首页> 美国卫生研究院文献>Journal of Zhejiang University. Science. B >Alteration of SlYABBY2b gene expression impairs tomato ovary locule number and endogenous gibberellin content
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Alteration of SlYABBY2b gene expression impairs tomato ovary locule number and endogenous gibberellin content

机译:SlYABBY2b基因表达的改变损害番茄子房数和内源赤霉素含量

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摘要

Tomato is an ideal model species for fleshy fruit development research. SlYABBY2b regulates the ovary locule number, which is increased by gibberellins, in tomato. However, the relationship between SlYABBY2b and endogenous gibberellin is poorly understood. In this study, SlYABBY2b-overexpressing and RNA interference (RNAi) transgenic tomato plants were used to elucidate the mechanism by which SlYABBY2b regulates the ovary locule number and endogenous gibberellin content in tomato. SlYABBY2b-overexpressing plants showed fewer locules and lower gibberellin content than the control plants. Contrasting results were found in the RNAi lines. Therefore, the SlYABBY2b gene negatively regulates tomato ovary locule number and endogenous gibberellin content. Furthermore, the expression of SlYABBY2b gene was remarkably higher than that of the wild type in the apical shoots of gibberellin-deficient mutants. This showed that the gibberellins can inhibit the expression of SlYABBY2b gene negative regulation. Further study revealed that SlYABBY2b suppressed the expression of SlGA20ox1 and SlGA3ox2, but increased that of SlGA2ox1 and SlGA2ox5 in the apical shoots of SlYABBY2b-overexpressing plants, thereby reducing gibberellin content. Contrasting results were found in the RNAi lines. Our results showed that the SlYABBY2b gene was located on gibberellin signal transduction pathways, fed back regulation of the synthesis of gibberellin, and felt exogenous gibberellin signal to further regulate the formation of tomato locule.
机译:番茄是进行肉质水果发育研究的理想模式物种。 S1YABBY2b调节番茄中的赤霉素增加的子房数。然而,人们对SlyABBY2b与内源赤霉素之间的关系了解甚少。在这项研究中,SlYABBY2b过表达和RNA干扰(RNAi)转基因番茄植物被用来阐明SlYABBY2b调节番茄中子房数和内源赤霉素含量的机制。与对照植物相比,过表达S1YABBY2b的植物显示出较少的小室和较低的赤霉素含量。在RNAi系中发现了相反的结果。因此,SlYABBY2b基因负调控番茄子房数和内源赤霉素含量。此外,在赤霉素缺乏型突变体的顶芽中,SlYABBY2b基因的表达明显高于野生型。这表明赤霉素可以抑制SlYABBY2b基因的负调控表达。进一步的研究表明,SlYABBY2b抑制了过表达SlYABBY2b的植物根尖中SlGA20ox1和SlGA3ox2的表达,但增加了SlGA2ox1和SlGA2ox5的表达,从而降低了赤霉素的含量。在RNAi系中发现了相反的结果。我们的结果表明,SlYABBY2b基因位于赤霉素信号转导通路上,反馈赤霉素合成的调控,并感觉到外源赤霉素信号进一步调控番茄小室的形成。

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