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Inheritance of Flesh Texture in Peach and Effects of Ethylene Treatment on Softening of the Stony Hard Peach

机译:桃肉质构的遗传及乙烯处理对硬质桃子软化的影响

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Flesh texture of peach (Prunus persica Batsch) was classified into melting and non-melting, while in 1976, the stony hard variety was reported as a third type. However, the fruit ripening characteristics and inheritance of stony hard trait remained unclear. The fruit of melting and non-melting cultivars showed increased ethylene production and softer flesh, although their degrees differed. Conversely, the stony hard texture was characterized by the absence of both ethylene production and postharvest softening in mature fruit, while the firmness of the stony hard peach decreased effectively with continuous ethylene treatment. Treatment of the stony hard peach with 1-aminocyclopropane-1-carboxylic acid (ACC), which is the immediate precursor to ethylene, softened the fruit and rapidly induced ethylene production. The genetic separation of the flesh texture characteristics in F1 and F2 offspring from the cross of non-melting and stony hard cultivars indicated that the stony hard trait was controlled by a single gene, and inherited independently of melting fleshon-melting flesh traits. The stony hard peach is expected to be used as a genetic source to enhance the preservability of the table peach.
机译:桃(Prunus persica Batsch)的肉质地分为融化和不融化,而在1976年,据报道硬石质变种是第三种。然而,果实的成熟特性和石质硬性状的遗传仍然不清楚。熔解和非熔解品种的果实显示出增加的乙烯产量和较软的果肉,尽管它们的程度不同。相反,石质硬质感的特征是在成熟果实中既不产生乙烯,又没有采后软化,而硬质桃的硬度随着连续的乙烯处理而有效降低。用1-氨基环丙烷-1-羧酸(ACC)处理石质硬桃是乙烯的直接前体,可软化果实并迅速诱导乙烯的产生。 F1和F2后代的果肉质地特征与非熔解和硬质石质杂交后代的遗传分离表明,硬质性状受单个基因控制,并且遗传独立于熔解肉质/非熔解性状。有望将硬质石质桃子用作遗传食材,以增强食用桃子的保存性。

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