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Auxin response factor 6A regulates photosynthesis, sugar accumulation, and fruit development in tomato

机译:营养因子响应因子6a调节番茄中的光合作用,糖积聚和水果开发

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Auxin response factors (ARFs) are involved in auxin-mediated transcriptional regulation in plants. In this study, we performed functional characterization of SlARF6A in tomato. SlARF6A is located in the nucleus and exhibits transcriptional activator activity. Overexpression of SlARF6A increased chlorophyll contents in the fruits and leaves of tomato plants, whereas downregulation of SlARF6A decreased chlorophyll contents compared with those of wild-type (WT) plants. Analysis of chloroplasts using transmission electron microscopy indicated increased sizes of chloroplasts in SlARF6A-overexpressing plants and decreased numbers of chloroplasts in SlARF6A-downregulated plants. Overexpression of SlARF6A increased the photosynthesis rate and accumulation of starch and soluble sugars, whereas knockdown of SlARF6A resulted in opposite phenotypes in tomato leaves and fruits. RNA-sequence analysis showed that regulation of SlARF6A expression altered the expression of genes involved in chlorophyll metabolism, photosynthesis and sugar metabolism. SlARF6A directly bound to the promoters of SlGLK1, CAB, and RbcS genes and positively regulated the expression of these genes. Overexpression of SlARF6A also inhibited fruit ripening and ethylene production, whereas downregulation of SlARF6A increased fruit ripening and ethylene production. SlARF6A directly bound to the SAMS1 promoter and negatively regulated SAMS1 expression. Taken together, these results expand our understanding of ARFs with regard to photosynthesis, sugar accumulation and fruit development and provide a potential target for genetic engineering to improve fruit nutrition in horticulture crops.? The Author(s) 2019.
机译:生长素响应因子(ARFS)参与植物中的植物素介导的转录调节。在这项研究中,我们在番茄中进行了斯拉氏菌氏菌的功能表征。 Slarf6a位于细胞核中,表现出转录活化剂活性。 Slarf6a的过度表达增加了番茄植物的水果和叶片中的叶绿素含量,而与野生型(WT)植物相比,斯拉夫6a的下调降低了叶绿素含量。使用透射电子显微镜的叶绿体分析表明鞋面过度抑制植物中叶绿体的尺寸增加,并且椎板下调植物中的叶绿体数量降低。 Slarf6a的过度表达增加了淀粉和可溶性糖的光合速率和积累,而沥青6A的敲低导致番茄叶片和水果中的表型相反。 RNA序列分析表明,Slarf6a表达的调节改变了叶绿素代谢,光合作用和糖代谢的基因的表达。 Slarf6a直接与SlGlk1,驾驶室和RBCS基因的启动子结合,并积极地调节这些基因的表达。 Slarf6a的过度表达也抑制了果实熟化和乙烯生产,而斯拉夫6A的下调增加了果实成熟和乙烯生产。 Slarf6a直接与SAMS1启动子结合并对SAMS1表达产生负面调节。总之,这些结果扩大了我们对光合作用,糖积累和果实开发的对ARF的理解,并为改善园艺作物的果实营养提供了一种潜在的基因工程目标。作者2019年。

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