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Transcriptome profiling revealed diverse gene expression patterns in poplar (Populus × euramericana) under different planting densities

机译:转录组分析揭示了不同种植密度下杨树(杨×欧洲杨)中不同的基因表达模式

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摘要

Certain plant genotypes can achieve optimal growth under appropriate environmental conditions. Under high planting density conditions, plants undergo competition for uptake and utilization of light and nutrients. However, the relationship between whole-genome expression patterns and the planting density in perennial woody plants remains unknown. In this study, whole-genome RNA sequencing of poplar (Populus × euramericana) was carried out at three different sampling heights to determine gene expression patterns under high (HD) and low (LD) planting densities. As a result, 4,004 differentially expressed genes (DEGs) were detected between HD and LD, of which 2,300, 701, and 1,003 were detected at the three positions, upper, middle and bottom, respectively. Function annotation results further revealed that a large number of the DEGs were involved in distinct biological functions. There were significant changes in the expression of metabolism-related and stimulus-related genes in response to planting density. There were 37 DEGs that were found at all three positions and were subsequently screened. Several DEGs related to plant light responses and photosynthesis were observed at different positions. Meanwhile, numbers of genes related to auxin/indole-3-acetic acid, and carbon and nitrogen metabolism were also revealed, displaying overall trends of upregulation under HD. These findings provide a basis for identifying candidate genes related to planting density and could increase our molecular understanding of the effect of planting density on gene expression.
机译:某些植物基因型可以在适当的环境条件下达到最佳生长。在高种植密度条件下,植物要争夺光和养分的吸收和利用。然而,多年生木本植物全基因组表达方式与种植密度之间的关系仍然未知。在这项研究中,杨的全基因组RNA测序(Populus×euramericana)在三个不同的采样高度下进行,以确定高(HD)和低(LD)种植密度下的基因表达模式。结果,在HD和LD之间检测到4,004个差异表达基因(DEG),其中分别在上,中和下三个位置检测到2,300、701和1,003。功能注释结果进一步表明,大量的DEG参与了不同的生物学功能。响应种植密度,代谢相关基因和刺激相关基因的表达发生了显着变化。在所有三个位置上发现了37个DEG,随后进行了筛选。在不同位置观察到几种与植物光反应和光合作用相关的DEG。同时,还揭示了与生长素/吲哚-3-乙酸,碳和氮代谢相关的基因数量,显示了高清条件下上调的总体趋势。这些发现为鉴定与种植密度有关的候选基因提供了基础,并可能增加我们对种植密度对基因表达影响的分子理解。

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