首页> 外文期刊>Journal of Plant Physiology >Cloning and characterization of a sweet potato calmodulin SPCAM that participates in ethephon-mediated leaf senescence, H2O2 elevation and senescence-associated gene expression.
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Cloning and characterization of a sweet potato calmodulin SPCAM that participates in ethephon-mediated leaf senescence, H2O2 elevation and senescence-associated gene expression.

机译:番薯钙调蛋白 SPCAM 的克隆与表征,其参与乙烯利介导的叶片衰老,H 2 O 2 升高和衰老相关基因的表达。

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摘要

In this report a full-length cDNA, SPCAM, was isolated from ethephon-treated mature leaves of sweet potato. SPCAM contained 450 nucleotides (149 amino acids) in its open reading frame, and exhibited high amino acid sequence identities (ca. 76-100%) with several plant calmodulins, including Arabidopsis, carrot, ghost needle weed, pea, potato, soybean, sweet chestnut, and tobacco. Sweet potato SPCAM also contained four putative conserved calmodulin EF-hand motifs, which responded for Ca2+ binding and cellular signalling. Phylogenetic tree analysis showed that sweet potato SPCAM exhibited closely-related association with Arabidopsis AtCAM7, which functioned as a transcriptional regulator. Reverse transcription-polymerase chain reaction (RT-PCR) analysis showed that SPCAM gene expression was not significantly increased from L1 immature leaf to L3 mature leaf, however, was remarkably enhanced in L4 early senescent leaf, and then decreased in L5 late senescent leaf. In dark- and ethephon-treated mature leaves, SPCAM expression was significantly increased from 6 to 48 h, then decreased gradually until 72 h after treatment. Ethephon-mediated leaf senescence, H2O2 elevation, and senescence-associated gene expression, however, was remarkably inhibited by chlorpromazine, a calmodulin inhibitor. Exogenous application of purified calmodulin SPCAM fusion protein reversed the chlorpromazine repression of ethephon-mediated leaf senescence, H2O2 elevation and senescence-associated gene expression. Based on these data we conclude that sweet potato SPCAM is an ethephon-inducible calmodulin and its expression is enhanced in natural and induced senescent leaves. Calmodulin SPCAM may play a physiological role in ethephon-mediated leaf senescence, H2O2 elevation and senescence-associated gene expression in sweet potato leaves.
机译:在这份报告中,从甘薯的乙烯利处理的成熟叶片中分离出了全长cDNA SPCAM 。 SPCAM 在其开放阅读框中包含450个核苷酸(149个氨基酸),并与几种植物钙调蛋白(包括拟南芥,胡萝卜,鬼针杂草)表现出较高的氨基酸序列同一性(约76-100%)。 ,豌豆,马铃薯,大豆,欧洲栗木和烟草。甘薯SPCAM还包含四个假定的保守钙调蛋白EF-手基序,它们响应Ca 2 + 结合和细胞信号传导。系统进化树分析表明,甘薯SPCAM与拟南芥AtCAM7密切相关,后者起转录调节作用。逆转录-聚合酶链反应(RT-PCR)分析显示,SPICAM基因从L1未成熟叶片到L3成熟叶片的表达没有明显增加,但在L4早衰叶片中显着增强,然后L5衰老后期叶片中减少。在深色和乙烯利处理的成熟叶片中,SPCAM的表达从6到48小时显着增加,然后逐渐降低,直到处理后72小时。钙调素抑制剂氯丙嗪显着抑制了乙烯利介导的叶片衰老,H 2 O 2 升高以及衰老相关基因的表达。纯化的钙调蛋白SPCAM融合蛋白的外源应用逆转了氯丙嗪抑制乙烯利介导的叶片衰老,H 2 O 2 升高和衰老相关基因的表达。根据这些数据,我们得出结论,甘薯 SPCAM 是乙烯利可诱导的钙调蛋白,其在天然和诱导衰老叶片中的表达均得到增强。钙调蛋白 SPCAM 可能在番薯叶中乙烯利介导的叶片衰老,H 2 O 2 升高和衰老相关基因表达中发挥生理作用。

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