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首页> 外文期刊>BMC Plant Biology >Reduced expression of a subunit gene of sucrose non-fermenting 1 related kinase, PpSnRK1βγ , confers flat fruit abortion in peach by regulating sugar and starch metabolism
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Reduced expression of a subunit gene of sucrose non-fermenting 1 related kinase, PpSnRK1βγ , confers flat fruit abortion in peach by regulating sugar and starch metabolism

机译:减少蔗糖非发酵1相关激酶,PPSNRK1βγ的亚基基因的表达,通过调节糖和淀粉代谢来赋予桃子扁平果实流产

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Fruit abortion is a major limiting factor for fruit production. In flat peach, fruit abortion is present in the whole tree of some accessions during early fruit development. However, the physiological factors and genetic mechanism underlying flat fruit abortion remain largely elusive. In this study, we have revealed that the fertilization process was accomplished and the reduction of sucrose and starch contents might result in flat fruit abortion. By combining association and gene expression analysis, a key candidate gene, PpSnRK1βγ, was identified. A 1.67-Mb inversion co-segregated with flat fruit shape altered the promoter activity of PpSnRK1βγ, resulting in much lower expression in aborting flat peach. Ectopic transformation in tomato and transient overexpression in peach fruit have shown that PpSnRK1βγ could increase sugar and starch contents. Comparative transcriptome analysis further confirmed that PpSnRK1βγ participated in carbohydrate metabolism. Subcellular localization found that PpSnRK1βγ was located in nucleus. This study provides a possible reason for flat fruit abortion and identified a critical candidate gene, PpSnRK1βγ, that might be responsible for flat fruit abortion in peach. The results will provide great help in peach breeding and facilitate gene identification for fruit abortion in other plant species.
机译:果实流产是水果生产的主要限制因素。在扁平桃子中,在早期果实开发期间的一些养殖中,果实流产存在。然而,扁平果实流产的生理因素和遗传机制仍然很大程度上是难以捉摸的。在这项研究中,我们揭示了施肥过程的完成,蔗糖和淀粉含量的减少可能导致扁平果实流产。通过组合关联和基因表达分析,鉴定了关键候选基因,PPSNRK1βγ。具有扁平果实形状的1.67mb反转倒置改变了PPSNRK1βγ的启动子活性,导致扁平桃中的下降表达得多。桃花水果中番茄和瞬时过度表达的异位转化表明,PPSNRK1βγ可以增加糖和淀粉含量。比较转录组分析进一步证实PPSNRK1βγ参与碳水化合物代谢。亚细胞定位发现PPSNRK1βγ位于细胞核中。本研究提供了扁平果实流产的可能原因,并确定了临界候选基因PPSNRK1βγ,这可能负责桃子中的扁平果实流产。结果将在桃养殖中提供很大的帮助,并促进其他植物物种果实流产的基因鉴定。

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