Kothari Kamakshi S, Dansana Prasant K, Giri Jitender, Tyagi Akhilesh K
National Institute of Plant Genome Research, New Delhi India.
Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi India.
Front Plant Sci. 2016 Jul 19;7:1057. doi: 10.3389/fpls.2016.01057. eCollection 2016.
Stress associated proteins (SAPs) are the A20/AN1 zinc-finger containing proteins which can regulate the stress signaling in plants. The rice SAP protein, OsSAP1 has been shown to confer abiotic stress tolerance to plants, when overexpressed, by modulating the expression of endogenous stress-related genes. To further understand the mechanism of OsSAP1-mediated stress signaling, OsSAP1 interacting proteins were identified using yeast two-hybrid analysis. Two novel proteins, aminotransferase (OsAMTR1) and a SCP/TAPS or pathogenesis-related 1 class of protein (OsSCP) were found to interact with OsSAP1. The genes encoding OsAMTR1 and OsSCP were stress-responsive and showed higher expression upon abiotic stress treatments. The role of OsAMTR1 and OsSCP under stress was analyzed by overexpressing them constitutively in Arabidopsis and responses of transgenic plants were assessed under salt and water-deficit stress. The OsAMTR1 and OsSCP overexpressing plants showed higher seed germination, root growth and fresh weight than wild-type plants under stress conditions. Overexpression of OsAMTR1 and OsSCP affected the expression of many known stress-responsive genes which were not affected by the overexpression of OsSAP1. Moreover, the transcript levels of OsSCP and OsAMTR1 were also unaffected by the overexpression of OsSAP1. Hence, it was concluded that OsSAP1 regulates the stress responsive signaling by interacting with these proteins which further regulate the downstream stress responsive gene expression.
应激相关蛋白(SAPs)是含A20/AN1锌指结构的蛋白,可调控植物中的应激信号传导。水稻SAP蛋白OsSAP1已被证明,过表达时通过调节内源性应激相关基因的表达赋予植物非生物胁迫耐受性。为了进一步了解OsSAP1介导的应激信号传导机制,利用酵母双杂交分析鉴定了与OsSAP1相互作用的蛋白。发现两种新蛋白,转氨酶(OsAMTR1)和一种SCP/TAPS或病程相关1类蛋白(OsSCP)与OsSAP1相互作用。编码OsAMTR1和OsSCP的基因具有应激响应性,在非生物胁迫处理后表达更高。通过在拟南芥中组成型过表达来分析OsAMTR1和OsSCP在胁迫下的作用,并评估转基因植物在盐胁迫和缺水胁迫下的反应。在胁迫条件下,过表达OsAMTR1和OsSCP的植物比野生型植物表现出更高的种子萌发率、根生长和鲜重。OsAMTR1和OsSCP的过表达影响了许多已知的应激响应基因的表达,而这些基因不受OsSAP1过表达的影响。此外,OsSCP和OsAMTR1的转录水平也不受OsSAP1过表达的影响。因此,得出结论,OsSAP1通过与这些蛋白相互作用来调节应激响应信号传导,而这些蛋白进一步调节下游应激响应基因的表达。