哪有情可长
(2025-01-31 20:39):
#paper Genomic investigation of 18,421 lines reveals the genetic architecture of rice. Science 5 july 2024, DOI: 10.1126/science.adm8762](https://doi.org/10.1126/science.adm8762. 现在植物育种改良的一种方法是挖掘现有的自然变异,然后评估该变异类型对育种如产量、株高、抗性等方面的影响,后续将该自然变异通过构建群体引入,查看其作用。而一般文章中的自然变异大多数都是单个性状进行分析,后续利用分子湿实验进行验证,但是大部分性状是受多基因控制的数量性状,有时候变化的牵一发动全身,有时候是变了会有替补进行补给,所以对于基因和性状之间的复杂关系如何通过构建群体来鉴定,如何构建水稻一本基因自然变异手册对于育种改良具有重要意义。该文章基于大规模永久群体 (18K-rice) 和整合基因组学方法,构建了高质量的水稻遗传结构图谱。还开发了一种名为 RiceG2G(Rice GWAS to Gene)的整合基因组学方法,以系统地优先排序性状相关位点的因果基因和变异,类似于人类 GWAS 中实施的方法。RiceG2G 整合了遗传关联、基因注释、转录组学、功能基因组学和有害变异,并为每个候选基因生成一个评分。后续对这个方法找了两个基因验证的有效性。此外还评估了每个性状的上位性,还构建了基因互作网络和上位性互作图谱。
Science,
2024-7-5.
DOI: 10.1126/science.adm8762
Genomic investigation of 18,421 lines reveals the genetic architecture of rice
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Abstract:
Understanding how numerous quantitative trait loci (QTL) shape phenotypic variation is an important question in genetics. To address this, we established a permanent population of 18,421 (18K) rice lines with reduced population structure. We generated reference-level genome assemblies of the founders and genotyped all 18K-rice lines through whole-genome sequencing. Through high-resolution mapping, 96 high-quality candidate genes contributing to variation in 16 traits were identified, including OsMADS22 and OsFTL1 verified as causal genes for panicle number and heading date, respectively. We identified epistatic QTL pairs and constructed a genetic interaction network with 19 genes serving as hubs. Overall, 170 masking epistasis pairs were characterized, serving as an important factor contributing to genetic background effects across diverse varieties. The work provides a basis to guide grain yield and quality improvements in rice.
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