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Phytochrome Regulates Gibberellin Biosynthesis during Germination of Photoblastic Lettuce Seeds

机译:植物色素调节发芽过程中赤霉素的生物合成 光生莴苣种子

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摘要

Germination of lettuce (Lactuca sativa L.) seed is regulated by phytochrome. The requirement for red light is circumvented by the application of gibberellin (GA). We have previously shown that the endogenous content of GA1, the main bioactive GA in lettuce seeds, increases after red-light treatment. To clarify which step of GA1 synthesis is regulated by phytochrome, cDNAs encoding GA 20-oxidases (Ls20ox1 and Ls20ox2, for L. sativa GA 20-oxidase) and 3β-hydroxylases (Ls3h1 and Ls3h2 for L. sativa GA 3β-hydroxylase) were isolated from lettuce seeds by reverse-transcription polymerase chain reaction. Functional analysis of recombinant proteins expressed in Escherichia coli confirmed that the Ls20ox and Ls3h encode GA 20-oxidases and 3β-hydroxylases, respectively. Northern-blot analysis showed that Ls3h1 expression was dramatically induced by red-light treatment within 2 h, and that this effect was canceled by a subsequent far-red-light treatment. Ls3h2 mRNA was not detected in seeds that had been allowed to imbibe under any light conditions. Expression of the two Ls20ox genes was induced by initial imbibition alone in the dark. The level of Ls20ox2 mRNA decreased after the red-light treatment, whereas that of Ls20ox1 was unaffected by light. These results suggest that red light promotes GA1 synthesis in lettuce seeds by inducing Ls3h1 expression via phytochrome action.
机译:生菜(Lactuca sativa L.)种子的萌发受植物色素的调节。赤霉素(GA)的使用可以避免产生红光。先前我们已经表明,红光处理后,莴苣种子中主要的生物活性GA GA1的内源含量增加。为了阐明GA1合成的哪个步骤受植物色素的调节,分别对编码GA 20-氧化酶(对于L. sativa GA 20-氧化酶为Ls20ox1和Ls20ox2)和3β-羟化酶(对于L. sativa GA3β-羟化酶为Ls3h1和Ls3h2)进行编码的cDNA。通过反转录聚合酶链反应从生菜种子中分离得到。对在大肠杆菌中表达的重组蛋白进行功能分析,证实Ls20ox和Ls3h分别编码GA 20-氧化酶和3β-羟化酶。 Northern印迹分析表明,红光处理在2 h内显着诱导了Ls3h1表达,并且这种作用 被随后的远光治疗取消。 Ls3h2 mRNA原为 在允许在任何光线下吸收的种子中未检测到 条件。两个Ls20ox基因的表达是由最初的诱导 吸血独自在黑暗中。 Ls20ox2 mRNA的水平下降后 红光治疗,而Ls20ox1则不受 光。这些结果表明红光促进了GA1 通过植物色素诱导Ls3h1表达在莴苣种子中合成 行动。

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