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四种猕猴桃 SVP-like MADS -box 基因的保守性和分化表明其在猕猴桃芽休眠和开花中具有不同的作用。

Conservation and divergence of four kiwifruit SVP-like MADS-box genes suggest distinct roles in kiwifruit bud dormancy and flowering.

机构信息

The New Zealand Institute for Plant and Food Research Limited, Mt Albert, Private Bag 92169, Auckland Mail Centre, Auckland 1142, New Zealand.

出版信息

J Exp Bot. 2012 Jan;63(2):797-807. doi: 10.1093/jxb/err304. Epub 2011 Nov 9.

Abstract

MADS-box genes similar to Arabidopsis SHORT VEGETATIVE PHASE (SVP) have been implicated in the regulation of flowering in annual species and bud dormancy in perennial species. Kiwifruit (Actinidia spp.) are woody perennial vines where bud dormancy and out-growth affect flower development. To determine the role of SVP-like genes in dormancy and flowering of kiwifruit, four MADS-box genes with homology to Arabidopsis SVP, designated SVP1, SVP2, SVP3, and SVP4, have been identified and analysed in kiwifruit and functionally characterized in Arabidopsis. Phylogenetic analysis indicate that these genes fall into different sub-clades within the SVP-like gene group, suggesting distinct functions. Expression was generally confined to vegetative tissues, and increased transcript accumulation in shoot buds over the winter period suggests a role for these genes in bud dormancy. Down-regulation before flower differentiation indicate possible roles as floral repressors. Over-expression and complementation studies in Arabidopsis resulted in a range of floral reversion phenotypes arising from interactions with Arabidopsis MADS-box proteins, but only SVP1 and SVP3 were able to complement the svp mutant. These results suggest that the kiwifruit SVP-like genes may have distinct roles during bud dormancy and flowering.

摘要

MADS-box 基因类似于拟南芥短日植物(SVP),已被认为在调节一年生植物的开花和多年生植物的芽休眠中起作用。猕猴桃(Actinidia spp.)是木本多年生藤本植物,芽休眠和生长影响花的发育。为了确定 SVP 样基因在猕猴桃休眠和开花中的作用,已经鉴定并分析了与拟南芥 SVP 同源的四个 MADS-box 基因,命名为 SVP1、SVP2、SVP3 和 SVP4,并在拟南芥中进行了功能表征。系统发育分析表明,这些基因属于 SVP 样基因家族的不同亚群,表明它们具有不同的功能。表达通常局限于营养组织,冬季芽中转录物积累增加表明这些基因在芽休眠中起作用。在花分化前的下调表明它们可能作为花的阻遏物发挥作用。在拟南芥中的过表达和互补研究导致了一系列由于与拟南芥 MADS-box 蛋白相互作用而产生的花反转表型,但只有 SVP1 和 SVP3 能够互补 svp 突变体。这些结果表明,猕猴桃 SVP 样基因在芽休眠和开花过程中可能具有不同的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cf2/3254681/cc46de3231ba/jexboterr304f01_ht.jpg

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