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Solanum lycopersicum AUXIN RESPONSE FACTOR 9 regulates cell division activity during early tomato fruit development

机译:番茄茄子AUXIN响应因子9在早期番茄果实发育过程中调节细胞分裂活性

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摘要

The transformation of the ovary into a fruit after successful completion of pollination and fertilization has been associated with many changes at transcriptomic level. These changes are part of a dynamic and complex regulatory network that is controlled by phytohormones, with a major role for auxin. One of the auxin-related genes differentially expressed upon fruit set and early fruit development in tomato is Solanum lycopersicum AUXIN RESPONSE FACTOR 9 (SlARF9). Here, the functional analysis of this ARF is described. SlARF9 expression was found to be auxin-responsive and SlARF9 mRNA levels were high in the ovules, placenta, and pericarp of pollinated ovaries, but also in other plant tissues with high cell division activity, such as the axillary meristems and root meristems. Transgenic plants with increased SlARF9 mRNA levels formed fruits that were smaller than wild-type fruits because of reduced cell division activity, whereas transgenic lines in which SlARF9 mRNA levels were reduced showed the opposite phenotype. The expression analysis, together with the phenotype of the transgenic lines, suggests that, in tomato, ARF9 negatively controls cell division during early fruit development.
机译:在成功完成授粉和受精后,卵巢向果实的转化与转录组水平的许多变化有关。这些变化是由植物激素控制的动态而复杂的调节网络的一部分,其中植物生长素起主要作用。在番茄的坐果和果实早期发育过程中差异表达的与生长素相关的基因之一是番茄茄子AUXIN响应因子9(S1ARF9)。在此,说明该ARF的功能分析。发现在授粉卵巢的胚珠,胎盘和果皮中,但在具有高细胞分裂活性的其他植物组织中,如腋生分生组织和根分生组织,S1ARF9表达是生长素应答性的,并且S1ARF9 mRNA水平较高。具有S1ARF9 mRNA水平升高的转基因植物形成的果实比野生型果实小,这是因为细胞分裂活性降低,而其中SlaARF9 mRNA水平降低的转基因系表现出相反的表型。表达分析以及转基因品系的表型表明,在番茄中,ARF9在果实早期发育过程中负调控细胞分裂。

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