期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Tyrosylprotein sulfotransferase suppresses ABA signaling via sulfation of SnRK2.2/2.3/2.6
1
作者 Jun Wang Chunyan Wang +6 位作者 Tianrun Wang Shizhong Zhang Kang Yan Guodong Yang Changai Wu Chengchao Zheng Jinguang Huang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2023年第8期1846-1851,共6页
Phytohormone abscisic acid(ABA)plays vital roles in stress tolerance,while long-term overactivation of ABA signaling suppresses plant growth and development.However,the braking mechanism of ABA responses is not clear.... Phytohormone abscisic acid(ABA)plays vital roles in stress tolerance,while long-term overactivation of ABA signaling suppresses plant growth and development.However,the braking mechanism of ABA responses is not clear.Protein tyrosine sulfation catalyzed by tyrosylprotein sulfotransferase(TPST)is a critical post-translational modification.Through genetic screening,we identified a tpst mutant in Arabidopsis that was hypersensitive to ABA.In-depth analysis revealed that TPST could interact with and sulfate SnRK2.2/2.3/2.6,which accelerated their degradation and weakened the ABA signaling.Taken together,these findings uncovered a novel mechanism of desensitizing ABA responses via protein sulfation. 展开更多
关键词 ARABIDOPSIS ABA signaling tyrosylprotein sulfotransferase SULFATION snrk2.2/2.3/2.6
原文传递
拟南芥SnRK2.2/2.3激酶参与调节镉胁迫响应的机制探究
2
作者 朱淋 孙曼丽 +1 位作者 曾沥 魏炜 《四川大学学报(自然科学版)》 CAS CSCD 北大核心 2022年第6期140-148,共9页
为探究拟南芥SnRK2.2和SnRK2.3基因对Cd胁迫响应的分子机制.以野生型(WT)、双突变体SnRK2.2/2.3、过表达SnRK2.2和过表达SnRK2.3的转基因植物为材料,研究SnRK2.2和SnRK2.3基因与Cd胁迫响应的关系.发现过表达两个基因可以提高拟南芥对Cd... 为探究拟南芥SnRK2.2和SnRK2.3基因对Cd胁迫响应的分子机制.以野生型(WT)、双突变体SnRK2.2/2.3、过表达SnRK2.2和过表达SnRK2.3的转基因植物为材料,研究SnRK2.2和SnRK2.3基因与Cd胁迫响应的关系.发现过表达两个基因可以提高拟南芥对Cd的耐受性,表现为可以减少Cd、丙二醛(MDA)及活性氧(ROS)的累积量,增加抗氧化酶CAT、POD和SOD的活性.qRT-PCR结果显示在Cd胁迫下,两种过表达植株中铁转运蛋白IRT1和转录因子FIT、bHLH038和bHLH039表达水平受到明显抑制,ABA合成相关基因AAO3和NCED3的表达量显著上调.在Cd胁迫下,两种过表达植株中ABA含量显著高于WT和双突变体.以上结果表明:拟南芥遭受Cd胁迫时,SnRK2.2和SnRK2.3基因通过下调IRT1基因表达从而减少植物对Cd的吸收,同时通过增加内源ABA含量来缓解Cd对植物的毒害. 展开更多
关键词 拟南芥 CD胁迫 snrk2.2 snrk2.3 ABA
下载PDF
Abscisic acid signaling negatively regulates nitrate uptake via phosphorylation of NRT1.1 by SnRK2s in Arabidopsis 被引量:5
3
作者 Hang Su Tian Wang +5 位作者 Chuanfeng Ju Jinping Deng Tianqi Zhang Mengjiao Li Hui Tian Cun Wang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第3期597-610,共14页
Nitrogen(N)is a limiting nutrient for plant growth and productivity.The phytohormone abscisic acid(ABA)has been suggested to play a vital role in nitrate uptake in fluctuating N environments.However,the molecular mech... Nitrogen(N)is a limiting nutrient for plant growth and productivity.The phytohormone abscisic acid(ABA)has been suggested to play a vital role in nitrate uptake in fluctuating N environments.However,the molecular mechanisms underlying the involvement of ABA in N deficiency responses are largely unknown.In this study,we demonstrated that ABA signaling components,particularly the three subclass Ⅲ SUCROSE NON-FERMENTING1(SNF1)-RELATED PROTEIN KINASE 2 S(SnRK2)proteins,function in root foraging and uptake of nitrate under N deficiency in Arabidopsis thaliana.The snrk2.2 snrk2.3 snrk2.6 triple mutant grew a longer primary root and had a higher rate of nitrate influx and accumulation compared with wild-type plants under nitrate deficiency.Strikingly,SnRK2.2/2.3/2.6 proteins interacted with and phosphorylated the nitrate transceptor NITRATE TRANSPORTER1.1(NRT1.1)in vitro and in vivo.The phosphorylation of NRT1.1 by SnRK2 s resulted in a significant decrease of nitrate uptake and impairment of root growth.Moreover,we identified NRT1.1Ser585 as a previously unknown functional site:the phosphomimetic NRT1.1S585 D was impaired in both low-and high-affinity transport activities.Taken together,our findings provide new insight into how plants fine-tune growth via ABA signaling under N deficiency. 展开更多
关键词 abscisic acid nitrogen deficiency NRT1.1 Sn RK2.2/2.3/2.6
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部