首页> 外文期刊>Journal of Experimental Botany >Ethylene regulation of fruit softening and cell wall disassembly in Charentais melon.
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Ethylene regulation of fruit softening and cell wall disassembly in Charentais melon.

机译:乙烯对夏洛特甜瓜果实软化和细胞壁拆卸的调节作用。

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Cell wall disassembly in ripening fruit is highly complex, involving the dismantling of multiple polysaccharide networks by diverse families of wall-modifying proteins. While it has been reported in several species that multiple members of each such family are expressed in the same fruit tissue, it is not clear whether this reflects functional redundancy, with protein isozymes from a single enzyme class performing similar roles and contributing equally to wall degradation, or whether they have discrete functions, with some isoforms playing a predominant role. Experiments reported here sought to distinguish between cell wall-related processes in ripening melon that were softening-associated and softening-independent. Cell wall polysaccharide depolymerization and the expression of wall metabolism-related genes were examined in transgenic melon (Cucumis melo var. cantalupensis Naud.) fruit with suppressed expression of the 1-aminocyclopropane-1-carboxylate oxidase (ACO) gene and fruits treated with ethylene and 1-methylcyclopropene (1-MCP). Softening was completely inhibited in the transgenic fruit but was restored by treatment with exogenous ethylene. Moreover, post-harvest application of 1-MCP after the onset of ripening completely halted subsequent softening, suggesting that melon fruit softening is ethylene-dependent. Size exclusion chromatography of cell wall polysaccharides, from the transgenic fruits, with or without exogenous ethylene, indicated that the depolymerization of both pectins and xyloglucans was also ethylene dependent. However, northern analyses of a diverse range of cell wall-related genes, including those for polygalacturonases, xyloglucan endotransglucosylase/hydrolases, expansin, and beta -galactosidases, identified specific genes within single families that could be categorized as ethylene-dependent, ethylene-independent, or partially ethylene-dependent. These results support the hypothesis that while individual cell wall-modifying proteins from each family contribute to cell wall disassembly that accompanies fruit softening, other closely related family members are regulated in an ethylene-independent manner and apparently do not directly participate in fruit softening..
机译:成熟果实中的细胞壁分解非常复杂,涉及通过壁修饰蛋白的不同家族来分解多个多糖网络。尽管已经在多个物种中报道了每个这样的家族的多个成员在同一果实组织中表达,但尚不清楚这是否反映了功能冗余,来自单一酶类别的蛋白质同工酶起着相似的作用,并平等地促进了壁的降解。 ,或者它们是否具有离散功能,其中某些异构体起主要作用。此处报道的实验试图区分成熟的与软化相关和独立于软化的甜瓜的细胞壁相关过程。研究了1-氨基环丙烷-1-羧酸氧化酶(ACO)基因表达被抑制的转基因瓜果和乙烯处理过的瓜果的细胞壁多糖解聚和壁代谢相关基因的表达和1-甲基环丙烯(1-MCP)。转基因果实中的软化被完全抑制,但通过外源乙烯处理得以恢复。而且,在成熟开始后1-MCP的收获后施用完全停止了随后的软化,这表明甜瓜果实的软化取决于乙烯。带有或不带有外源乙烯的转基因果实细胞壁多糖的尺寸排阻色谱分析表明,果胶和木葡聚糖的解聚也是乙烯依赖性的。但是,对多种细胞壁相关基因(包括多半乳糖醛酸酶,木葡聚糖内切葡糖苷酶/水解酶,expansin和β-半乳糖苷酶的基因)进行的北部分析确定了单个家族中的特定基因,这些基因可以归类为乙烯依赖性,乙烯依赖性或部分依赖乙烯。这些结果支持以下假设:尽管每个家族的单个细胞壁修饰蛋白都导致伴随水果软化的细胞壁拆卸,但其他密切相关的家族成员以乙烯独立的方式受到调节,并且显然不直接参与水果软化。

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