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Genome-Wide Gene/Genome Dosage Imbalance Regulates Gene Expressions in Synthetic Brassica napus and Derivatives (AC AAC CCA CCAA)

机译:全基因组/基因组剂量失衡调节合成甘蓝型油菜及其衍生物(ACAACCCACCAA)的基因表达

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摘要

Gene/genome dosage balance is an essential evolutionary mechanism for organisms to ensure a normal function, but the underlying causes of dosage-imbalance regulation remain poorly understood. Herein, the serial Brassica hybrids/polyploids (AC, AAC, CCA, CCAA) with different copies of A and C subgenomes from the same two parents of Brassica rapa and Brassica oleracea were synthesized to investigate the effects of genome dosages on gene expressions and interactions by using RNA-Seq. The expression changes of A- and C-subgenome genes were consistent with dosage alterations. Dosage-dependent and -independent genes were grouped according to the correlations between dosage variations and gene expressions. Expression levels of dosage-dependent genes were strongly correlated with dosage changes and mainly contributed to dosage effects, while those of dosage-independent genes gave weak correlations with dosage variations and mostly facilitated dosage compensation. More protein–protein interactions were detected for dosage-independent genes than dosage-dependent ones, as predicted by the dosage balance hypothesis. Dosage-dependent genes more likely impacted the expressions by trans effects, whereas dosage-independent genes preferred to play by cis effects. Furthermore, dosage-dependent genes were mainly associated with the basic biological processes to maintain the stability of the growth and development, while dosage-independent genes were more enriched in the stress response related processes to accelerate adaptation. The present comprehensive analysis of gene expression dependent/independent on dosage alterations in Brassica polyploids provided new insights into gene/genome dosage-imbalance regulation of gene expressions.
机译:基因/基因组剂量平衡是生物体确保正常功能的重要进化机制,但是对剂量失衡调节的根本原因仍然知之甚少。本文合成了芸苔属和芸苔属的两个亲本具有不同拷贝的A和C亚基因组的连续芸苔属杂种/多倍体(AC,AAC,CCA,CCAA),以研究基因组剂量对基因表达和相互作用的影响通过使用RNA-Seq。 A和C亚基因组基因的表达变化与剂量变化一致。根据剂量变化和基因表达之间的相关性将剂量依赖性和非依赖性基因分组。剂量依赖性基因的表达水平与剂量变化密切相关,并且主要影响剂量效应,而剂量依赖性基因的表达水平与剂量变化之间的相关性较弱,并且大多促进剂量补偿。正如剂量平衡假设所预测的,与剂量依赖性基因相比,剂量依赖性基因检测出更多的蛋白质相互作用。剂量依赖性基因更可能通过反式作用影响表达,而剂量依赖性基因则更倾向于顺式作用。此外,剂量依赖性基因主要与基本生物学过程相关,以维持生长和发育的稳定性,而剂量依赖性基因则在应激反应相关过程中更加丰富,以加速适应。目前对芸苔多倍体中依赖/不依赖剂量变化的基因表达的全面分析为基因表达的基因/基因组剂量失衡调节提供了新的见解。

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