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首页> 外文期刊>Journal of Experimental Botany >Germination of photoblastic lettuce seeds is regulated via the control of endogenous physiologically active gibberellin content, rather than of gibberellin responsiveness
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Germination of photoblastic lettuce seeds is regulated via the control of endogenous physiologically active gibberellin content, rather than of gibberellin responsiveness

机译:通过控制内源性生理活性赤霉素含量而不是赤霉素响应性来调节光生莴苣种子的发芽。

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摘要

Phytochrome regulates lettuce (Lactuca sativa L. cv. Grand Rapids) seed germination via the control of the endogenous level of bioactive gibberellin (GA). In addition to the previously identified LsGA20ox1, LsGA20ox2, LsGA3ox1, LsGA3ox2, LsGA2ox1, and LsGA2ox2, five cDNAs were isolated from lettuce seeds: LsCPS, LsKS, LsKO1, LsKO2, and LsKAO. Using an Escherichia coli expression system and functional assays, it is shown that LsCPS and LsKS encode ent-copalyl diphosphate synthase and ent-kaurene synthase, respectively. Using a Pichia pastoris system, it was found that LsKO1 and LsKO2 encode ent-kaurene oxidases and LsKAO encodes ent-kaurenoic acid oxidase. A comprehensive expression analysis of GA metabolism genes using the quantitative reverse transcription polymerase chain reaction suggested that transcripts of LsGA3ox1 and LsGA3ox2, both of which encode GA 3-oxidase for GA activation, were primarily expressed in the hypocotyl end of lettuce seeds, were expressed at much lower levels than the other genes tested, and were potently up-regulated by phytochrome. Furthermore, LsDELLA1 and LsDELLA2 cDNAs that encode DELLA proteins, which act as negative regulators in the GA signalling pathway, were isolated from lettuce seeds. The transcript levels of these two genes were little affected by light. Lettuce seeds in which de novo GA biosynthesis was suppressed responded almost identically to exogenously applied GA, irrespective of the light conditions, suggesting that GA responsiveness is not significantly affected by light in lettuce seeds. It is proposed that lettuce seed germination is regulated mainly via the control of the endogenous content of bioactive GA, rather than the control of GA responsiveness.
机译:植物色素通过控制生物活性赤霉素(GA)的内源水平来调节生菜(大叶莴苣(Lactuca sativa L. cv。Grand Rapids))种子的萌发。除了先前确定的LsGA20ox1,LsGA20ox2,LsGA3ox1,LsGA3ox2,LsGA2ox1和LsGA2ox2,还从莴苣种子中分离了五个cDNA:LsCPS,LsKS,LsKO1,LsKO2和LsKAO。使用大肠埃希氏菌表达系统和功能分析,表明LsCPS和LsKS分别编码对苯二甲酰二磷酸合酶和对戊烯基合酶。使用巴斯德毕赤酵母系统,发现LsKO1和LsKO2编码对映体-月桂烯氧化酶,而LsKAO编码对映体-月桂烯酸氧化酶。使用定量逆转录聚合酶链反应对GA代谢基因进行的全面表达分析表明,LsGA3ox1和LsGA3ox2的转录本均在莴苣种子的胚轴末端表达,它们均编码用于GA活化的GA 3-氧化酶。与其他测试基因相比,其水平要低得多,并且可能被植物色素上调。此外,从莴苣种子中分离出编码DELLA蛋白的LsDELLA1和LsDELLA2 cDNA,它们在GA信号通路中起负调控作用。这两个基因的转录水平受光影响很小。不论光照条件如何,从头进行GA生物合成被抑制的莴苣种子与外源施用的GA几乎几乎相同,这表明莴苣种子中的GA响应能力不受光照的显着影响。有人提出,莴苣种子的发芽主要通过控制生物活性GA的内源性含量来调节,而不是通过GA的响应性来调节。

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