H
Hanwei Yan
Researcher at Anhui Agricultural University
Publications - 39
Citations - 930
Hanwei Yan is an academic researcher from Anhui Agricultural University. The author has contributed to research in topics: Gene & Gene family. The author has an hindex of 14, co-authored 31 publications receiving 649 citations.
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Journal ArticleDOI
A Novel Maize Homeodomain–Leucine Zipper (HD-Zip) I Gene, Zmhdz10, Positively Regulates Drought and Salt Tolerance in Both Rice and Arabidopsis
Yang Zhao,Qing Ma,Xiaolei Jin,Xiaojian Peng,Jinyang Liu,Lin Deng,Hanwei Yan,Lei Sheng,Haiyang Jiang,Beijiu Cheng +9 more
TL;DR: Results suggest that Zmhdz10 functions as a transcriptional regulator that can positively regulate drought and salt tolerance in plants through an ABA-dependent signaling pathway.
Journal ArticleDOI
Comparative genomic analysis of the WRKY III gene family in populus, grape, arabidopsis and rice.
TL;DR: The expression pattern of PtrWRKYIII gene identified that these genes play important roles in the xylem during poplar growth and development, and may play crucial role in defense to drought stress.
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A genome-wide analysis of the ERF gene family in sorghum.
TL;DR: Comparison of SbERF genes with maize ERF homologs suggests lateral gene transfer between monocot species, and can contribute to the understanting of the evolution of the ERF gene family.
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Genome duplication and gene loss affect the evolution of heat shock transcription factor genes in legumes.
TL;DR: It is shown that the vast majority of Hsf gene duplications resulted from whole genome duplication events rather than tandem duplication, and significant differences in gene retention exist between species.
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Genome-wide identification and characterization of maize expansin genes expressed in endosperm.
Wei Zhang,Hanwei Yan,Weijun Chen,Jinyang Liu,Cuiping Jiang,Haiyang Jiang,Suwen Zhu,Beijiu Cheng +7 more
TL;DR: A systematic analysis of the expansin gene family encompassing gene structure, phylogeny, chromosomal location, gene duplication, and gene ontology provides essential information for ZmEXPs cloning and functional exploration and will assist research on expansin-related mechanisms and contribute to future enhancement of maize grain yield.