日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Transcriptome Analysis Identifies OsWRKY26 as a Key Regulator for Cold Tolerance at the Seedling Stage in Rice.

转录组分析表明 OsWRKY26 是水稻幼苗期耐寒性的关键调控因子。

Lou Qijin, Ren Shasha, Wang Ming, Zhou Jiajia, Li Jin, Xie Zhigan, Xu Chen, Chen Shengyu, Yu Hao, Luo Linyan, Zhao Yao, Liu Yaomin, Ye Chao, Ke Xianshi, Wang Peifeng, Liu Xingbei, Chen Mo, Guo Haifeng

An elite allele TaDT1-A(hapI) enhances drought tolerance via mediating autophagic pathways in wheat

小麦中的一种优良等位基因TaDT1-A(hapI)通过调控自噬途径增强其耐旱性。

Liu, Xingbei; Li, Jinpeng; Zhang, Chenji; Zhao, Danyang; Peng, Xiao; Yang, Qun; Liu, Zehui; Miao, Lingfeng; Chu, Wei; Lin, Jingchen; Chang, Shumin; Liu, Debiao; Liu, Xiaoyu; Wang, Wenxi; Wang, Xiaobo; Xin, Mingming; Yao, Yingyin; Guo, Weilong; Xie, Xiaodong; Peng, Huiru; Ni, Zhongfu; Sun, Qixin; Hu, Zhaorong

Lysine deacetylase TaSRT1 mediates wheat drought tolerance by deacetylating TaDT-A to reduce its protein stability and transcriptional activity.

赖氨酸脱乙酰酶 TaSRT1 通过对 TaDT-A 进行脱乙酰化,降低其蛋白质稳定性和转录活性,从而介导小麦的耐旱性

Chang Shumin, Yang Qun, Chu Wei, Liu Xingbei, Li Jinpeng, Liu Zehui, Lin Jingchen, Liu Debiao, Zhao Danyang, Peng Xiao, Xin Mingming, Yao Yingyin, Xie Xiaodong, Peng Huiru, Ni Zhongfu, Sun Qixin, Hu Zhaorong

Transcriptome Analysis Reveals the Pivotal Genes and Regulation Pathways Under Cold Stress and Identifies SbERF027, an AP2/ERF Gene That Confers Cold Tolerance in Sorghum

转录组分析揭示了冷胁迫下的关键基因和调控通路,并鉴定出SbERF027,一种赋予高粱耐寒性的AP2/ERF基因。

Lou, Qijin; Wang, Peifeng; Yu, Miao; Xie, Zhigan; Xu, Chen; Chen, Shengyu; Yu, Hao; Zhang, Rui; Tian, Guangling; Hao, Di; Ke, Xianshi; Yu, Shuai; Zhou, Jiajia; Zhao, Yao; Ye, Chao; Guo, Jiyuan; Zhang, Haiyan; Chen, Mo; Liu, Xingbei

The potassium transporter TaNHX2 interacts with TaGAD1 to promote drought tolerance via modulating stomatal aperture in wheat

钾转运蛋白TaNHX2与TaGAD1相互作用,通过调节小麦气孔开度来增强其耐旱性。

Li, Jinpeng; Liu, Xingbei; Chang, Shumin; Chu, Wei; Lin, Jingchen; Zhou, Hui; Hu, Zhuoran; Zhang, Mancang; Xin, Mingming; Yao, Yingyin; Guo, Weilong; Xie, Xiaodong; Peng, Huiru; Ni, Zhongfu; Sun, Qixin; Long, Yu; Hu, Zhaorong

Histone acetyltransferase TaHAG1 interacts with TaNACL to promote heat stress tolerance in wheat

组蛋白乙酰转移酶TaHAG1与TaNACL相互作用,促进小麦耐热性。

Lin, Jingchen; Song, Na; Liu, Debiao; Liu, Xingbei; Chu, Wei; Li, Jinpeng; Chang, Shumin; Liu, Zehui; Chen, Yongming; Yang, Qun; Liu, Xiaoyu; Yao, Yingyin; Guo, Weilong; Xin, Mingming; Peng, Huiru; Ni, Zhongfu; Sun, Qixin; Hu, Zhaorong

Histone acetyltransferase TaHAG1 interacts with TaPLATZ5 to activate TaPAD4 expression and positively contributes to powdery mildew resistance in wheat

组蛋白乙酰转移酶TaHAG1与TaPLATZ5相互作用,激活TaPAD4的表达,从而促进小麦对白粉病的抗性。

Song, Na; Lin, Jingchen; Liu, Xingbei; Liu, Zehui; Liu, Debiao; Chu, Wei; Li, Jinpeng; Chen, Yongming; Chang, Shumin; Yang, Qun; Liu, Xiaoyu; Guo, Weilong; Xin, Mingming; Yao, Yingyin; Peng, Huiru; Ni, Zhongfu; Xie, Chaojie; Sun, Qixin; Hu, Zhaorong

Subgenome-biased expression and functional diversification of a Na(+)/H(+) antiporter homoeologs in salt tolerance of polyploid wheat

多倍体小麦耐盐性中Na(+)/H(+)反向转运蛋白同源物的亚基因组偏向表达和功能多样化

Zheng, Mei; Li, Jinpeng; Zeng, Chaowu; Liu, Xingbei; Chu, Wei; Lin, Jingchen; Wang, Fengzhi; Wang, Weiwei; Guo, Weilong; Xin, Mingming; Yao, Yingyin; Peng, Huiru; Ni, Zhongfu; Sun, Qixin; Hu, Zhaorong