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Identification of a novel α-L-arabinofuranosidase gene associated with mealiness in apple

机译:鉴定与苹果中的腥味相关的新型α-L-阿拉伯呋喃糖苷酶基因

摘要

In order to investigate the genetic bases of the physiological syndrome mealiness that causes abnormal fruit softening and juice loss in apples, an integrative approach was devised, consisting of sensory, instrumental, biochemical, genetic, and genomic methods. High levels of activity of α-L-arabinofuranosidase (α-AFase), a hydrolase acting on the pectic component of the cell walls, were found in individuals exhibiting the mealiness phenotype in a segregating population. The expression levels of the previously uncharacterized apple AF gene MdAF3 are higher in fruits from plants consistently showing mealiness symptons and high α-AFase activity. The transcription of MdAF3 is differentially regulated in distinct genomic contexts and appears to be independent of ethylene. Thus, it is likely to be controlled by endogenous developmental mechanisms associated with fruit ripening. The use of integrative approaches has allowed the identification of a novel contributor to the mealiness phenotype in apple and it has been possible to overcome the problems posed by the unavailability of near-isogenic lines to dissect the genetic bases of a complex physiological trait in woody perennial species.
机译:为了研究引起苹果异常果实软化和汁液流失的生理综合征粉尘的遗传基础,设计了一种综合方法,包括感觉,仪器,生化,遗传和基因组方法。在分离人群中表现出粉状表型的个体中发现了高水平的α-L-阿拉伯呋喃糖苷酶(α-AFase)活性,一种水解酶作用于细胞壁的果胶成分。以前未表征的苹果AF基因MdAF3在始终表现出粉状症状和高α-AFase活性的植物果实中的表达水平较高。 MdAF3的转录在不同的基因组环境中受到差异调节,并且似乎独立于乙烯。因此,它很可能受到与果实成熟相关的内源性发育机制的控制。综合方法的使用允许鉴定出苹果中粉状表型的新贡献者,并且有可能克服由于近等基因系无法解剖多年生木本植物复杂生理性状的遗传基础而引起的问题。种类。

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