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在茄科植物进化过程中沉默的一个基因(Cwp1)被鉴定出来,该基因在番茄果实中表达时会导致角质层微裂和脱水。

The identification of a gene (Cwp1), silenced during Solanum evolution, which causes cuticle microfissuring and dehydration when expressed in tomato fruit.

作者信息

Hovav Ran, Chehanovsky Noam, Moy Michal, Jetter Reinhard, Schaffer Arthur A

机构信息

Institute of Field and Garden Crops, ARO, The Volcani Center, Bet Dagan 50250, Israel.

出版信息

Plant J. 2007 Nov;52(4):627-39. doi: 10.1111/j.1365-313X.2007.03265.x. Epub 2007 Sep 18.

Abstract

One of the most intriguing phenomena of fleshy fruit is the ability to maintain high water content at maturity, even following harvest. This is accomplished by a fruit cuticle that is highly impermeable to water diffusion. In this paper, we report on a novel genotype of tomato, developed via introgression from the wild species Solanum habrochaites, which is characterized by microfissuring of the fruit cuticle and dehydration of the mature fruit. The microfissure/dehydration phenotype is inherited as a single gene, termed Cwp1 (cuticular water permeability). The gene was fine mapped, and its identity was determined by map-based cloning and differential expression analysis in near-isogenic lines. Causality of the Cwp1 gene was shown by the heterologous transgenic expression of the gene in the cultivated tomato, which caused a microfissured fruit cuticle leading to dehydrated fruit. Cwp1 encodes for a protein of unidentified function in the DUF833 domain family. The gene is expressed in the fruit epidermis of the dehydrating genotype harbouring the wild-species introgression, but not in the cultivated tomato. It is expressed only in the primitive green-fruited wild tomato species, but is not expressed in the cultivated Solanum lycopersicum and the closely related Solanum cheesmaniae and Solanum pimpinellifolium, indicating a pre-adaptive role for Cwp1 silencing in the evolution and domestication of the cultivated tomato.

摘要

肉质果实最引人入胜的现象之一是即使在收获后,成熟时仍能保持高含水量。这是通过对水分扩散高度不可渗透的果实角质层来实现的。在本文中,我们报道了一种通过从野生种多毛番茄渗入培育出的新型番茄基因型,其特征是果实角质层出现微裂缝以及成熟果实脱水。微裂缝/脱水表型作为一个单基因遗传,称为Cwp1(角质层透水性)。该基因被精细定位,并通过基于图谱的克隆和近等基因系中的差异表达分析确定了其身份。通过该基因在栽培番茄中的异源转基因表达证明了Cwp1基因的因果关系,这导致果实角质层出现微裂缝,进而导致果实脱水。Cwp1编码DUF833结构域家族中一个功能未知的蛋白质。该基因在含有野生种渗入的脱水基因型的果实表皮中表达,但在栽培番茄中不表达。它仅在原始的绿色果实野生番茄物种中表达,而在栽培的番茄、密切相关的契斯曼尼番茄和醋栗番茄中不表达,这表明Cwp1沉默在栽培番茄的进化和驯化中具有预适应作用。

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