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RNA Interference Silencing of Chalcone Synthase, the First Step in the Flavonoid Biosynthesis Pathway, Leads to Parthenocarpic Tomato Fruits[C]

机译:黄酮类生物合成途径的第一步,查尔酮合酶的RNA干扰沉默导致单性结实番茄果实[C]

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摘要

Parthenocarpy, the formation of seedless fruits in the absence of functional fertilization, is a desirable trait for several important crop plants, including tomato (Solanum lycopersicum). Seedless fruits can be of great value for consumers, the processing industry, and breeding companies. In this article, we propose a novel strategy to obtain parthenocarpic tomatoes by down-regulation of the flavonoid biosynthesis pathway using RNA interference (RNAi)-mediated suppression of chalcone synthase (CHS), the first gene in the flavonoid pathway. In CHS RNAi plants, total flavonoid levels, transcript levels of both Chs1 and Chs2, as well as CHS enzyme activity were reduced by up to a few percent of the corresponding wild-type values. Surprisingly, all strong Chs-silenced tomato lines developed parthenocarpic fruits. Although a relation between flavonoids and parthenocarpic fruit development has never been described, it is well known that flavonoids are essential for pollen development and pollen tube growth and, hence, play an essential role in plant reproduction. The observed parthenocarpic fruit development appeared to be pollination dependent, and Chs RNAi fruits displayed impaired pollen tube growth. Our results lead to novel insight in the mechanisms underlying parthenocarpic fruit development. The potential of this technology for applications in plant breeding and biotechnology will be discussed.
机译:单性结实,在没有功能性施肥的情况下形成无核果实,是包括番茄(Solanum lycopersicum)在内的几种重要农作物的理想特性。无核水果对于消费者,加工业和育种公司可能具有巨大的价值。在本文中,我们提出了一种新的策略,通过使用RNA干扰(RNAi)介导的查尔酮合酶(CHS)(类黄酮途径中的第一个基因)抑制类黄酮生物合成途径来获得单性结实的西红柿。在CHS RNAi植物中,总黄酮水平,Chs1和Chs2的转录水平以及CHS酶活性降低了相应野生型值的百分之几。出人意料的是,所有强Chs沉默的番茄品系都发育出单性结实的果实。尽管从未描述过类黄酮与单性结实果实发育之间的关系,但众所周知,类黄酮对于花粉发育和花粉管生长是必不可少的,因此在植物繁殖中起着至关重要的作用。观察到的单性结实果实发育似乎是授粉依赖性的,Chs RNAi果实显示出花粉管生长受损。我们的结果导致单性结实果实发育的机制的新见解。将讨论该技术在植物育种和生物技术中的应用潜力。

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