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Targeted systems biology profiling of tomato fruit reveals coordination of the Yang cycle and a distinct regulation of ethylene biosynthesis during postclimacteric ripening

机译:番茄果实的靶向系统生物学分析揭示了杨周期的协调和在更年期成熟期间乙烯生物合成的独特调节。

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摘要

The concept of system 1 and system 2 ethylene biosynthesis during climacteric fruit ripening was initially described four decades ago. Although much is known about fruit development and climacteric ripening, little information is available about how ethylene biosynthesis is regulated during the postclimacteric phase. A targeted systems biology approach revealed a novel regulatory mechanism of ethylene biosynthesis of tomato (Solanum lycopersicum) when fruit have reached their maximal ethylene production level and which is characterized by a decline in ethylene biosynthesis. Ethylene production is shut down at the level of 1-aminocyclopropane-1-carboxylic acid oxidase. At the same time, 1-aminocyclopropane-1-carboxylic acid synthase activity increases. Analysis of the Yang cycle showed that the Yang cycle genes are regulated in a coordinated way and are highly expressed during postclimacteric ripening. Postclimacteric red tomatoes on the plant showed only a moderate regulation of 1-aminocyclopropane-1-carboxylic acid synthase and Yang cycle genes compared with the regulation in detached fruit. Treatment of red fruit with 1-methylcyclopropane and ethephon revealed that the shut-down mechanism in ethylene biosynthesis is developmentally programmed and only moderately ethylene sensitive. We propose that the termination of autocatalytic ethylene biosynthesis of system 2 in ripe fruit delays senescence and preserves the fruit until seed dispersal.
机译:在更年期的果实成熟过程中,系统1和系统2乙烯生物合成的概念最初是在40年前描述的。尽管对水果的发育和更年期的成熟知之甚少,但是关于在更年期后如何调节乙烯生物合成的信息却很少。有针对性的系统生物学方法揭示了当果实达到其最大乙烯生产水平时,番茄(Solanum lycopersicum)乙烯生物合成的新调控机制,其特征是乙烯生物合成下降。在1-氨基环丙烷-1-羧酸氧化酶水平下停止生产乙烯。同时,1-氨基环丙烷-1-羧酸合酶活性增加。杨氏循环的分析表明,杨氏循环的基因以协调的方式调节,并在更年期后的成熟过程中高度表达。与分离的果实相比,植物上的更年期后的红番茄仅显示出对1-氨基环丙烷-1-羧酸合酶和Yang循环基因的适度调节。用1-甲基环丙烷和乙烯利处理红色水果表明,乙烯生物合成中的关闭机制是经过程序设计的,仅对乙烯具有中等敏感性。我们建议终止成熟果实中系统2的自催化乙烯生物合成可延缓衰老并保存果实直至种子散布。

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