An Arabidopsis senescence-associated protein SAG29 regulates cell viability under high salinity

活力测定 拟南芥 细胞生物学 渗透性休克 衰老 生物 细胞外 细胞 突变体 盐度 细胞内 植物细胞 脱落酸 生物化学 基因 生态学
作者
Pil Joon Seo,Jung Min Park,Seok Ki Kang,Sang‐Gyu Kim,Chung‐Mo Park
出处
期刊:Planta [Springer Science+Business Media]
卷期号:233 (1): 189-200 被引量:198
标识
DOI:10.1007/s00425-010-1293-8
摘要

The plasma membrane is an important cellular organ that perceives incoming developmental and environmental signals and integrates these signals into cellular regulatory mechanisms. It also acts as a barrier against unfavorable extracellular factors to maintain cell viability. Despite its importance for cell viability, molecular components determining cell viability and underlying mechanisms are largely unknown. Here, we show that a plasma membrane-localized MtN3 protein SAG29 regulates cell viability under high salinity in Arabidopsis. The SAG29 gene is expressed primarily in senescing plant tissues. It is induced by osmotic stresses via an abscisic acid-dependent pathway. Whereas the SAG29-overexpressing transgenic plants (35S:SAG29) exhibited an accelerated senescence and were hypersensitive to salt stress, the SAG29-deficient mutants were less sensitive to high salinity. Consistent with this, the 35S:SAG29 transgenic plants showed reduced cell viability in the roots under normal growth condition. In contrast, cell viability in the SAG29-deficient mutant roots was indistinguishable from that in the roots of control plants. Notably, the mutant roots exhibited enhanced cell viability under high salinity. Our observations indicate that the senescence-associated SAG29 protein is associated with cell viability under high salinity and other osmotic stress conditions. We propose that the SAG29 protein may serve as a molecular link that integrates environmental stress responses into senescing process.
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