首页> 外文期刊>International Journal of Molecular Sciences >Silencing of the CaCP Gene Delays Salt- and Osmotic-Induced Leaf Senescence in Capsicum annuum L.
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Silencing of the CaCP Gene Delays Salt- and Osmotic-Induced Leaf Senescence in Capsicum annuum L.

机译:CaCP基因的沉默延迟了辣椒中盐和渗透诱导的叶片衰老。

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Cysteine proteinases have been known to participate in developmental processes and in response to stress in plants. Our present research reported that a novel CP gene, CaCP, was involved in leaf senescence in pepper (Capsicum annuum L.). The full-length CaCP cDNA is comprised of 1316 bp, contains 1044 nucleotides in open reading frame (ORF), and encodes a 347 amino acid protein. The deduced protein belongs to the papain-like cysteine proteases (CPs) superfamily, containing a highly conserved ERFNIN motif, a GCNGG motif and a conserved catalytic triad. This protein localized to the vacuole of plant cells. Real-time quantitative PCR analysis revealed that the expression level of CaCP gene was dramatically higher in leaves and flowers than that in roots, stems and fruits. Moreover, CaCP transcripts were induced upon during leaf senescence. CaCP expression was upregulated by plant hormones, especially salicylic acid. CaCP was also significantly induced by abiotic and biotic stress treatments, including high salinity, mannitol and Phytophthora capsici. Loss of function of CaCP using the virus-induced gene-silencing technique in pepper plants led to enhanced tolerance to salt- and osmotic-induced stress. Taken together, these results suggest that CaCP is a senescence-associated gene, which is involved in developmental senescence and regulates salt- and osmotic-induced leaf senescence in pepper.
机译:已知半胱氨酸蛋白酶参与植物的发育过程和响应胁迫。我们目前的研究报道了一个新的CP基因CaCP参与了辣椒(Capsicum annuum L.)的叶片衰老。全长CaCP cDNA由1316 bp组成,在开放阅读框(ORF)中包含1044个核苷酸,并编码347个氨基酸。推导的蛋白质属于木瓜蛋白酶样半胱氨酸蛋白酶(CPs)超家族,包含高度保守的ERFNIN基序,GCNGG基序和保守的催化三联体。该蛋白质定位于植物细胞的液泡。实时定量PCR分析表明,CaCP基因在叶和花中的表达水平显着高于根,茎和果实中的表达。此外,在叶片衰老过程中诱导了CaCP转录本。 CaCP表达被植物激素,尤其是水杨酸上调。 CaCP还可以通过非生物和生物胁迫处理(包括高盐度,甘露醇和辣椒疫霉)得到明显诱导。使用病毒诱导的基因沉默技术使辣椒植物中的CaCP功能丧失,导致对盐和渗透压胁迫的耐受性增强。综上所述,这些结果表明CaCP是与衰老相关的基因,其参与发育衰老并调节盐和渗透诱导的辣椒叶片衰老。

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