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拟南芥amp1突变体中内源性细胞分裂素的增加与去黄化反应相关。

Increased endogenous cytokinin in the Arabidopsis amp1 mutant corresponds with de-etiolation responses.

作者信息

Chin-Atkins Amy N, Craig Stuart, Hocart Charles H, Dennis Elizabeth S, Chaudhury Abdul M

机构信息

CSIRO Division of Plant Industry, G.P.O. Box 1600, 2601, Canberra, ACT, Australia.

Cooperative Research Centre for Plant Science, Australian National University, G.P.O. Box 475, 2601, Canberra, ACT, Australia.

出版信息

Planta. 1996 Apr;198(4):549-556. doi: 10.1007/BF00262641. Epub 2017 Mar 18.

Abstract

The high-cytokinin Arabidopsis thaliana (L.) Heynh. mutant amp1 of has been further characterised. We extend our previous work on the cytokinin level in the amp1 mutant and show that it contains high levels of endogenous cytokinins in both light- and dark-grown plants, and that amp1 can be phenocopied in the dark by growing wild-type plants on exogenous cytokinin. Previously we showed that dark-grown amp1 plants display de-etiolated characteristics such as short unhooked hypocotyls, opened cotyledons and formation of leaves. We further show that amp1 mutants display de-etiolated plastid morphology and increased levels of transcripts of light-regulated genes, indicating that in this mutant light-mediated processes are partially induced in the dark. The amp1 mutant also shows a reduced level of expression of several light-regulated genes compared with the wild type when grown in light, and has an altered dark-adaptation response when compared with the wild type. These results demonstrate an association between high cytokinin levels and de-etiolation, and we infer that cytokinin itself or a cytokinin-mediated process is involved in regulation of etiolation. The map location, phenotypes and de-etiolation responses in the amp1 mutant are different from those of previously described de-etiolated mutants such as det1, det2, cop1 and cop9. We propose a model in which cytokinin acts as a component of the induction of photomorphogenic processes via a signal transduction pathway which is independent of light.

摘要

对高细胞分裂素拟南芥(L.)Heynh.突变体amp1进行了进一步表征。我们扩展了之前关于amp1突变体中细胞分裂素水平的研究工作,结果表明,在光照和黑暗条件下生长的植株中,该突变体均含有高水平的内源性细胞分裂素,并且通过在外源细胞分裂素上培养野生型植株,可在黑暗条件下模拟出amp1的表型。之前我们发现,在黑暗中生长的amp1植株表现出脱黄化特征,如短而未钩状的下胚轴、张开的子叶和叶片的形成。我们进一步发现,amp1突变体表现出脱黄化的质体形态,且光调节基因的转录本水平增加,这表明在该突变体中,光介导的过程在黑暗中被部分诱导。与野生型相比,amp1突变体在光照条件下生长时,一些光调节基因的表达水平也有所降低,并且与野生型相比,其暗适应反应也发生了改变。这些结果表明高细胞分裂素水平与脱黄化之间存在关联,我们推断细胞分裂素本身或细胞分裂素介导的过程参与了黄化作用的调控。amp1突变体的图谱定位、表型和脱黄化反应与之前描述的脱黄化突变体如det1、det2、cop1和cop9不同。我们提出了一个模型,其中细胞分裂素通过一条独立于光的信号转导途径,作为光形态建成过程诱导的一个组成部分发挥作用。

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