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水稻幼苗的光形态建成:一种在光敏色素介导的胚芽鞘生长抑制中受损的突变体。

Photomorphogenesis of rice seedlings: a mutant impaired in phytochrome-mediated inhibition of coleoptile growth.

作者信息

Biswas Kamal K, Neumann Ralf, Haga Ken, Yatoh Osamu, Iino Moritoshi

机构信息

Botanical Gardens, Research School of Science, Osaka City University, Kisaichi, Katano-shi, Osaka, 576-0004 Japan.

出版信息

Plant Cell Physiol. 2003 Mar;44(3):242-54. doi: 10.1093/pcp/pcg040.

Abstract

A mutant showing a long coleoptile phenotype under white light was isolated from gamma-ray-mutagenized rice (cv. Nihonmasari). This mutant, named cpm1 (coleoptile photomorphogenesis 1), has been found to be impaired in phytochrome-mediated inhibition of coleoptile growth. Another outstanding feature of the mutant is impaired anthesis. Under red light (R), cpm1 coleoptiles elongate at a higher rate than wild-type (WT) coleoptiles, owing to substantially reduced responsiveness to R. This phenotype occurs in an age-dependent manner, and cpm1 coleoptiles become responsive to R as they elongate. The impairment was found in both very-low-fluence and low-fluence responses. Mutant coleoptiles also elongate longer than WT coleoptiles in darkness, but in this case the long coleoptile results from an extended elongation period. The cpm1 mutation does not affect the following phytochrome responses: the growth stimulation in submerged coleoptiles (uncovered in this study), potentiation of greening, and down-regulation of PHYA transcription. The cpm1 mutation does not significantly affect the level of spectroscopically detectable phytochrome and the transcription levels of three phytochrome genes (PHYA-C). It is concluded that the CPM1 gene is involved in the phytochrome signal transduction that specifically leads to growth inhibition. Some aspects of rice seedling photomorphogenesis are discussed in relation to the results obtained.

摘要

从经γ射线诱变的水稻(品种:日本晴)中分离出一个在白光下表现出长胚芽鞘表型的突变体。这个名为cpm1(胚芽鞘光形态建成1)的突变体,已被发现其在光敏色素介导的胚芽鞘生长抑制方面存在缺陷。该突变体的另一个显著特征是花期受损。在红光(R)下,cpm1胚芽鞘的伸长速率高于野生型(WT)胚芽鞘,这是由于对R的响应大幅降低所致。这种表型呈现出年龄依赖性,随着cpm1胚芽鞘的伸长,它们对R变得有响应。在极低光通量和低光通量响应中均发现了这种缺陷。突变体胚芽鞘在黑暗中也比WT胚芽鞘伸长更长,但在这种情况下,长胚芽鞘是由于伸长时期延长所致。cpm1突变不影响以下光敏色素反应:淹没胚芽鞘中的生长刺激(本研究未涉及)、绿化增强以及PHYA转录的下调。cpm1突变对光谱可检测的光敏色素水平和三个光敏色素基因(PHYA - C)的转录水平没有显著影响。得出的结论是,CPM1基因参与了特异性导致生长抑制的光敏色素信号转导。结合所获得的结果,对水稻幼苗光形态建成的一些方面进行了讨论。

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