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FERONIA 是拟南芥下胚轴中油菜素内酯和乙烯反应的关键调节剂。

FERONIA is a key modulator of brassinosteroid and ethylene responsiveness in Arabidopsis hypocotyls.

机构信息

Department of Biochemistry, University of California-Riverside, Riverside, CA 92521, USA.

出版信息

Mol Plant. 2010 May;3(3):626-40. doi: 10.1093/mp/ssq015. Epub 2010 Apr 16.

Abstract

Ethylene signaling is a complex pathway that has been intensively analyzed partly due to its importance to the manifestation of horticultural phenomena, including fruit ripening and tissue senescence. In order to further our understanding of how this pathway is regulated, a screen for Arabidopsis mutants with increased ethylene response was conducted. From this, a mutant was identified as having a dark-grown hypocotyl that is indistinguishable from Col-0 wt in the presence of the ethylene perception inhibitor AgNO₃, yet has extreme responsiveness to even low levels of ethylene. Map-based cloning of the mutation revealed a T-DNA insertion in the coding sequence of the receptor-like kinase FERONIA, which is required for normal pollen tube reception and cell elongation in a currently unknown capacity. In contrast to a previous report, analysis of our feronia knockout mutant shows it also has altered responsiveness to brassinosteroids, with etiolated fer-2 seedlings being partially brassinosteroid insensitive with regard to promotion of hypocotyl elongation. Our results indicate that FERONIA-dependent brassinosteroid response serves to antagonize the effect of ethylene on hypocotyl growth of etiolated seedlings, with loss of proper brassinosteroid signaling disrupting this balance and leading to a greater impact of ethylene on hypocotyl shortening.

摘要

乙烯信号转导是一个复杂的途径,由于其对园艺现象(包括果实成熟和组织衰老)的表现具有重要意义,因此受到了深入分析。为了进一步了解该途径是如何被调控的,我们对拟南芥中乙烯反应增强的突变体进行了筛选。通过这种方法,我们鉴定出一个突变体,其在黑暗中生长的下胚轴在乙烯感受抑制剂 AgNO₃存在的情况下与 Col-0 wt 无法区分,但对低浓度的乙烯具有极高的反应性。该突变的图谱克隆揭示了一个 T-DNA 插入到受体样激酶 FERONIA 的编码序列中,FERONIA 在花粉管接受和细胞伸长方面发挥着未知的正常功能。与之前的报告相反,我们对 feronia 敲除突变体的分析表明,它对油菜素内酯的反应也发生了改变,与野生型相比,黑暗条件下生长的 fer-2 幼苗对油菜素内酯促进下胚轴伸长的反应部分不敏感。我们的结果表明,依赖 FERONIA 的油菜素内酯反应有助于拮抗乙烯对黑暗条件下幼苗下胚轴生长的影响,而油菜素内酯信号的缺失破坏了这种平衡,导致乙烯对下胚轴缩短的影响更大。

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