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2009 4
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36 results

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Page 1
Developmental Analysis of Compound Leaf Development in Arachis hypogaea.
Sun R, Peng Z, Li S, Mei H, Xu Y, Yang W, Lu Z, Wang H, Zhang J, Zhou C. Sun R, et al. Front Plant Sci. 2022 Feb 10;13:749809. doi: 10.3389/fpls.2022.749809. eCollection 2022. Front Plant Sci. 2022. PMID: 35222458 Free PMC article.
The leaves of A. hypogaea are in the tetrafoliate form, which is different from the trifoliate leaf pattern of Medicago truncatula, a model legume species. ...In this study, the development of compound leaf in A. hypogaea was investigated. Transcriptomic prof …
The leaves of A. hypogaea are in the tetrafoliate form, which is different from the trifoliate leaf pattern of Medicago trunca …
Effects of Non-Thermal Plasma Treatment on Seed Germination and Early Growth of Leguminous Plants-A Review.
Šerá B, Scholtz V, Jirešová J, Khun J, Julák J, Šerý M. Šerá B, et al. Plants (Basel). 2021 Aug 6;10(8):1616. doi: 10.3390/plants10081616. Plants (Basel). 2021. PMID: 34451662 Free PMC article. Review.
Some important plant species as soybean (Glycine max), bean (Phaseolus vulgaris), mung bean (Vigna radiata), black gram (V. mungo), pea (Pisum sativum), lentil (Lens culinaris), peanut (Arachis hypogaea), alfalfa (Medicago sativa), and chickpea (Cicer aruetinum) are …
Some important plant species as soybean (Glycine max), bean (Phaseolus vulgaris), mung bean (Vigna radiata), black gram (V. mungo), pea (Pis …
Functional conservation of CYCLOPS in crack entry legume Arachis hypogaea.
Das DR, Horváth B, Kundu A, Kaló P, DasGupta M. Das DR, et al. Plant Sci. 2019 Apr;281:232-241. doi: 10.1016/j.plantsci.2018.12.003. Epub 2018 Dec 12. Plant Sci. 2019. PMID: 30824056
Here we show the functional analysis of AhCYCLOPS in Arachis hypogaea where bacteria invade roots through epidermal cracks. Exploiting significant cross-species domain conservation, trans-complementation experiments involving ectopic expression of AhCYCLOPS in transgenic h …
Here we show the functional analysis of AhCYCLOPS in Arachis hypogaea where bacteria invade roots through epidermal cracks. Exploitin …
Genome-Wide Identification and Expression Analysis of AP2/ERF Transcription Factor Related to Drought Stress in Cultivated Peanut (Arachis hypogaea L.).
Cui M, Haider MS, Chai P, Guo J, Du P, Li H, Dong W, Huang B, Zheng Z, Shi L, Zhang X, Han S. Cui M, et al. Front Genet. 2021 Oct 13;12:750761. doi: 10.3389/fgene.2021.750761. eCollection 2021. Front Genet. 2021. PMID: 34721538 Free PMC article.
Herein, 185 AP2/ERF TF members were identified from the cultivated peanut (A. hypogaea cv. Tifrunner) genome, clustered into five subfamilies: AP2 (APETALA2), ERF (ethylene-responsive-element-binding), DREB (dehydration-responsive-element-binding), RAV (related to ABI3/VP) …
Herein, 185 AP2/ERF TF members were identified from the cultivated peanut (A. hypogaea cv. Tifrunner) genome, clustered into five sub …
An analysis of synteny of Arachis with Lotus and Medicago sheds new light on the structure, stability and evolution of legume genomes.
Bertioli DJ, Moretzsohn MC, Madsen LH, Sandal N, Leal-Bertioli SC, Guimarães PM, Hougaard BK, Fredslund J, Schauser L, Nielsen AM, Sato S, Tabata S, Cannon SB, Stougaard J. Bertioli DJ, et al. BMC Genomics. 2009 Jan 23;10:45. doi: 10.1186/1471-2164-10-45. BMC Genomics. 2009. PMID: 19166586 Free PMC article.
The Galegoids are mostly temperate and include clover, fava bean and the model legumes Lotus and Medicago (both with substantially sequenced genomes). In contrast, peanut (Arachis hypogaea) falls in the Dalbergioid clade which is more basal in its divergence within …
The Galegoids are mostly temperate and include clover, fava bean and the model legumes Lotus and Medicago (both with substantially se …
Mining functional microsatellites in legume unigenes.
Roorkiwal M, Sharma PC. Roorkiwal M, et al. Bioinformation. 2011;7(5):264-70. doi: 10.6026/97320630007264. Epub 2011 Oct 31. Bioinformation. 2011. PMID: 22125396 Free PMC article.
This study concentrates on comparative analysis of genic microsatellites in nine important legume (Arachis hypogaea, Cajanus cajan, Cicer arietinum, Glycine max, Lotus japonicus, Medicago truncatula, Phaseolus vulgaris, Pisum sativum and Vigna unguiculata) and two m …
This study concentrates on comparative analysis of genic microsatellites in nine important legume (Arachis hypogaea, Cajanus cajan, C …
Genome-wide exploration of sugar transporter (sweet) family proteins in Fabaceae for Sustainable protein and carbon source.
Singh N, Ujinwal M, Langyan S, Sayyed RZ, El Enshasy HA, Kenawy AA. Singh N, et al. PLoS One. 2022 May 13;17(5):e0268154. doi: 10.1371/journal.pone.0268154. eCollection 2022. PLoS One. 2022. PMID: 35560044 Free PMC article. Retracted.
Here, we performed a comprehensive analysis of 155 identified SWEET proteins across 12 legumes species, namely (Cajanus cajan, Glycine max, Vigna radiate, Vigna angularis, Medicago truncatula, Lupinus angustifolius, Glycine soja, Spatholobus suberectus, Cicer arietinum, Ar …
Here, we performed a comprehensive analysis of 155 identified SWEET proteins across 12 legumes species, namely (Cajanus cajan, Glycine max, …
Characterization of the beta-1,3-glucanase gene in peanut (Arachis hypogaea L.) by cloning and genetic transformation.
Qiao LX, Ding X, Wang HC, Sui JM, Wang JS. Qiao LX, et al. Genet Mol Res. 2014 Mar 17;13(1):1893-904. doi: 10.4238/2014.March.17.17. Genet Mol Res. 2014. PMID: 24668677 Free article.
As determined by BLAST analysis, the Ah-Glu protein has 42-90% homology with proteins from Oryza sativa (BAC83070.1), Zea mays (NP_001149308), Arabidopsis thaliana (NP_200470.1), Medicago sativa (ABD91577.1), and Glycine max (XP_003530515.1). The over-expression vector pCA …
As determined by BLAST analysis, the Ah-Glu protein has 42-90% homology with proteins from Oryza sativa (BAC83070.1), Zea mays (NP_001149308 …
Microscopic and Transcriptomic Analyses of Dalbergoid Legume Peanut Reveal a Divergent Evolution Leading to Nod-Factor-Dependent Epidermal Crack-Entry and Terminal Bacteroid Differentiation.
Raul B, Bhattacharjee O, Ghosh A, Upadhyay P, Tembhare K, Singh A, Shaheen T, Ghosh AK, Torres-Jerez I, Krom N, Clevenger J, Udvardi M, Scheffler BE, Ozias-Akins P, Sharma RD, Bandyopadhyay K, Gaur V, Kumar S, Sinharoy S. Raul B, et al. Mol Plant Microbe Interact. 2022 Feb;35(2):131-145. doi: 10.1094/MPMI-05-21-0122-R. Epub 2022 Jan 31. Mol Plant Microbe Interact. 2022. PMID: 34689599 Free article.
As a step toward understanding this important group of legumes, we have combined microscopic analysis and temporal transcriptome to obtain a dynamic view of plant gene expression during Arachis hypogaea (peanut) nodule development. We generated comprehensive transcriptome …
As a step toward understanding this important group of legumes, we have combined microscopic analysis and temporal transcriptome to obtain a …
36 results