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转座子反向重复序列在平衡玉米耐旱性和产量相关性状中的作用

The role of transposon inverted repeats in balancing drought tolerance and yield-related traits in maize.

作者信息

Sun Xiaopeng, Xiang Yanli, Dou Nannan, Zhang Hui, Pei Surui, Franco Arcadio Valdes, Menon Mitra, Monier Brandon, Ferebee Taylor, Liu Tao, Liu Sanyang, Gao Yuchi, Wang Jubin, Terzaghi William, Yan Jianbing, Hearne Sarah, Li Lin, Li Feng, Dai Mingqiu

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.

Hubei Hongshan Laboratory, Wuhan, China.

出版信息

Nat Biotechnol. 2023 Jan;41(1):120-127. doi: 10.1038/s41587-022-01470-4. Epub 2022 Oct 13.

Abstract

The genomic basis underlying the selection for environmental adaptation and yield-related traits in maize remains poorly understood. Here we carried out genome-wide profiling of the small RNA (sRNA) transcriptome (sRNAome) and transcriptome landscapes of a global maize diversity panel under dry and wet conditions and uncover dozens of environment-specific regulatory hotspots. Transgenic and molecular studies of Drought-Related Environment-specific Super eQTL Hotspot on chromosome 8 (DRESH8) and ZmMYBR38, a target of DRESH8-derived small interfering RNAs, revealed a transposable element-mediated inverted repeats (TE-IR)-derived sRNA- and gene-regulatory network that balances plant drought tolerance with yield-related traits. A genome-wide scan revealed that TE-IRs associate with drought response and yield-related traits that were positively selected and expanded during maize domestication. These results indicate that TE-IR-mediated posttranscriptional regulation is a key molecular mechanism underlying the tradeoff between crop environmental adaptation and yield-related traits, providing potential genomic targets for the breeding of crops with greater stress tolerance but uncompromised yield.

摘要

玉米中环境适应性选择和产量相关性状的基因组基础仍知之甚少。在此,我们对一个全球玉米多样性群体在干旱和湿润条件下的小RNA(sRNA)转录组(sRNAome)和转录组图谱进行了全基因组分析,并发现了数十个环境特异性调控热点。对8号染色体上与干旱相关的环境特异性超级eQTL热点(DRESH8)以及DRESH8衍生的小干扰RNA的靶标ZmMYBR38进行转基因和分子研究,揭示了一个由转座子介导的反向重复序列(TE-IR)衍生的sRNA和基因调控网络,该网络平衡了植物的耐旱性与产量相关性状。全基因组扫描显示,TE-IRs与干旱反应和产量相关性状相关,这些性状在玉米驯化过程中被正向选择并扩展。这些结果表明,TE-IR介导的转录后调控是作物环境适应性与产量相关性状之间权衡的关键分子机制,为培育具有更强抗逆性且产量不受影响的作物提供了潜在的基因组靶点。

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