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首页> 外文期刊>Acta Horticulturae >Heterologous comparative genomics to identify candidate genes impacting fruit quality in apple ( Malus x domestica Borkh.).
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Heterologous comparative genomics to identify candidate genes impacting fruit quality in apple ( Malus x domestica Borkh.).

机译:异源比较基因组学,以鉴定影响苹果果实品质的候选基因( x domestica Borkh。)。

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摘要

Fruits are an important source of healthy compounds in the human diet, such as fibers, organic acids, vitamins, and antioxidants. All these metabolites are developed during fruit ripening, a complex process characterized by dramatic physiological changes. Fruit ripening is normally distinguished as climacteric or non-climacteric, depending on the direct effect of the hormone ethylene in the control of these processes, especially on fruit softening. Variation in fruit firmness, one of the most evident phenomena, strongly influences the general fruit quality, limiting the shelf life due to a minor resistance to post-harvest diseases. To investigate the transcription dynamics over the apple ripening, two wide genomic cDNA microarrays were used: an apple specific homologous system, and a tomato heterologous platform. In this study, we assessed the potential of the heterologous array to analyze the apple ripening physiology. The normal ripening transcriptome was compared with the distorted one obtained with 1-MCP treatment (an ethylene competitor), allowing for the identification of a comprehensive gene set, developmental and ethylene dependent.
机译:水果是人类饮食中健康化合物的重要来源,例如纤维,有机酸,维生素和抗氧化剂。所有这些代谢物都是在果实成熟过程中发育的,这是一个复杂的过程,其特征是生理学发生了巨大变化。果实成熟通常区分为更年期或非更年期,这取决于激素乙烯在控制这些过程中的直接作用,尤其是对果实软化的影响。水果硬度的变化(最明显的现象之一)强烈影响总体水果质量,由于对收获后疾病的抵抗力较小,因此限制了保质期。为了研究苹果成熟过程中的转录动力学,使用了两个宽基因组cDNA微阵列:一个苹果特异的同源系统和一个西红柿异源平台。在这项研究中,我们评估了异源阵列分析苹果成熟生理的潜力。将正常的成熟转录组与通过1-MCP处理获得的畸变的转录组(乙烯竞争者)进行了比较,从而可以鉴定出一个完整的基因组,涉及发育和乙烯依赖性。

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