毛竹及其矮小突变体 Phyllostachys edulis 'Tubaeformis' 的替代剪接对比分析

Forests Pub Date : 2024-07-15 DOI:10.3390/f15071233
Zhenhua Qiu, Yuanyuan Sun, Yanhui Su, Long Cheng, Dong Liu, Shuyan Lin, Long Li
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引用次数: 0

摘要

节间长度是竹子的一个重要表型特征,对竹子的加工和利用有重大影响。毛竹的一个变种盛阴竹(Phyllostachys edulis 'Tubaeformis')的节间明显缩短,使其成为珍贵的观赏竹种。我们利用PacBio单分子长读数测序和二代测序技术鉴定了毛竹及其矮小突变体圣音竹的全基因组替代剪接(AS)事件,并比较了两者之间的差异。我们的测序数据揭示了139,539个AS事件,其中保留内含子是最普遍的事件。毛竹和圣应竹之间存在大量基因的差异化替代剪接(DAS),与RNA剪接相关的基因被显著富集。毛竹第24节间SR异构体的高表达可能是导致其发生更多替代剪接事件的主要因素。替代剪接会影响部分GRF、E2F和NAM同工酶的功能域,导致一些同工酶失去功能域,而另一些同工酶获得新的功能域,这种现象在楠竹中更为常见。AS改变了某些GRF同工型的功能域,经常导致同工型的功能域缺失或赋予同工型新的功能域,这种现象在圣应竹中更为常见。我们利用PacBio单分子长序列测序和第二代测序技术鉴定了毛竹及其矮小突变体盛阴竹的全基因组替代剪接(AS)事件,并比较了两者之间的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Analysis of Alternative Splicing in Moso Bamboo and Its Dwarf Mutant, Phyllostachys edulis ‘Tubaeformis’
Internode length is a crucial phenotypic trait of bamboo, significantly impacting its processing and utilization. Phyllostachys edulis ‘Tubaeformis’ (Shengyin Bamboo), a variety of Moso bamboo, exhibits drastically shortened internodes, making it a valuable ornamental bamboo species. We used PacBio single-molecule long-read sequencing and second-generation sequencing to identify genome-wide alternative splicing (AS) events in Moso bamboo and its dwarf mutant, Shengyin bamboo, and compared the differences between the two. Our sequencing data unveiled 139,539 AS events, with retained introns as the most prevalent events. A large number of genes were differentially alternatively spliced (DAS) between Moso bamboo and Shengyin bamboo, and genes related to RNA splicing were most significantly enriched. The high expression of SR isoforms in the 24th internode of Moso bamboo is likely the main factor leading to its greater number of alternative splicing events. Alternative splicing affects the functional domains of partial GRF, E2F, and NAM isoforms, leading to the loss of domains in some isoforms and enabling some isoforms to acquire new functional domains, and this phenomenon is more common in Shengyin bamboo. AS modifies the functional domains of certain GRF isoforms, frequently resulting in domain losses or endowing isoforms with novel domains, and this phenomenon is more common in Shengyin bamboo. We used PacBio single-molecule long-read sequencing and second-generation sequencing to identify genome-wide alternative splicing (AS) events in Moso bamboo and its dwarf mutant, Shengyin Bamboo and compared the differences between the two.
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