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首页> 外文期刊>Journal of Experimental Botany >Silencing Sl-EBF1 and Sl-EBF2 expression causes constitutive ethylene response phenotype, accelerated plant senescence, and fruit ripening in tomato.
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Silencing Sl-EBF1 and Sl-EBF2 expression causes constitutive ethylene response phenotype, accelerated plant senescence, and fruit ripening in tomato.

机译:沉默 S1-EBF1 和 S1-EBF2 的表达会导致番茄的本构乙烯反应表型,加速植物衰老和果实成熟。

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The hormone ethylene regulates a wide range of plant developmental processes and EBF (EIN3-binding F-box) proteins were shown to negatively regulate the ethylene signalling pathway via mediating the degradation of EIN3/EIL proteins. The present study reports on the identification of two tomato F-box genes, Sl-EBF1 and Sl-EBF2 from the EBF subfamily. The two genes display contrasting expression patterns in reproductive and vegetative tissues and in response to ethylene and auxin treatment. Sl-EBF1 and Sl-EBF2 genes are actively regulated at crucial stages in the development of the reproductive organs. Their dynamic expression in flowers during bud-to-anthesis and anthesis-to-post-anthesis transitions, and at the onset of fruit ripening, suggests their role in situations where ethylene is required for stimulating flower opening and triggering fruit ripening. VIGS-mediated silencing of a single tomato EBF gene uncovered a compensation mechanism that tends to maintain a threshold level of Sl-EBF expression via enhancing the expression of the second Sl-EBF gene. In line with this compensation, tomato plants silenced for either of the Sl-EBF genes were indistinguishable from control plants, indicating functional redundancy among Sl-EBF genes. By contrast, co-silencing of both Sl-EBFs resulted in ethylene-associated phenotypes. While reports on EBF genes to date have focused on their role in modulating ethylene responses in Arabidopsis, the present study uncovered their role in regulating crucial stages of flower and fruit development in tomato. The data support the hypothesis that protein degradation via the ubiquitin/26 S proteasome pathway is a control point of fruit ripening and open new leads for engineering fruit quality.
机译:乙烯激素调节着广泛的植物发育过程,EBF(结合EIN3的F-box)蛋白通过介导EIN3 / EIL蛋白的降解来负调控乙烯信号传导途径。本研究报道了从EBF亚科鉴定两个番茄F-box基因 Sl-EBF1 和 S1-EBF2 。这两个基因在生殖和营养组织中以及乙烯和植物生长素处理中显示出相反的表达模式。在生殖器官发育的关键阶段, S1-EBF1 和 S1-EBF2 基因受到积极调节。它们在花序到花序和花序到花后的过渡期间以及在果实成熟的开始时在花中的动态表达,表明它们在需要乙烯刺激花开并触发果实成熟的情况下发挥作用。 VIGS介导的单个番茄 EBF 基因的沉默揭示了一种补偿机制,该机制倾向于通过增强第二个的表达来维持 S1-EBF 表达的阈值水平。 Sl-EBF 基因。与此补偿相一致,沉默了 S1-EBF 基因之一的番茄植株与对照植株没有区别,表明 S1-EBF 基因之间的功能冗余。相比之下,两个 S1-EBF 的共同沉默导致乙烯相关的表型。尽管迄今为止有关 EBF 基因的报道都集中在它们在调节拟南芥(Arabidopsis )中乙烯反应中的作用,但本研究发现了它们在调控番茄花和果实发育的关键阶段中的作用。 。数据支持以下假设:通过遍在蛋白/ 26 S蛋白酶体途径降解蛋白质是果实成熟的控制点,并为工程果实品质打开了新的线索。

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