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首页> 外文期刊>Molecular ecology >Genes underlying quantitative variation in ecologically important traits: PIF4 (PHYTOCHROME INTERACTING FACTOR 4) is associated with variation in internode length, flowering time, and fruit set in Arabidopsis thaliana
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Genes underlying quantitative variation in ecologically important traits: PIF4 (PHYTOCHROME INTERACTING FACTOR 4) is associated with variation in internode length, flowering time, and fruit set in Arabidopsis thaliana

机译:生态重要特征的数量变异基础的基因:PIF4(植物染色体相互作用因子4)与拟南芥中节间长度,开花时间和坐果的变异相关

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Association studies utilize the action of recombination over numerous generations to identify loci that underlie quantitative traits. We use a candidate-gene association approach, segregation analyses and analyses of local linkage disequilibrium (LD) to evaluate the potentially causal effects of molecular variation at PIF4 (PHYTOCROME INTERACTING FACTOR 4) on ecologically important traits in Arabidopsis thaliana. A preliminary analysis of sequence diversity in 14 natural genotypes revealed one intermediate-frequency replacement polymorphism at PIF4. A sample of 161 natural accessions was genotyped at PIF4 and screened for average length of early internodes, inflorescence length, days to flowering and flowering interval (days between bolting and flowering) under high- and low-density environments to test for genotype-phenotype associations. PIF4 was associated with early internode lengths, while the PIF4x treatment interaction was associated with flowering interval in the panel of 161 accessions. Further, in a set of recombinant inbred lines that segregate for the PIF4 polymorphism, nucleotide substitutions at PIF4 co-segregated with early internode lengths, days to flowering and fruit set, suggesting that cryptic population structure in the association-mapping panel and attendant LD with a physically distant locus do not account for the observed association. Finally, in a panel of pseudochromosomes from 20 re-sequenced genotypes, LD appeared to decay rapidly in the immediate vicinity of PIF4, suggesting that flanking loci contribute little to the observed association. In sum, the results suggest that PIF4 causally affects early internode lengths on the primary inflorescence, potentially via effects on reproductive timing and that these traits in turn affect fitness.
机译:关联研究利用了许多世代的重组作用,以鉴定构成定量特征基础的基因座。我们使用候选基因关联方法,分离分析和局部连锁不平衡(LD)的分析来评估PIF4(植物基因组相互作用因子4)上的分子变异对拟南芥生态重要性状的潜在因果关系。初步分析了14个自然基因型的序列多样性,揭示了PIF4处的一个中频置换多态性。在PIF4对161种自然种质进行了基因分型,并筛选了早节间的平均长度,花序长度,在高密度和低密度环境下的开花天数和开花间隔(抽bolt和开花之间的天数),以测试基因型与表型的关联。 PIF4与早期节间长度相关,而PIF4x处理相互作用与161种材料的开花间隔有关。此外,在针对PIF4多态性而分离的一组重组自交系中,PIF4处的核苷酸取代与节间长度,开花天数和果实结实共同分离,这表明关联映射面板和伴随的LD中的隐性种群结构与距离较远的地点不能解释观察到的关联。最后,在来自20个经过重新测序的基因型的一组伪染色体中,LD似乎在PIF4的附近迅速衰减,这表明侧翼基因座对观察到的关联几乎没有贡献。总之,这些结果表明,PIF4可能通过影响生殖时间而影响主花序的早期节间长度,而这些性状反过来又会影响适应性。

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