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Genome-Wide Survey Reveals Transcriptional Differences Underlying the Contrasting Trichome Phenotypes of Two Sister Desert Poplars

机译:全基因组调查揭示了两个姊妹沙漠杨树相反的Trichome表型背后的转录差异。

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摘要

Trichomes, which are widely used as an important diagnostic characteristic in plant species delimitation, play important roles in plant defense and adaptation to adverse environments. In this study, we used two sister poplar species, Populus pruinosa and Populus euphratica—which have, respectively, dense and sparse trichomes—to examine the genetic differences associated with these contrasting phenotypes. The results showed that 42 and 45 genes could be identified as candidate genes related to trichomes in P. pruinosa and P. euphratica, respectively; most of these genes possessed high degrees of diversification in their coding sequences, but they were similar in intron/exon structure in the two species. We also found that most of the candidate trichome genes were expressed at higher levels in P. pruinosa, which has dense trichomes, than in P. euphratica, where there are few trichomes. Based on analyses of transcriptional profiles, a total of 195 genes, including many transcription factors, were found to show distinct differences in expression. The results of gene function annotation suggested that the genes identified as having contrasting levels of expression level are mainly associated with trichome elongation, ATPase activity, and hormone transduction. Changes in the expression of these and other related genes with high sequence diversification may have contributed to the contrast in the pattern of trichome phenotypes between the two species.
机译:毛滴虫在植物物种定界中被广泛用作重要的诊断特征,在植物防御和适应不利环境方面发挥着重要作用。在这项研究中,我们使用了两个姊妹杨树种,即Puulus pruinosa和Populus euphratica,它们分别具有密集和稀疏的毛状体,以检查与这些不同表型相关的遗传差异。结果表明,在P. pruinosa和P. euphratica中,与毛状体相关的候选基因分别为42和45个。这些基因中的大多数在其编码序列中具有高度多样化,但是在两个物种中内含子/外显子结构相似。我们还发现,大多数候选毛状体基因在毛状体密集的p。pruinosa中表达较高,而毛状体中的毛状体很少。根据转录谱分析,发现总共195个基因(包括许多转录因子)显示出明显的差异。基因功能注释的结果表明,被鉴定为具有相反表达水平的基因主要与毛状体伸长,ATPase活性和激素转导有关。这些和其他相关基因的表达变化具有高度的序列多样性,可能导致了这两个物种之间毛状体表型模式的差异。

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