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首页> 外文期刊>PLoS One >Transcriptional and physiological analyses of reduced density in apple provide insight into the regulation involved in photosynthesis
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Transcriptional and physiological analyses of reduced density in apple provide insight into the regulation involved in photosynthesis

机译:苹果中密度降低的转录和生理分析提供了对光合作用中涉及的调控的洞察力

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Different densities have a great influence on the physiological process and growth of orchard plants. Exploring the molecular basis and revealing key candidate genes for different densities management of orchard has great significance for production capacity improvement. In this study, transcriptome sequencing of apple trees was carried out at three different sampling heights to determine gene expression patterns under high density(HD) and low density(LD) and the physiological indices were measured to determine the effect of density change on plants. As a result, physiological indexes showed that the content of Chlorophyll, ACC, RUBP and PEP in the LD was apparently higher than that in control group(high density, HD). While the content of PPO and AO in the LD was noticeably lower than that in the HD. There were 3808 differentially expressed genes (DEGs) were detected between HD and LD, of which 1935, 2390 and 1108 DEGs were found in the three comparisons(middle-upper, lower-outer and lower-inner), respectively. 274 common differentially expressed genes (co-DEGs) were contained in all three comparisons. Functional enrichment and KEGG pathway analysis found these genes were involved in Carbon fixation in photosynthetic organisms, Circadian rhythm, Photosynthesis ? antenna proteins, Photosynthesis, chlorophyll metabolism, Porphyrin, sugar metabolism and so on. Among these genes, LHCB family participated in photosynthesis as parts of photosystem II. In addition, SPA1 , rbcL , SNRK2 , MYC2 , BSK , SAUR and PP2C are involved in Circadian rhythm, the expression of genes related to glycometabolism and hormone signaling pathway is also changed. The results revealed that the decrease of plant density changed the photosynthetic efficiency of leaves and the expression of photosynthesis-related genes, which provide a theoretical basis for the actual production regulation of apples.
机译:不同的密度对果园植物的生理过程和生长有很大影响。探索分子基础,揭示不同密度管理的关键候选基因,对生产能力改进具有重要意义。在该研究中,在三种不同的采样高度下进行苹果树的转录组测序,以确定在高密度(HD)下的基因表达模式,测量生理指标,以确定密度变化对植物的影响。结果,生理指标表明,LD中叶绿素,ACC,REBP和PEP的含量显然高于对照组(高密度,高清)。虽然LD中的PPO和AO的含量明显低于HD中的。在HD和LD之间检测到3808个差异表达基因(DEG),其中在三个比较(中上部,下外和下部)中发现了1935,2390和1108次。 274常见的差异表达基因(共参数)包含在所有三种比较中。功能性富集和Kegg途径分析发现这些基因参与光合生物,昼夜节律,光合作用中的碳固定性吗?天线蛋白,光合作用,叶绿素代谢,卟啉,糖代谢等。在这些基因中,LHCB系列参与光合作用作为照相系统II的一部分。此外,SPA1,RBCL,SNRK2,MYC2,BSK,Saur和PP2C涉及昼夜节律,还改变了与甘氨酸和激素信号通路相关的基因的表达。结果表明,植物密度降低改变了叶片的光合效率和光合作用相关基因的表达,为苹果的实际生产调节提供了理论依据。

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