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8篇 您的检索式:作者名="Rajwant"
    题名 作者 年代 出处 被引量
1Taking ecological function seriously: soil microbial communities can obviate allelopathic effects of released metabolites 显示文摘Harleen Kaur Rajwant Kaur Surinder Kaur 2009PLoS ONE2009,4,3:1
2Taking ecological function seriously:Soil microbia| communities can obviate allelopathic effects of released metabolites显示文摘Harleen K Rajwant K Surinder K 2009PLoS One2009,4,3:1
3Microsatellite markers: an overview of the recent progress in plants显示文摘RAJWANT K K MANOJ K R SANJAY K ROHTAS S DHAWAN A K 2011Euphytiea2011,177,3:1
4Aquagenic syringeal acrokeratoderma: Report of two teenage cases显示文摘Mollie A. MacCormack Karen Wiss Rajwant Malhotra 2001Journal of the American Academy of Dermatology2001,,1:1
5Taking Ecological Function Seriously:Soil Microbial Communities Can Obviate Allelopathic Effects of Released Metabolites显示文摘Harleen Kaur Rajwant Kaur Surinder Baldwin 0,,03:1
6Editorial note for the Geodesy and Geodynamics journal special issue:Remote Sensing and GIS applications in crustal deformation and neotectonics显示文摘Crustal deformation and neotectonics are well-understood phenomena that happen almost on every part of the Earth and have some diastrophic effects on the Earth’s surface.To understand these effects,Remote Sensing(RS)and(GIS)have sharpened the human ability to learn about the scientiflc reasons for the Earth’s dynamic activities,including active tectonics and surface landform changes in spatially and temporally.Ajay Kumar Taloor Girish Chandra Kothyari Shangmin Zhao Rajwant Mayank Joshi 2022Geodesy and Geodynamics2022,13,3:0
7Non-CG DNA methylation-deficiency mutations enhance mutagenesis rates during salt adaptation in cultured Arabidopsis cells显示文摘Much has been learned about how plants acclimate to stressful environments,but the molecular basis of stress adaptation and the potential involvement of epigenetic regulation remain poorly understood.Here,we examined if salt stress induces mutagenesis in suspension cultured plant cells and if DNA methylation affects the mutagenesis using whole genome resequencing analysis.We generated suspension cell cultures from two Arabidopsis DNA methylation-deficient mutants and wild-type plants,and subjected the cultured cells to stepwise increases in salt stress intensity over 40 culture cycles.We show that ddc(drm1 drm2 cmt3)mutant cells can adapt to grow in 175 mM NaCl-containing growth medium and exhibit higher adaptability compared to wild type Col-0 and nrpe1 cells,which can adapt to grow in only 125mM NaCl-containing growth medium.Salt treated nrpe1 and ddc cells but not wild type cells accumulate more mutations compared with their respective untreated cells.There is no enrichment of stress responsive genes in the list of mutated genes in salt treated cells compared to the list of mutated genes in untreated cells.Our results suggest that DNA methylation prevents the induction of mutagenesis by salt stress in plant cells during stress adaptation.Xiaohong Zhu Shaojun Xie Kai Tang Rajwant KKalia Na Liu Jinbiao Ma Ray ABressan Jian-Kang Zhu 2021Stress Biology2021,1,1:0
8Publisher Correction: Non-CG DNA methylation-deficiency mutations enhance mutagenesis rates during salt adaptation in cultured Arabidopsis cells显示文摘Following publication of this article(Zhu et al.2021),it is noticed that the article contained an error.The affiliation of the author Ray A.Bressan should be below:4.Department of Horticulture and Landscape Architecture,Purdue University,West Lafayette,IN 47907,USA.The author Ray A.Bressan’s affiliation has been updated in this Correction,and the original article has been updated as well.Xiaohong Zhu Shaojun Xie Kai Tang Rajwant KKalia Na Liu Jinbiao Ma Ray ABressan Jian-Kang Zhu 2021Stress Biology2021,1,1:0
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