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水稻磷脂酶D家族的全基因组分析及PLDβ1在种子萌发中的功能鉴定

Genome-wide analysis of the phospholipase D family in Oryza sativa and functional characterization of PLD beta 1 in seed germination.

作者信息

Li Gang, Lin Fang, Xue Hong-Wei

机构信息

National Key Laboratory of Plant Molecular Genetics, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai 200032, China.

出版信息

Cell Res. 2007 Oct;17(10):881-94. doi: 10.1038/cr.2007.77.

Abstract

Phospholipase D (PLD) plays a critical role in plant growth and development, as well as in hormone and stress responses. PLD encoding genes constitute a large gene family that are present in higher plants. There are 12 members of the PLD family in Arabidopsis thaliana and several of them have been functionally characterized; however, the members of the PLD family in Oryza sativa remain to be fully described. Through genome-wide analysis, 17 PLD members found in different chromosomes have been identified in rice. Protein domain structural analysis reveals a novel subfamily, besides the C2-PLDs and PXPH-PLDs, that is present in rice - the SP-PLD. SP-PLD harbors a signal peptide instead of the C2 or PXPH domains at the N-terminus. Expression pattern analysis indicates that most PLD-encoding genes are differentially expressed in various tissues, or are induced by hormones or stress conditions, suggesting the involvement of PLD in multiple developmental processes. Transgenic studies have shown that the suppressed expression of rice PLD beta 1 results in reduced sensitivity to exogenous ABA during seed germination. Further analysis of the expression of ABA signaling-related genes has revealed that PLD beta 1 stimulates ABA signaling by activating SAPK, thus repressing GAmyb expression and inhibiting seed germination.

摘要

磷脂酶D(PLD)在植物生长发育以及激素和应激反应中发挥着关键作用。PLD编码基因构成了一个存在于高等植物中的大基因家族。拟南芥中有12个PLD家族成员,其中一些成员的功能已得到表征;然而,水稻中PLD家族的成员仍有待全面描述。通过全基因组分析,在水稻中已鉴定出17个位于不同染色体上的PLD成员。蛋白质结构域分析揭示了水稻中除C2-PLDs和PXPH-PLDs之外的一个新亚家族——SP-PLD。SP-PLD在N端含有一个信号肽,而非C2或PXPH结构域。表达模式分析表明,大多数PLD编码基因在不同组织中差异表达,或受激素或应激条件诱导,这表明PLD参与了多个发育过程。转基因研究表明,水稻PLDβ1的表达受到抑制会导致种子萌发期间对外源脱落酸(ABA)的敏感性降低。对ABA信号相关基因表达的进一步分析表明,PLDβ1通过激活SAPK刺激ABA信号,从而抑制GAmyb表达并抑制种子萌发。

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