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一个卷叶同源基因控制番茄植株的营养生长和生殖发育。

A CURLY LEAF homologue controls both vegetative and reproductive development of tomato plants.

作者信息

Boureau L, How-Kit A, Teyssier E, Drevensek S, Rainieri M, Joubès J, Stammitti L, Pribat A, Bowler C, Hong Y, Gallusci P

机构信息

UMR BFP, University of Bordeaux, 71 Avenue E Bourlaux, 33882, Villenave d'Ornon, France.

Laboratory of Hematology, Centre Hospitalier Universitaire de Bordeaux - Hopital Haut Leveque, 5 Avenue Magellan, 33600, Pessac, France.

出版信息

Plant Mol Biol. 2016 Mar;90(4-5):485-501. doi: 10.1007/s11103-016-0436-0. Epub 2016 Feb 4.

Abstract

The Enhancer of Zeste Polycomb group proteins, which are encoded by a small gene family in Arabidopsis thaliana, participate to the control of plant development. In the tomato (Solanum lycopersicum), these proteins are encoded by three genes (SlEZ1, SlEZ2 and SlEZ3) that display specific expression profiles. Using a gene specific RNAi strategy, we demonstrate that repression of SlEZ2 correlates with a general reduction of H3K27me3 levels, indicating that SlEZ2 is part of an active PRC2 complex. Reduction of SlEZ2 gene expression impacts the vegetative development of tomato plants, consistent with SlEZ2 having retained at least some of the functions of the Arabidopsis CURLY LEAF (CLF) protein. Notwithstanding, we observed significant differences between transgenic SlEZ2 RNAi tomato plants and Arabidopsis clf mutants. First, we found that reduced SlEZ2 expression has dramatic effects on tomato fruit development and ripening, functions not described in Arabidopsis for the CLF protein. In addition, repression of SlEZ2 has no significant effect on the flowering time or the control of flower organ identity, in contrast to the Arabidopsis clf mutation. Taken together, our results are consistent with a diversification of the function of CLF orthologues in plants, and indicate that although partly conserved amongst plants, the function of EZ proteins need to be newly investigated for non-model plants because they might have been recruited to specific developmental processes.

摘要

拟南芥中的一个小基因家族编码的Zeste多梳蛋白增强子参与植物发育的调控。在番茄(Solanum lycopersicum)中,这些蛋白由三个基因(SlEZ1、SlEZ2和SlEZ3)编码,它们具有特定的表达模式。利用基因特异性RNAi策略,我们证明SlEZ2的抑制与H3K27me3水平的普遍降低相关,表明SlEZ2是活性PRC2复合体的一部分。SlEZ2基因表达的降低影响番茄植株的营养发育,这与SlEZ2保留了拟南芥卷曲叶(CLF)蛋白的至少一些功能一致。尽管如此,我们观察到转基因SlEZ2 RNAi番茄植株与拟南芥clf突变体之间存在显著差异。首先,我们发现SlEZ2表达的降低对番茄果实发育和成熟有显著影响,而CLF蛋白在拟南芥中并未描述这些功能。此外,与拟南芥clf突变相反,SlEZ2的抑制对开花时间或花器官特征的控制没有显著影响。综上所述,我们的结果与植物中CLF直系同源物功能的多样化一致,并表明尽管在植物中部分保守,但EZ蛋白的功能需要针对非模式植物重新进行研究,因为它们可能已被招募到特定的发育过程中。

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