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植物孢子体自交不亲和信号转导功能分子研究进展
引用本文:赵永斌,朱利泉,王小佳.植物孢子体自交不亲和信号转导功能分子研究进展[J].生物技术通讯,2004,15(2):176-178.
作者姓名:赵永斌  朱利泉  王小佳
作者单位:西南农业大学,生理生化实验室,重庆,400716
基金项目:重庆市科委应用基础资助项目
摘    要:孢子体自交不亲和(SSI)是许多植物采取的一种抵制近亲繁殖的重要措施,受S位点复等位基因控制。近年来,参与其信号转导的许多功能分子及它们的编码基因被分离并得到了充分研究:当自花授粉时,SPlI/SCR与SRK特异识别,造成后的Ser/Thr激酶的磷酸化,引发了一系列由SLG、ARC1及水孔蛋白等因子参与的SSI信号转导途径,最终产生自交不亲和的结果。

关 键 词:植物  孢子体自交不亲和  SSI  近亲繁殖  信号转导  编码基因
文章编号:1009-0002(2004)02-0176-03
修稿时间:2003年9月24日

The functional molecules of SSI signal transduction in plants
ZHAO Yong-bin,ZHU Li-quan,WANG Xiao-jiaPhysiology and Biochemistry Lab of South West Agricultural University,ChongQing ,China.The functional molecules of SSI signal transduction in plants[J].Letters in Biotechnology,2004,15(2):176-178.
Authors:ZHAO Yong-bin  ZHU Li-quan  WANG Xiao-jiaPhysiology and Biochemistry Lab of South West Agricultural University  ChongQing  China
Institution:ZHAO Yong-bin,ZHU Li-quan,WANG Xiao-jiaPhysiology and Biochemistry Lab of South West Agricultural University,ChongQing 400716,China
Abstract:Sporophytic self-incompatibility(SSI) controlled sporophytically by the multiallelic S-locus is one of several mechanisms that have evolved to prevent inbreeding in plants, in Brassica, recently. Many functional molecules mediating expression of SSI reaction and their genes have been isolated and studied, which has unveiled a way of signal transduction of SSI?: SP11(S-locus protein 11) (also known as S-locus cysteine-rich protein; SCR) functions as the sole ligand for its cognate SRK (S-receptor kinase) receptor, a membrane-spanning serine/threonine kinase, which determines the S-haplotype specificity of the stigma. Their interaction induces the autophosphorylation of SRK, which is expected to trigger the signalling cascade that results in the rejection of self-pollen mediated by other factors like S-locus glycoprotein, arm repeat-containing protein 1 and aquaporin.
Keywords:sporophytic self-incompatibility  signal transduction  functional molecules  
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