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Regulation of ripening and opportunities for control in tomato and other fruits

机译:对番茄和其他水果控制的成熟和机会

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摘要

Fruits are an important part of a healthy diet. They provide essential vitamins and minerals, and their consumption is associated with a reduced risk of heart disease and certain cancers. These important plant products can, however, be expensive to purchase, may be of disappointing quality and often have a short shelf life. A major challenge for crop improvement in fleshy fruit species is the enhancement of their health-promoting attributes while improving quality and reducing postharvest waste. To achieve these aims, a sound mechanistic understanding of the processes involved in fruit development and ripening is needed. In recent years, substantial insights have been made into the mechanistic basis of ethylene biosynthesis, perception and signalling and the identity of master regulators of ripening that operate upstream of, or in concert with a regulatory pathway mediated by this plant hormone. The role of other plant hormones in the ripening process has, however, remained elusive, and the links between regulators and downstream processes are still poorly understood. In this review, we focus on tomato as a model for fleshy fruit and provide an overview of the molecular circuits known to be involved in ripening, especially those controlling pigment accumulation and texture changes. We then discuss how this information can be used to understand ripening in other fleshy fruit-bearing species. Recent developments in comparative genomics and systems biology approaches are discussed. The potential role of epigenetic changes in generating useful variation is highlighted along with opportunities for enhancing the level of metabolites that have a beneficial effect on human health.
机译:水果是健康饮食的重要组成部分。它们提供必要的维生素和矿物质,它们的消费与心脏病和某些癌症的风险降低有关。然而,这些重要的植物产品可以购买昂贵,可能具有令人失望的质量,并且通常具有较短的保质期。肉质水果物种作物改善的一项重大挑战是提高健康促进属性,同时提高质量和减少采后废物。为了实现这些目标,需要对果实开发和成熟中所涉及的过程的声音理解。近年来,已经对乙烯生物合成,感知和信号传导的机械基础进行了实质性见解,以及在上游运行的熟练调节器的身份,或者与该植物激素介导的调节途径进行操作。然而,其他植物激素在成熟过程中的作用仍然难以实现,并且调节因子和下游过程之间的联系仍然很差。在这篇综述中,我们将番茄专注于肉质果实的模型,并提供已知的分子电路的概述,特别是那些控制颜料积聚和纹理变化的分子电路。然后,我们讨论如何使用该信息来了解其他肉质含水物种的成熟。讨论了最近的比较基因组学和系统生物学方法的发展。表观遗传变化在产生有用变化中的潜在作用以及提高对人体健康有益影响的代谢产物水平的机会。

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