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首页> 外文期刊>Journal of Plant Growth Regulation >Role of brassinosteroids, ethylene, abscisic acid, and indole-3-acetic acid in mango fruit ripening.
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Role of brassinosteroids, ethylene, abscisic acid, and indole-3-acetic acid in mango fruit ripening.

机译:油菜素甾醇,乙烯,脱落酸和吲哚-3-乙酸在芒果果实成熟中的作用。

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摘要

Rapid ripening of mango fruit limits its distribution to distant markets. To better understand and perhaps manipulate this process, we investigated the role of plant hormones in modulating climacteric ripening of "Kensington Pride" mango fruits. Changes in endogenous levels of brassinosteroids (BRs), abscisic acid (ABA), indole-3-acetic acid (IAA), and ethylene and the respiration rate, pulp firmness, and skin color were determined at 2-day intervals during an 8-day ripening period at ambient temperature (21 +or- 1 degrees C). We also investigated the effects of exogenously applied epibrassinolide (Epi-BL), (+)-cis, trans-abscisic acid (ABA), and an inhibitor of ABA biosynthesis, nordihydroguaiaretic acid (NDGA), on fruit-ripening parameters such as respiration, ethylene production, fruit softening, and color. Climacteric ethylene production and the respiration peak occurred on the fourth day of ripening. Castasterone and brassinolide were present in only trace amounts in fruit pulp throughout the ripening period. However, the exogenous application of Epi-BL (45 and 60 ng g--1 FW) advanced the onset of the climacteric peaks of ethylene production and respiration rate by 2 and 1 day, respectively, and accelerated fruit color development and softening during the fruit-ripening period. The endogenous level of ABA rose during the climacteric rise stage on the second day of ripening and peaked on the fourth day of ripening. Exogenous ABA promoted fruit color development and softening during ripening compared with the control and the trend was reversed in NDGA-treated fruit. The endogenous IAA level in the fruit pulp was higher during the preclimacteric minimum stage and declined during the climacteric and postclimacteric stages. We speculate that higher levels of endogenous IAA in fruit pulp during the preclimacteric stage and the accumulation of ABA prior to the climacteric stage might switch on ethylene production that triggers fruit ripening. Whilst exogenous Epi-BL promoted fruit ripening, endogenous measurements suggest that changes in BRs levels are unlikely to modulate mango fruit ripening
机译:芒果果实的快速成熟限制了其向遥远市场的分布。为了更好地理解和操纵这个过程,我们研究了植物激素在调节“肯辛顿骄傲”芒果果实更年期成熟中的作用。在8天内,每隔2天测定一次内源性油菜素类固醇(BRs),脱落酸(ABA),吲哚-3-乙酸(IAA)和乙烯的水平变化,以及呼吸速率,果肉紧实度和皮肤颜色。环境温度(21 +或-1摄氏度)下的一天成熟期。我们还研究了外用表皮油菜素内酯(Epi-BL),(+)-顺式,反式-脱落酸(ABA)和ABA生物合成抑制剂的作用,去甲二氢愈创木酸(NDGA),用于成熟果实的参数,例如呼吸,乙烯产量,果实软化和颜色。在更熟的第四天,更乙烯的产生和呼吸峰出现。在整个成熟期,果肉中仅存在痕量的Castasterone和Brasinolide。然而,外源施用Epi-BL(45和60 ng g -1 FW)分别使乙烯产生和呼吸频率的更年期峰分别提前2天和1天,并加速了果实成熟期间,果实的颜色会变软。 ABA的内源水平在成熟的第二天在更年期上升阶段上升,在成熟的第四天达到顶峰。与对照相比,外源ABA促进了果实颜色的形成和成熟过程中的软化,并且在NDGA处理的果实中该趋势被逆转。在更年期前的最低阶段,果肉中的内源IAA水平较高,而在更年期和更年期后的阶段,果肉中的内源性IAA水平下降。我们推测,在更年期前果肉中较高水平的内源性IAA和在更年期前ABA的积累可能会触发乙烯生产,从而触发果实成熟。外源Epi-BL促进果实成熟,但内源测量表明BRs水平的变化不太可能调节芒果果实的成熟

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