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DNA Sequence Variation and Selection of Tag Single-Nucleotide Polymorphisms at Candidate Genes for Drought-Stress Response in Pinus taeda L.

机译:taeda L.干旱胁迫响应候选基因的DNA序列变异和标签单核苷酸多态性的选择

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摘要

Genetic association studies are rapidly becoming the experimental approach of choice to dissect complex traits, including tolerance to drought stress, which is the most common cause of mortality and yield losses in forest trees. Optimization of association mapping requires knowledge of the patterns of nucleotide diversity and linkage disequilibrium and the selection of suitable polymorphisms for genotyping. Moreover, standard neutrality tests applied to DNA sequence variation data can be used to select candidate genes or amino acid sites that are putatively under selection for association mapping. In this article, we study the pattern of polymorphism of 18 candidate genes for drought-stress response in Pinus taeda L., an important tree crop. Data analyses based on a set of 21 putatively neutral nuclear microsatellites did not show population genetic structure or genomewide departures from neutrality. Candidate genes had moderate average nucleotide diversity at silent sites (πsil = 0.00853), varying 100-fold among single genes. The level of within-gene LD was low, with an average pairwise r2 of 0.30, decaying rapidly from ∼0.50 to ∼0.20 at 800 bp. No apparent LD among genes was found. A selective sweep may have occurred at the early-response-to-drought-3 (erd3) gene, although population expansion can also explain our results and evidence for selection was not conclusive. One other gene, ccoaomt-1, a methylating enzyme involved in lignification, showed dimorphism (i.e., two highly divergent haplotype lineages at equal frequency), which is commonly associated with the long-term action of balancing selection. Finally, a set of haplotype-tagging SNPs (htSNPs) was selected. Using htSNPs, a reduction of genotyping effort of ∼30–40%, while sampling most common allelic variants, can be gained in our ongoing association studies for drought tolerance in pine.
机译:遗传关联研究正迅速成为剖析复杂性状(包括对干旱胁迫的耐受性)的首选实验方法,干旱性胁迫是造成林木死亡和产量损失的最常见原因。关联图的优化需要了解核苷酸多样性和连锁不平衡的模式,以及选择合适的多态性进行基因分型。此外,应用于DNA序列变异数据的标准中立性测试可以用来选择候选基因或氨基酸位点,这些基因或氨基酸位点可能正处于选择之下,用于关联作图。在这篇文章中,我们研究了重要的树种— Pinus taeda L.的18个干旱胁迫响应候选基因的多态性模式。基于一组21个假定的中性核微卫星的数据分析未显示种群遗传结构或全基因组偏离中性。候选基因在沉默位点具有中等的平均核苷酸多样性(πsil= 0.00853),在单个基因中变化了100倍。基因内LD的水平较低,平均成对r 2 为0.30,在800 bp时从约0.50迅速衰减至约0.20。在基因中未发现明显的LD。尽管种群扩展也可以解释我们的结果,而选择证据尚无定论,但对干旱早期反应3(erd3)基因可能发生了选择性清除。另一个基因ccoaomt-1是一种参与木质化的甲基化酶,显示出双态性(即,两个等分频率的高度趋异的单倍体谱系),通常与平衡选择的长期作用有关。最后,选择了一组单倍型标记SNP(htSNP)。使用htSNPs,在对最常见的等位基因变异进行采样的同时,可以将基因分型工作量减少约30-40%,这可以通过我们正在进行的松树耐旱性关联研究获得。

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