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Alternative splicing complexity contributes to genetic improvement of drought resistance in the rice maintainer HuHan2B

机译:剪接的复杂性有助于维持水稻基因HuHan2B的抗旱性遗传改良

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摘要

Water-saving and drought-resistantce rice (WDR) breeding practices have greatly increased grain yield and drought resistance. To study the genetic basis of adaptation to drought, transcriptome sequences from the WDR maintainer line HuHan2B and the recurrent parent HanFengB were analyzed for alternative splicing (AS) complexity. Intron retention, the dominant AS type, accounted for 42% of the observed AS events. Differential expression analysis revealed transcripts were preferentially expressed in different varieties and conditions. Based on gene ontology predictions, the biological functions of drought-induced transcripts were significantly enriched in genes involved in transcription regulation, chloroplast components and response to abiotic stimulus in HuHan2B, whereas developmental processes for reproduction were primarily enriched in HanFengB. The regulatory network of transcription factors was driven by cohorts of transcript splicing targets, resulting in more diversified regulatory relationships due to AS complexity than in our previous findings. Moreover, several genes were validated to accumulate novel splicing transcripts in a drought-induced manner. Together, these results suggest that HuHan2B and HanFengB share similar AS features but that a subset of genes with increased levels of AS involved in transcription regulatory networks may contribute an additional level of control for genetic improvement of drought resistance in rice maintainer HuHan2B through breeding.
机译:节水和抗旱水稻育种实践大大提高了谷物产量和抗旱性。为了研究适应干旱的遗传基础,分析了WDR维持系HuHan2B和轮回亲本HanFengB的转录组序列的可变剪接(AS)复杂性。内含子保留(占主导地位的AS类型)占观察到的AS事件的42%。差异表达分析表明,转录本优先在不同的品种和条件下表达。根据基因本体论的预测,HuHan2B中干旱诱导的转录本的生物学功能显着丰富于转录调控,叶绿体成分和对非生物刺激的响应的基因,而生殖的发育过程主要在HanFengB中丰富。转录因子的调控网络是由转录剪接靶群驱动的,由于AS的复杂性,其调控关系比我们以前的发现更加多样化。此外,验证了几个基因以干旱诱导的方式积累新的剪接转录本。总之,这些结果表明,HuHan2B和HanFengB具有相似的AS特征,但是参与转录调控网络的AS水平升高的基因的一个子集可能通过育种为水稻维持者HuHan2B的抗旱性遗传改良提供了更高水平的控制。

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