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48 results for “Hedysarum”
Evaluating the impact of shade on Nitrogen fixation in sulla (Hedysarum coronarium L.): a 15N natural abundance study
<p>This dataset refers to the experimental raw data (csv version) collected within the trial reported in the concerned article on the following parameters:</p> <p>1. total nitrogen, delta N15, nitrogen derived from atmosphere, root biomass, nitrogen yield, nitrogen fixed, splitted per experiment, mowing, crop, treatment and replicate (15N_root.csv).</p> <p>2. total nitrogen, delta N15, nitrogen derived from atmosphere, shoot biomass, nitrogen yield, nitrogen fixed, splitted per experiment, mowing, crop, treatment and replicate (15N_shoot.csv).</p> <p>3. shoot cumulative nitrogen yield, root cumulative nitrogen yield, shoot cumulative nitrogen fixed, root cumulative nitrogen fixed, shoot:root ratio of nitrogen yield, shoot:root ratio of nitrogen fixed, splitted per experiment, treatment and replicate (shoot root ratio and N cumulative value.csv).</p>
Linked collectors and determiners for: Genus Hedysarum in CSBG SB RAS Digital herbarium.
Natural history specimen data linked to collectors and determiners held within, "Genus Hedysarum in CSBG SB RAS Digital herbarium". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/415f72e6-190e-4e71-80de-d376f4ae084d">https://bionomia.net/dataset/415f72e6-190e-4e71-80de-d376f4ae084d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/415f72e6-190e-4e71-80de-d376f4ae084d">https://gbif.org/dataset/415f72e6-190e-4e71-80de-d376f4ae084d</a>. Formatted as a Frictionless Data package.
FIGURE. Comparison of the sequences of the internal transcribed spacer (ITS) region of Hedysarum sunhangii and Hedysarum nuratense. The variable region is shown in a red frame. in Hedysarum sunhangii (Fabaceae, Hedysareae), a new species from Pamir-Alay (Babatag Ridge - Uzbekistan)
FIGURE. Comparison of the sequences of the internal transcribed spacer (ITS) region of Hedysarum sunhangii and Hedysarum nuratense. The variable region is shown in a red frame.
FIGURE. Bayesian tree based on nuclear (ITS) sequence data showing phylogenetic position of Hedysarum sunhangii sp. nov. in Subsect. Crinifera. Bayesian posterior probability (PP) / maximum parsimony (MP) are given on each branch, respectively; maximum likelihood (ML) is below branches. in Hedysarum sunhangii (Fabaceae, Hedysareae), a new species from Pamir-Alay (Babatag Ridge - Uzbekistan)
FIGURE. Bayesian tree based on nuclear (ITS) sequence data showing phylogenetic position of Hedysarum sunhangii sp. nov. in Subsect. Crinifera. Bayesian posterior probability (PP) / maximum parsimony (MP) are given on each branch, respectively; maximum likelihood (ML) is below branches.
FIGURE. Living plant of Hedysarum sunhangii. A, in its habitat; B, Leaves (1–upper part, 2– lower part); C, Pods (3– front side, 4– lateral side); D, flower; E, raceme; F, entire plant in Hedysarum sunhangii (Fabaceae, Hedysareae), a new species from Pamir-Alay (Babatag Ridge - Uzbekistan)
FIGURE. Living plant of Hedysarum sunhangii. A, in its habitat; B, Leaves (1–upper part, 2– lower part); C, Pods (3– front side, 4– lateral side); D, flower; E, raceme; F, entire plant
FIGURE. Bayesian tree based on combined plastid (matK, trnL-trnF) sequence data showing phylogenetic position of Hedysarum sunhangii sp. nov. in Subsect. Crinifera. Bayesian posterior probability (PP) / maximum parsimony (MP) are given on each branch, respectively; maximum likelihood (ML) is below branches in Hedysarum sunhangii (Fabaceae, Hedysareae), a new species from Pamir-Alay (Babatag Ridge - Uzbekistan)
FIGURE. Bayesian tree based on combined plastid (matK, trnL-trnF) sequence data showing phylogenetic position of Hedysarum sunhangii sp. nov. in Subsect. Crinifera. Bayesian posterior probability (PP) / maximum parsimony (MP) are given on each branch, respectively; maximum likelihood (ML) is below branches
FIGURE 3. A in Hedysarum vuralii (Fabaceae), a new species from Turkey
FIGURE 3. A—Hedysarum vuralii, B—H. dededaghense. a—leaflets, b—flowers, c—calyx, d—standard, e—wings, f—keel, g—stamen, h—lomentum.
FIGURE 5 in Hedysarum vuralii (Fabaceae), a new species from Turkey
FIGURE 5. SEM micrographs of pollen grains of Hedysarum vuralii. A–B: equatorial view, C—polar view, D—exine ornamentation.
FIGURE 2. a in Hedysarum vuralii (Fabaceae), a new species from Turkey
FIGURE 2. a—Hedysarum vuralii Yıldız, Aytaç & T. Ertuğrul (holotype), b—H. dededaghense Govaerts (H. Duman 10308).
FIGURE 1. A in Hedysarum vuralii (Fabaceae), a new species from Turkey
FIGURE 1. A—Habit, B1—upper surface of leaflet, B2—lower surface of leaflet, C—flower, D—calyx, E—standart, F—wing, G—keel, H—androecium, I—pistil, J—legume.
FIGURE 2 in Hedysarum persicum (Hedysareae, Leguminosae), a new species from Talesh Mountains, Iran
FIGURE 2. Hedysarum persicum; A. Leaflet, B. Stipules, C. Calyx, D. Standard, E. Wing, F. Keel, G. Ovary, H. Lomentum, I. Stamina. Photos by M. Bidarlord.
FIGURE 1 in Hedysarum persicum (Hedysareae, Leguminosae), a new species from Talesh Mountains, Iran
FIGURE 1. Habit of Hedysarum persicum A. in the field, and B. in the dry state. Photos by M. Bidarlord.
FIGURE 5 in Recognition of a new species of Hedysarum (Fabaceae, Hedysareae) from China based on morphological and molecular evidence
FIGURE 5. Morphology comparison of leaflets, flowers and legumes of Hedysarum cuonanum, H. longigynophorum and H. xizangense. A, H. longigynophorum (from Chang et al. 2013206, WUK, except for the loment which is from Xu et al. Xu130346, WUK); B, H. cuonanum (from Holotype); C, H. xizangense (from Chen et al. 13-0886, WUK). For specimen details, see Appendix. le, leaflets; b, bracteoles; c, calyx; s, standard; w, wings; k, keels; a, androecium; o, ovary; lo, loment.
FIGURE 2 in Recognition of a new species of Hedysarum (Fabaceae, Hedysareae) from China based on morphological and molecular evidence
FIGURE 2. Bayesian tree based on combined plastid psbA-trnH, trnC-petN, petN-psbM sequences. The Bayesian posterior probabilities are below the branches, and the maximum parsimony (left) and maximum likelihood (right) bootstrap supports are above the branches.
FIGURE 1 in Recognition of a new species of Hedysarum (Fabaceae, Hedysareae) from China based on morphological and molecular evidence
FIGURE 1. Bayesian tree based on combined nuclear ETS and ITS sequences. The Bayesian posterior probabilities are below the branches, and the maximum parsimony (left) and maximum likelihood (right) bootstrap supports are above the branches. A dash indicates a branch that is not found in the maximum likelihood tree.
FIGURE 3 in Hedysarum ketenoglui (Fabaceae-Hedysareae), a new species from southern Turkey
FIGURE 3. Leaf, flower, fruit, and seed characteristics of Hedysarum ketenoglui (A—habitus and inflorescence, B—infrutescence, C1,2,3—fruit types, D—seed, E1,2,3,4—terminal leaflets, F1,2,3,4—lateral leaflets, G—flower, H—standard, J—wing, —keel, L—calyx, M— pistil, N—stamen).
Effects of Hedysarum leguminous plants on soil bacterial microbiome in the Mu Us desert, northwest China
<p><span>By assessing the influence of rhizocompartment types (i.e. root, rhizosphere soil, root zone soil, and inter-shrub bulk soil) on the diversity of soil microbial communities under desert leguminous plant shrubs, and the influence of, and variations in, soil physicochemical factors in interactions among leguminous plants, soil, and microbes. Both 16S rRNA high-throughput genome sequencing and conventional soil physicochemical index determination were used to characterise the bacterial diversity and soil physicochemical properties in the rhizocompartments of two <i>Hedysarum</i> spp. (<i>Hedysarum mongolicum</i> and <i>Hedysarum scoparium</i>) in the Mu Us Desert. We found that all the nutrient indices (except TP and AP), values in rhizosphere soil were uniformly higher than those in root zone soil and inter-shrub bulk soil (<i>P</i> < 0.05). The bacterial community diversity in the root, under-shrub (rhizosphere, root zone) and inter-shrub bulk soil also have significant differences (<i>P</i> < 0.05). Desert leguminous plants had significant effects on hierarchical filtration and enrichment of specific soil bacterial microbiomes (<i>P</i> < 0.05). Root endophyte and rhizosphere soil microbiomes were mainly influenced by soil nutrients, while the bacterial communities in root zones soil and inter-shrub bulk soil were mainly influenced by soil pH and NH<sub>4</sub><sup>+</sup>-N. The rhizocompartment types of desert leguminous plants have a significant influence on the diversity of soil microbial communities. According to our findings, nitrogen-fixing rhizobia can co-exist with non-symbiotic endophytes in the roots of desert leguminous plants, and plants have a hierarchical filtering and enriching effect on beneficial microbes in soil via rhizocompartments. Soil physicochemical factors have a significant influence on the structure and composition of microbial communities in various rhizocompartments, and this influence is derived from the interactions among leguminous plants, soil, and microbes.</span></p>
FIGURE 1 in Validation of the name Hedysarum damghanicum (Fabaceae, Hedysareae) from Iran
FIGURE 1. Holotype of Hedysarum damghanicum Rechinger (G00365781). Photography by courtesy of the herbarium G; reproduced with permission.
FIGURE 2 in A Taxonomic Revision of the Genus Hedysarum L. (Fabaceae-Hedysareae) in Iran
FIGURE 2. Fifty percent majority rule consensus tree resulting from Bayesian inference of the combined plastid dataset (trnL-F, matK). Numbers above branches are posterior probabilities (PP) and numbers below the branches are likelihood bootstrap values; values <50% are not shown. Numbers after species names are herbarium numbers, given only if more than one accession per species is included along with distribution areas.
FIGURE 1 in A Taxonomic Revision of the Genus Hedysarum L. (Fabaceae-Hedysareae) in Iran
FIGURE 1. Fifty percent majority rule consensus tree resulting from Bayesian inference of the nrDNA ITS dataset. Numbers above branches are posterior probabilities (PP) and numbers below the branches are likelihood bootstrap values; values <50% are not shown. Numbers after species names are herbarium numbers, given only if more than one accession per species is included along with distribution areas.
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