哪有情可长
(2025-08-31 21:22):
#paper Regulatory controls of duplicated gene expression during fiber development in allotetraploid cotton, Nature Genetics, 16 October 2023, 10.1038/s41588-023-01530-8.对376种不同的棉花种质进行基因组重测序和转录组的五个时间点的转录组测序,其中转录组数据发现不同亚基因组之间的同源基因在至少一个时间点表现出偏倚。后续又利用该数据进行鉴定顺式和反式调控变异,构建了eQTL图谱。后续利用该图谱鉴定出控制纤维相关的基因。36个基因模块组成的1,258个基因,这些基因控制着纤维不同时期的发育,并揭鉴定出控制这些基因相对于亚基因组同源基因的分区表达的基因元件。与纤维质量相关的同源基因中,只有30%的基因在栽培品种中表现出表型上有利的等位基因聚集,这凸显了亚基因组在纤维改良中的附加潜力。后续对这基因模块对育种中的利用做了一个验证。
Nature Genetics,
2023-11.
DOI: 10.1038/s41588-023-01530-8
Regulatory controls of duplicated gene expression during fiber development in allotetraploid cotton
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Abstract:
AbstractPolyploidy complicates transcriptional regulation and increases phenotypic diversity in organisms. The dynamics of genetic regulation of gene expression between coresident subgenomes in polyploids remains to be understood. Here we document the genetic regulation of fiber development in allotetraploid cotton Gossypium hirsutum by sequencing 376 genomes and 2,215 time-series transcriptomes. We characterize 1,258 genes comprising 36 genetic modules that control staged fiber development and uncover genetic components governing their partitioned expression relative to subgenomic duplicated genes (homoeologs). Only about 30% of fiber quality-related homoeologs show phenotypically favorable allele aggregation in cultivars, highlighting the potential for subgenome additivity in fiber improvement. We envision a genome-enabled breeding strategy, with particular attention to 48 favorable alleles related to fiber phenotypes that have been subjected to purifying selection during domestication. Our work delineates the dynamics of gene regulation during fiber development and highlights the potential of subgenomic coordination underpinning phenotypes in polyploid plants.
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