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首页> 外文期刊>PLoS One >Transcriptome sequencing and endogenous phytohormone analysis reveal new insights in CPPU controlling fruit development in kiwifruit ( Actinidia chinensis )
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Transcriptome sequencing and endogenous phytohormone analysis reveal new insights in CPPU controlling fruit development in kiwifruit ( Actinidia chinensis )

机译:转录组测序和内源性植物激素分析揭示了在猕猴桃(Actinidia Chinensis)的CPPU控制水果发育的新见解

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Kiwifruit ( Actinidia chinensis ) is a rich nutritious fruit crop owing to a markedly higher content of vitamin C and minerals. To promote fruit set and to increase the yield of kiwifruit, forchlorfenuron (CPPU) has been widely applied. However, the molecular details regarding CPPU controlling kiwifruit development, especially at the fastest fruit growth stage, remain unknown. In the present study, we measured the effect of CPPU on developmental regulation in red-fleshed kiwifruit ( Actinidia chinensis ‘Hongyang’). Additionally, a cytological analysis was performed to clarify the precise changes in the cell structure of the CPPU-treated kiwifruits. Moreover, the concentration of endogenous phytohormones, including indoleacetic acid (IAA), zeatin (ZT), gibberellic acid 3 (GA 3 ), and abscisic acid (ABA), were measured by Enzyme-linked Immunosorbent Assay (ELISA). Furthermore, RNA-Seq was performed to dissect the complicated molecular mechanisms, with a focus on biosynthesis, metabolism, and signaling compounds, such as endogenous hormones, sugars, and L-ascorbic acid. Our results demonstrated that CPPU treatment not only regulates the size and weight of a single fruit but also improves the quality in ‘Hongyang’ kiwifruit through the accumulation of both soluble sugar and vitamin C. It was also seen that CPPU regulates kiwifruit development by enhancing cell expansion of epidermal cells and parenchyma cells, while, promoting cell division of subepidermal cells. Additionally, CPPU significantly increased the gibberellin and cytokinin biosynthetic pathway and signaling, while repressing auxin and ABA biosynthetic pathway; thus, signaling plays an essential role in CPPU controlling kiwifruit development. Notably, transcriptomic analysis revealed that a total of 2244 genes, including 352 unannotated genes, were differentially expressed in kiwifruits because of CPPU treatment, including 127 transcription factors. These genes are mainly enriched in plant hormone signal transduction, photosynthesis, MAPK signaling pathway, starch and sucrose metabolism, and phenylpropanoid biosynthesis. Overall, our results highlight that CPPU regulation of kiwifruit development is mainly associated with an antagonistic and/or synergistic regulatory role of endogenous phytohormones, and enhancing the energy supply. This provides new insights into the molecular details of CPPU controlling kiwifruit development at the fastest fruit growth stage, which is of agricultural importance for kiwifruit breeding and crop improvement.
机译:Kiwifruit(Actinidia chinensis)是一种丰富的营养果实作物,由于维生素C和矿物质明显高。为了促进水果集并提高Kiwifruit的产量,Forchlorfenuron(CPPU)已被广泛应用。然而,关于控制猕猴桃发育的CPPU的分子细节,特别是在最快的果实生长阶段,仍然未知。在本研究中,我们测量了CPPU对红刷猕猴桃(Actinidia Chinensis'Hongyang')的发育调节的影响。另外,进行细胞学分析以阐明CPPU处理的猕猴桃细胞结构的精确变化。此外,通过酶联免疫吸附试验(ELISA)测量内源性植物激素,包括吲哚乙酸(IAA),ZEEIN(ZT),甘氨酸3(GA 3)和脱落酸(ABA)的浓度。此外,进行RNA-SEQ以剖析复杂的分子机制,重点关注生物合成,代谢和信号化合物,例如内源激素,糖和L-抗坏血酸。我们的结果表明,CPPU治疗不仅调节单个水果的尺寸和重量,而且通过含有可溶性糖和维生素C的积累来改善'Hongyang'Kiwifruit的质量。还可以看出,CPPU通过增强细胞来调节猕猴桃的开发表皮细胞和实质细胞的扩增,同时促进了潜伏药细胞的细胞分裂。此外,CPPU显着增加了胃肠杆菌素和细胞素生物合成途径和信号传导,同时压制养羊酸和ABA生物合成途径;因此,信号传导在控制kiwifruit开发的CPPU中起着重要作用。值得注意的是,转录组分析表明,由于CPPU处理,总共2244个基因,其中包括352个未定位的基因,包括127个转录因子。这些基因主要富含植物激素信号转导,光合作用,MAPK信号通路,淀粉和蔗糖代谢和苯丙烷化生物合成。总体而言,我们的结果强调,猕猴桃发展的共同体规定主要与内源性植物激素的拮抗和/或协同监管作用相关,并增强能源供应。这为CPPU控制猕猴桃增长阶段的CPPU的分子细节提供了新的见解,这是猕猴桃育种和作物改善的农业重要性。

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