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一个类似 PI 基因的 MADS 框基因的错误表达阻止了葡萄果实的发育。

Mis-expression of a PISTILLATA-like MADS box gene prevents fruit development in grapevine.

机构信息

Instituto de Ciencias de la Vid y del Vino (Consejo Superior de Investigaciones Cientificas, Universitad de la Rioja, Gobierno de La Rioja), Calle Madre de Dios 51, 26006, Logroño, Spain.

出版信息

Plant J. 2013 Mar;73(6):918-28. doi: 10.1111/tpj.12083. Epub 2013 Jan 22.

Abstract

The FLESHLESS BERRY (Flb) somatic variant identified in the grapevine cultivar Ugni Blanc develops grape berries without flesh, suggesting a role for the altered gene in differentiation of flesh cells. Here we describe identification of the molecular defect responsible for this phenotype. Using a combination of genetic and transcriptomic approaches, we detected the insertion of a miniature inverted-repeat transposable element in the promoter region of the PISTILLATA-like (VvPI) gene, the grapevine homologue of Arabidopsis PISTILLATA. The transposon insertion causes specific ectopic expression of the corresponding VvPI allele during early fruit development, causing expression of genes specific for petal and stamen development within the fruit. A causal relationship between the insertion and the phenotype was demonstrated by phenotypic and molecular analyses of somatic revertants showing that ectopic expression and mutant phenotype were always linked to the presence of the transposon insertion. The various phenotypic effects of the flb mutation on ovary morphology, fruit set and fruit development, depending on the cell lineage affected, are presented for each phenotype, offering new insights into floral and fleshly fruit development. The results highlight the importance of VvPI repression after fertilization to achieve normal fleshy fruit development, and the complex genetic, genomic and cellular interactions required for the flower to fruit transition in grapevine.

摘要

无核白葡萄品种中发现的无核浆果(Flb)体细胞变异体导致葡萄浆果无果肉,表明该基因的改变在果肉细胞分化中起作用。本文描述了导致这一表型的分子缺陷的鉴定。我们采用遗传和转录组学相结合的方法,在拟南芥 PISTILLATA 的葡萄同源基因 PISTILLATA-like(VvPI)基因的启动子区域检测到一个微型反向重复转座元件的插入。该转座子的插入导致了 VvPI 等位基因在早期果实发育过程中的特异性异位表达,导致了果实中花瓣和雄蕊发育特异性基因的表达。通过对表现出特定表型和分子回复突变体的表型和分子分析,证明了插入与表型之间的因果关系,表明异位表达和突变表型总是与转座子插入的存在相关。flb 突变对子房形态、结实率和果实发育的各种表型效应取决于受影响的细胞谱系,每个表型都提供了对花和肉质果实发育的新见解。结果强调了 VvPI 在受精后抑制以实现正常肉质果实发育的重要性,以及葡萄从花到果转变所需的复杂遗传、基因组和细胞相互作用。

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