B染色体长链非编码rna对玉米基因表达的影响

Xin Liu , Wenjie Yue , Shiqi Lin, Yuxian Yang, Tong Chen, Xiaowen Shi
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引用次数: 0

摘要

在玉米育种中使用人工染色体可以实现多基因堆栈的位点特异性整合,有效地克服了传统转基因方法的局限性。玉米B染色体是可有可无且高度异色的染色体,在低拷贝数下对表型的影响最小,使其成为工程人工染色体的一个很有前景的平台。然而,最近的研究表明,玉米B染色体可以影响A染色体上的基因表达和重组。了解B染色体的遗传特性及其对基因表达的影响,对其在人工染色体构建中的应用具有重要意义。尽管在阐明B染色体如何影响A染色体表达方面取得了进展,但长链非编码rna (lncRNAs)在这方面的作用仍不清楚。在本研究中,我们分析了0-7条B染色体植物叶片组织的RNA-seq数据,共鉴定出1614个lncrna,其中1516个位于a染色体,98个位于B染色体,其中72个是B染色体特异性的lncrna。虽然a位lncRNAs更依赖于B染色体的存在,但B位lncRNAs的表达受到B染色体数量的显著影响。本研究构建的调控网络提示,b位lncRNAs可能驱动A染色体转录因子和昼夜节律调节相关基因的差异表达,提示其在A染色体基因表达中的调控作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of the B chromosome-located long non-coding RNAs on gene expression in maize
Using artificial chromosomes in maize breeding allows for site-specific integration of multigene stacks, effectively overcoming the limitations of conventional transgenic approaches. The maize B chromosome, which is dispensable and highly heterochromatic, has minimal impact on phenotypes at low copy numbers, making it a promising platform for engineering artificial chromosomes. However, recent studies have demonstrated that the maize B chromosome can impact gene expression and recombination on the A chromosome. Understanding the genetic characteristics of the B chromosomes and their impact on gene expression is essential for their application in artificial chromosome construction. Despite advancements in elucidating how the B chromosome affects A chromosome expression, the role of long non-coding RNAs (lncRNAs) in this context remains unclear. In this study, we analyzed the RNA-seq data from leaf tissue of plants with 0–7 ​B chromosomes, identifying a total of 1614 lncRNAs, including 1516 A chromosome-located and 98 ​B chromosome-located lncRNAs, 72 of which are specific to the B chromosome. While A-located lncRNAs show greater dependence on the mere presence of the B chromosome, the expression of B-located lncRNAs is significantly affected by the number of B chromosomes present. Regulatory networks constructed in this study suggest that B-located lncRNAs may drive the differential expression of A chromosome-located transcription factors and genes associated with circadian rhythm regulation, indicating their regulatory role in A chromosome gene expression.
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