cylindrospermum and is referred to herein as Cylindrospermum solincola sp. nov., in accordance with the International Code of Nomenclature for algae, fungi and plants. This study also discusses the importance of comparing the newly sequenced strains with previously established species before making final taxonomic interpretations. Full article
(This article belongs to the Special Issue The Phylogenetic Diversity of Cyanobacteria and Algae)
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14 pages, 12803 KB  
Article
Flora and Conservation Issues in Two Protected Areas in Palestine: Wadi Al-Zarqa Al-Ulwi and Wadi Qana
by Mazin B. Qumsiyeh and Banan Al-Sheikh
Diversity 2023, 15(2), 142; https://doi.org/10.3390/d15020142 - 20 Jan 2023
Cited by 7 | Viewed by 5914
Abstract
The Palestinian environment suffered from abuse and neglect for decades. As a nascent state, Palestine aspired to protect and restore its environment, in line with international standards and conventions. Yet, many challenges remain, including a lack of data, the science–policy–practice gaps, and the [...] Read more.
The Palestinian environment suffered from abuse and neglect for decades. As a nascent state, Palestine aspired to protect and restore its environment, in line with international standards and conventions. Yet, many challenges remain, including a lack of data, the science–policy–practice gaps, and the lack of sovereignty. The management of protected areas (PAs) is particularly challenging under these circumstance. Two key protected areas in the northern West Bank (Wadi Qana and Wadi Al-Zarqa Al-Ulwi) were surveyed, with a focus on plant communities and dealing with threats. The two areas had similar Mediterranean flora with differences, including in rare plants. Both areas have important but different wetlands in their buffer zones. The data show that the protection of the two areas is important because of the differences noted, and both areas are valued as IUCN category IV (habitat/species management area) protection. Such protection is possible by working with local communities and bridging the science–policy–practice gaps. Full article
(This article belongs to the Special Issue Ecology, Conservation and Restoration of Plant Species)
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17 pages, 1960 KB  
Article
Pool Age and Local Habitat Are Associated with Effective Number of Breeders in Spotted Salamander Populations Colonizing Created Vernal Pools
by Alice R. Millikin, Stephanie S. Coster, Amy B. Welsh and James T. Anderson
Diversity 2023, 15(2), 124; https://doi.org/10.3390/d15020124 - 17 Jan 2023
Cited by 4 | Viewed by 4083
Abstract
Population genetics can reveal whether colonization of created habitats has been successful and inform future strategies for habitat creation. We used genetic analysis to investigate spotted salamander (Ambystoma maculatum) colonization of created vernal pools and explored the impact of habitat characteristics [...] Read more.
Population genetics can reveal whether colonization of created habitats has been successful and inform future strategies for habitat creation. We used genetic analysis to investigate spotted salamander (Ambystoma maculatum) colonization of created vernal pools and explored the impact of habitat characteristics on the genetic diversity and connectivity of the pools. Our first objective was to examine genetic structure, differentiation, diversity, and potential for a founder effect. Our second objective was to determine if habitat characteristics were associated with effective number of breeders, relatedness, or genetic diversity. We sampled spotted salamander larvae in 31 created vernal pools (1–5 years old) in Monongahela National Forest (WV) in May and June 2015 and 2016. The youngest pools exhibited genetic differentiation, a founder effect, and low effective number of breeders. Effective number of breeders was positively associated with pool age, vegetation cover, pool diameter, and sample size. Vegetation cover was also negatively associated with relatedness. Genetic diversity did not have strong environmental predictors. Our results indicated the effective number of breeders increased and genetic differentiation decreased within 4–5 years of pool creation, a sign of rapid colonization and potential population establishment. Our research also showed that higher vegetative cover within the pool and larger pool diameters could impact habitat quality and should be incorporated into future pool creation. Full article
(This article belongs to the Collection Feature Papers in Animal Diversity)
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19 pages, 393 KB  
Review
Restoration of Geographically Isolated Wetlands: An Amphibian-Centric Review of Methods and Effectiveness
by Angela K. Burrow and Stacey Lance
Diversity 2022, 14(10), 879; https://doi.org/10.3390/d14100879 - 18 Oct 2022
Cited by 18 | Viewed by 6239
Abstract
Geographically isolated wetlands provide a critical habitat for pond-breeding amphibians, a taxa of broad conservation concern. Global wetland loss and degradation has made restoration essential for amphibian conservation. Restoration goals typically include recovering the wetlands’ physiochemical, hydrological, and ecological functions. However, for pond-breeding [...] Read more.
Geographically isolated wetlands provide a critical habitat for pond-breeding amphibians, a taxa of broad conservation concern. Global wetland loss and degradation has made restoration essential for amphibian conservation. Restoration goals typically include recovering the wetlands’ physiochemical, hydrological, and ecological functions. However, for pond-breeding amphibians, successful restoration should also result in sustained populations, which is difficult to assess and infrequently reported. In this paper, we review the available evidence that restoration of geographically isolated wetlands promotes pond-breeding amphibian occupancy and population persistence. We provide an overview of restoration practices addressing hydrology, vegetation, and ecological processes within these unique environments and across spatial scales. We then summarize the evidence, and discuss the limitations, for evaluating successful restoration within the context of amphibian conservation across these categories. Finally, we provide recommendations for researchers and practitioners to leverage prior successes and establish systematic data collection and dissemination. Moving restoration of wetlands for amphibian conservation forward will require more robust data collection and reporting. Full article
(This article belongs to the Special Issue Amphibian Ecology in Geographically Isolated Wetlands)
15 pages, 11704 KB  
Article
Investigating Vernal Pool Fairy Shrimp Exposure to Organophosphate Pesticides: Implications for Population-Level Risk Assessment
by David H. Miller, Matthew Etterson, Leah Oliver, Elizabeth Paulukonis, Nathan Pollesch, S. Thomas Purucker, D. Christopher Rogers, Sumathy Sinnathamby and Sandy Raimondo
Ecologies 2022, 3(3), 308-322; https://doi.org/10.3390/ecologies3030024 - 2 Aug 2022
Cited by 5 | Viewed by 5116
Abstract
Vernal pool fairy shrimp, Branchinecta lynchi, is a freshwater crustacean endemic to California and Oregon, including California’s Central Valley. B. lynchi is listed as a Federally Threatened species under the US Endangered Species Act, and as a vulnerable species on the IUCN [...] Read more.
Vernal pool fairy shrimp, Branchinecta lynchi, is a freshwater crustacean endemic to California and Oregon, including California’s Central Valley. B. lynchi is listed as a Federally Threatened species under the US Endangered Species Act, and as a vulnerable species on the IUCN Red List. Threats that may negatively impact vernal pool fairy shrimp populations include pesticide applications to agricultural land use (e.g., agrochemicals such as organophosphate pesticides) and climate changes that impact vernal pool hydrology. Pop-GUIDE (Population model Guidance, Use, Interpretation, and Development for Ecological risk assessment) is a comprehensive tool that facilitates development and implementation of population models for ecological risk assessment and can be used to document the model derivation process. We employed Pop-GUIDE to document and facilitate the development of a population model for investigating impacts of organophosphate pesticides on vernal pool fairy shrimp populations in California’s Central Valley. The resulting model could be applied in combination with field assessment and laboratory-based chemical analysis to link effects from pesticide exposure to adverse outcomes in populations across their range. B. lynchi has a unique intra-annual life cycle that is largely dependent upon environmental conditions. Future deployment of this population model should include complex scenarios consisting of multiple stressors, whereby the model is used to examine scenarios that combine chemical stress resulting from exposure to pesticides and climate changes. Full article
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18 pages, 1059 KB  
Article
Phenology and Dwarfing Gene Interaction Effects on the Adaptation of Selected Wheat (Triticum aestivum L.) Advanced Lines across Diverse Water-Limited Environments of Western Australia
by Mirza A.N.N.U. Dowla, Shahidul Islam, Katia Stefanova, Graham O’ Hara, Wujun Ma and Ian Edwards
Agriculture 2020, 10(10), 470; https://doi.org/10.3390/agriculture10100470 - 13 Oct 2020
Cited by 6 | Viewed by 3930
Abstract
Photoperiod, vernalization, and plant height controlling genes are major developmental genes in wheat that govern environmental adaptation and hence, knowledge on the interaction effects among different alleles of these genes is crucial in breeding cultivars for target environments. The interaction effects among these [...] Read more.
Photoperiod, vernalization, and plant height controlling genes are major developmental genes in wheat that govern environmental adaptation and hence, knowledge on the interaction effects among different alleles of these genes is crucial in breeding cultivars for target environments. The interaction effects among these genes were studied in nineteen Australian advanced lines from diverse germplasm pools and four commercial checks. Diagnostic markers for the Vrn-A1 locus revealed the presence of the spring allele Vrn-A1a in 10 lines and Vrn-A1c in one line. The dominant alleles of Vrn-B1a and Vrn-D1a were identified in 19 and 8 lines, respectively. The most common photoperiod-insensitive allele of Ppd-D1a was identified in 19 lines and three and four copy photoperiod-insensitive alleles (Ppd-B1a and Ppd-B1c) were present in five and one lines, respectively. All the lines were photoperiod-sensitive for the Ppd-A1 locus. All lines were semi-dwarf, having either of the two dwarfing alleles; 14 lines had the Rht-B1b (Rht-1) and the remaining had the Rht-D1b (Rht-2) dwarfing allele. The presence of the photoperiod-insensitive allele Ppd-D1a along with one or two spring alleles at the Vrn1 loci resulted in an earlier heading and better yield. Dwarfing genes were found to modify the heading time—the Rht-D1b allele advanced heading by three days and also showed superior effects on yield-contributing traits, indicating its beneficial role in yield under rain-fed conditions along with an appropriate combination of photoperiod and vernalization alleles. This study also identified the adaptability value of these allelic combinations for higher grain yield and protein content across the different the water-limited environments. Full article
(This article belongs to the Section Crop Genetics, Genomics and Breeding)
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24 pages, 7200 KB  
Article
Effect of Protection Level in the Hydroperiod of Water Bodies on Doñana’s Aeolian Sands
by Javier Bustamante, David Aragonés and Isabel Afán
Remote Sens. 2016, 8(10), 867; https://doi.org/10.3390/rs8100867 - 20 Oct 2016
Cited by 23 | Viewed by 10025
Abstract
Mediterranean temporary ponds on Doñana’s aeolian sands form an extensive system of small dynamic water bodies, dependent on precipitation and groundwater, of considerable importance for biodiversity conservation. Different areas of the aeolian sands have received different levels of environmental protection since 1969, and [...] Read more.
Mediterranean temporary ponds on Doñana’s aeolian sands form an extensive system of small dynamic water bodies, dependent on precipitation and groundwater, of considerable importance for biodiversity conservation. Different areas of the aeolian sands have received different levels of environmental protection since 1969, and this has influenced the degree of conservation and the flooding dynamic of these temporary surface waters. We use the Landsat series of satellite images from 1985 to 2014 to study the temporal dynamic of small temporary water bodies on the aeolian sands in relation to the protection level and to distance to water abstraction pressures from agriculture and residential areas. The results show that even with small and ephemeral water bodies optical remote sensing time-series are an effective way to study their flooding temporal dynamics. The protected areas of the aeolian sands hold a better preserved system of temporary ponds, with a flooding dynamic that fluctuates with precipitation. The unprotected area shows an increase in mean hydroperiod duration, and surface flooded, and a decline in hydroperiod variability. This seems to be due to the creation of irrigation ponds and the artificialization of the flooding regime of the natural temporary ponds, that either receive excess irrigation water or dry-up due to the lowering of the groundwater table level. Although a decline in hydroperiod duration of temporary ponds is seen as negative to the system, an increase in hydroperiod of surface waters due to artificialization, or a decline in variability cannot be considered as positive compensatory effects. Full article
(This article belongs to the Special Issue What can Remote Sensing Do for the Conservation of Wetlands?)
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21 pages, 5127 KB  
Article
Identification of Woodland Vernal Pools with Seasonal Change PALSAR Data for Habitat Conservation
by Laura L. Bourgeau-Chavez, Yu Man Lee, Michael Battaglia, Sarah L. Endres, Zachary M. Laubach and Kirk Scarbrough
Remote Sens. 2016, 8(6), 490; https://doi.org/10.3390/rs8060490 - 10 Jun 2016
Cited by 23 | Viewed by 10898
Abstract
Woodland vernal pools are important, small, cryptic, ephemeral wetland ecosystems that are vulnerable to a changing climate and anthropogenic influences. To conserve woodland vernal pools for the state of Michigan USA, vernal pool detection and mapping methods were sought that would be efficient, [...] Read more.
Woodland vernal pools are important, small, cryptic, ephemeral wetland ecosystems that are vulnerable to a changing climate and anthropogenic influences. To conserve woodland vernal pools for the state of Michigan USA, vernal pool detection and mapping methods were sought that would be efficient, cost-effective, repeatable and accurate. Satellite-based L-band radar data from the high (10 m) resolution Japanese ALOS PALSAR sensor were evaluated for suitability in vernal pool detection beneath forest canopies. In a two phase study, potential vernal pool (PVP) detection was first assessed with unsupervised PALSAR (LHH) two season change detection (spring when flooded—summer when dry) and validated with 268, 1 ha field-sampled test cells. This resulted in low false negatives (14%–22%), overall map accuracy of 48% to 62% and high commission error (66%). These results make this blind two-season PALSAR approach for cryptic PVP detection of use for locating areas of high vernal pool likelihood. In a second phase of the research, PALSAR was integrated with 10 m USGS DEM derivatives in a machine learning classifier, which greatly improved overall PVP map accuracies (91% to 93%). This supervised approach with PALSAR was found to produce better mapping results than using LiDAR intensity or C-band SAR data in a fusion with the USGS DEM-derivatives. Full article
(This article belongs to the Special Issue What can Remote Sensing Do for the Conservation of Wetlands?)
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24 pages, 10153 KB  
Article
An Effective Method for Detecting Potential Woodland Vernal Pools Using High-Resolution LiDAR Data and Aerial Imagery
by Qiusheng Wu, Charles Lane and Hongxing Liu
Remote Sens. 2014, 6(11), 11444-11467; https://doi.org/10.3390/rs61111444 - 17 Nov 2014
Cited by 54 | Viewed by 15220
Abstract
Effective conservation of woodland vernal pools—important components of regional amphibian diversity and ecosystem services—depends on locating and mapping these pools accurately. Current methods for identifying potential vernal pools are primarily based on visual interpretation and digitization of aerial photographs, with variable accuracy and [...] Read more.
Effective conservation of woodland vernal pools—important components of regional amphibian diversity and ecosystem services—depends on locating and mapping these pools accurately. Current methods for identifying potential vernal pools are primarily based on visual interpretation and digitization of aerial photographs, with variable accuracy and low repeatability. In this paper, we present an effective and efficient method for detecting and mapping potential vernal pools using stochastic depression analysis with additional geospatial analysis. Our method was designed to take advantage of high-resolution light detection and ranging (LiDAR) data, which are becoming increasingly available, though not yet frequently employed in vernal pool studies. We successfully detected more than 2000 potential vernal pools in a ~150 km2 study area in eastern Massachusetts. The accuracy assessment in our study indicated that the commission rates ranged from 2.5% to 6.0%, while the proxy omission rate was 8.2%, rates that are much lower than reported errors of previous vernal pool studies conducted in the northeastern United States. One significant advantage of our semi-automated approach for vernal pool identification is that it may reduce inconsistencies and alleviate repeatability concerns associated with manual photointerpretation methods. Another strength of our strategy is that, in addition to detecting the point-based vernal pool locations for the inventory, the boundaries of vernal pools can be extracted as polygon features to characterize their geometric properties, which are not available in the current statewide vernal pool databases in Massachusetts. Full article
(This article belongs to the Special Issue Towards Remote Long-Term Monitoring of Wetland Landscapes)
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