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Phytochrome-controlled Leaf Unrolling and Protein Synthesis

机译:植物色素控制的叶片展开和蛋白质合成

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摘要

In the primary leaf sections of etiolated wheat (Triticum aestivum L.) seedlings, red light-induced unrolling is accompanied by an increase in incorporation of 14C-leucine into protein. By differential centrifugation, the unrolling response was found to be closely related to incorporation of the amino acid into the supernatant fraction (105,000g). Cycloheximide and chloramphenicol inhibit both leaf unrolling and synthesis of the supernatant protein, although chloramphenicol exerts its effect more strongly on the fraction which presumably contains the plastids. In a barley (Hordeum vulgare L.) albino mutant completely devoid of ribulose diphosphate carboxylase activity, only incorporation of 14C-leucine into the supernatant fraction is substantially promoted by red light. This mutant exhibits the photoresponse of leaf unrolling.Both unrolling and increased incorporation of 14C-leucine induced by red light are prevented by indoleacetic and abscisic acids. Kinetin promotes leucine incorporation into protein and can induce unrolling in complete darkness. Protein synthesis is still promoted by red light when unrolling is almost completely inhibited by an osmoticum. It is suggested that the action of red light on leaf unrolling is dependent on synthesis of a soluble protein in the tissue.
机译:在黄化小麦(Triticum aestivum L.)幼苗的初生叶切片中,红光诱导的展开作用伴随着 14 C-亮氨酸掺入蛋白质的增加。通过差速离心,发现展开反应与将氨基酸掺入上清液级分(105,000g)中密切相关。环己酰亚胺和氯霉素同时抑制叶片展开和上清蛋白的合成,尽管氯霉素对可能含有质体的部分发挥更强的作用。在完全没有核糖二磷酸羧化酶活性的大麦(大麦)中,白光突变体仅促进了 14 亮氨酸的掺入。该突变体表现出叶片展开的光响应。吲哚乙酸和脱落酸均能防止展开和红光诱导的 14 C-亮氨酸的掺入。激动素促进亮氨酸掺入蛋白质,并可以在完全黑暗的环境中诱导展开。当展开几乎被渗透压完全抑制时,红光仍可促进蛋白质合成。建议红光对叶片展开的作用取决于组织中可溶性蛋白质的合成。

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