首页> 美国卫生研究院文献>Ecology and Evolution >Pooled whole‐genome sequencing of interspecific chestnut (Castanea) hybrids reveals loci associated with differences in caching behavior of fox squirrels (Sciurus niger L.)
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Pooled whole‐genome sequencing of interspecific chestnut (Castanea) hybrids reveals loci associated with differences in caching behavior of fox squirrels (Sciurus niger L.)

机译:种间板栗(Castanea)杂种的全基因组混合测序揭示了与狐狸松鼠(Sciurus niger L.)的缓存行为差异相关的基因座

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摘要

Dispersal of seeds by scatter‐hoarding rodents is common among tropical and temperate tree species, including chestnuts in the genus Castanea. Backcrossed (BC) interspecific hybrid chestnuts exhibit wide variation in seed traits: as the parent species (Castanea dentata and C. mollissima) have distinct seed phenotypes and tend to be handled differently by seed dispersers, phenotypic variation in BC trees is likely due to inheritance of genes that have undergone divergent evolution in the parent species. To identify candidate genomic regions for interspecific differences in seed dispersal, we used tagged seeds to measure average dispersal distance for seeds of third‐generation BC chestnuts and sequenced pooled whole genomes of mother trees with contrasting seed dispersal: high caching rate/long distance; low caching rate/short distance; no caching. Candidate regions affecting seed dispersal were identified as loci with more C. mollissima alleles in the high caching rate/ long‐distance pool than expected by chance and observed in the other two pools. Functional annotations of candidate regions included predicted lipid metabolism, dormancy regulation, seed development, and carbohydrate metabolism genes. The results support the hypothesis that perception of seed dormancy is a predominant factor in squirrel caching decisions, and also indicate profitable directions for future work on the evolutionary genomics of trees and coevolved seed dispersers.
机译:在热带和温带树种中,包括散布在啮齿动物中的啮齿动物很常见,包括栗树中的栗子。回交(BC)种间杂种栗子的种子性状表现出广泛的变异:由于亲本种(Castanea dentata和C.mollissima)具有不同的种子表型,并且往往由种子分散剂处理,因此BC树的表型变异可能是由于遗传在亲本物种中经历了不同进化的基因。为了鉴定出种子传播中种间差异的候选基因组区域,我们使用标记种子来测量第三代BC栗子种子和母树的集合全基因组测序平均散布距离,种子散布形成对比:高速缓存/长距离;低缓存率/短距离;没有缓存。在高速缓存/长距离存储池中,影响种子传播的候选区域被鉴定为具有较高分枝杆菌等位基因的基因座,这比偶然发现的要多,在其他两个存储池中也观察到。候选区域的功能注释包括预测的脂质代谢,休眠调节,种子发育和碳水化合物代谢基因。该结果支持以下假设:种子休眠的感知是决定松鼠缓存的主要因素,并且还为树木和进化种子分散体的进化基因组学的未来工作指明了有益的方向。

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