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应激诱导的F-Box蛋白编码基因OsFBX257调控水稻对干旱胁迫的适应性及脱落酸反应。

Stress-induced F-Box protein-coding gene OsFBX257 modulates drought stress adaptations and ABA responses in rice.

作者信息

Sharma Eshan, Bhatnagar Akanksha, Bhaskar Avantika, Majee Susmita M, Kieffer Martin, Kepinski Stefan, Khurana Paramjit, Khurana Jitendra P

机构信息

Interdisciplinary Centre for Plant Genomics & Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi, India.

Faculty of Biological Sciences, University of Leeds, Leeds, UK.

出版信息

Plant Cell Environ. 2023 Apr;46(4):1207-1231. doi: 10.1111/pce.14496. Epub 2022 Dec 12.

Abstract

F-box (FB) proteins that form part of SKP1-CUL1-F-box (SCF) type of E3 ubiquitin ligases are important components of plant growth and development. Here we characterized OsFBX257, a rice FB protein-coding gene that is differentially expressed under drought conditions and other abiotic stresses. Population genomics analysis suggest that OsFBX257 shows high allelic diversity in aus accessions and has been under positive selection in some japonica, aromatic and indica cultivars. Interestingly, allelic variation at OsFBX257 in aus cultivar Nagina22 is associated with an alternatively spliced transcript. Conserved among land plants, OsFBX257 is a component of the SCF complex, can form homomers and interact molecularly with the 14-3-3 rice proteins GF14b and GF14c. OsFBX257 is co-expressed in a network involving protein kinases and phosphatases. We show that OsFBX257 can bind the kinases OsCDPK1 and OsSAPK2, and that its phosphorylation can be reversed by phosphatase OsPP2C08. OsFBX257 expression level modulates root architecture and drought stress tolerance in rice. OsFBX257 knockdown (OsFBX257 ) lines show reduced total root length and depth, crown root number, panicle size and survival under stress. In contrast, its overexpression (OsFBX257 ) increases root depth, leaf and grain length, number of panicles, and grain yield in rice. OsFBX257 is a promising breeding target for alleviating drought stress-induced damage in rice.

摘要

F-box(FB)蛋白是SKP1-CUL1-F-box(SCF)型E3泛素连接酶的组成部分,是植物生长发育的重要组成部分。在此,我们对OsFBX257进行了表征,它是一个水稻FB蛋白编码基因,在干旱条件和其他非生物胁迫下差异表达。群体基因组学分析表明,OsFBX257在籼稻品种中显示出高等位基因多样性,并且在一些粳稻、香稻和籼稻品种中受到正选择。有趣的是,籼稻品种Nagina22中OsFBX257的等位基因变异与一个可变剪接转录本相关。OsFBX257在陆地植物中保守,是SCF复合体的一个组成部分,能形成同聚物,并与水稻14-3-3蛋白GF14b和GF14c发生分子相互作用。OsFBX257在一个涉及蛋白激酶和磷酸酶的网络中共同表达。我们表明,OsFBX257能结合激酶OsCDPK1和OsSAPK2,并且其磷酸化可被磷酸酶OsPP2C08逆转。OsFBX257的表达水平调节水稻的根系结构和干旱胁迫耐受性。OsFBX257基因敲低(OsFBX257 )系在胁迫下总根长、根深度、冠根数、穗大小和存活率降低。相反,其过表达(OsFBX257 )增加了水稻的根深度、叶和粒长、穗数和籽粒产量。OsFBX257是减轻水稻干旱胁迫损伤的一个有前景的育种靶点。

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