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The Genetic Basis of Smoltification-Related Traits in Oncorhynchus mykiss

机译:灰飞虱糖化相关性状的遗传基础

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摘要

The timing and propensity for migration between fresh- and seawater is a key theme in the diversity of life histories within the salmonid fishes. Across salmonid species, life-history strategies range from wholly freshwater-resident populations, to migratory and nonmigratory variation within populations, to populations and species that are primarily migratory. Despite the central theme of migration to the evolution of these fishes, the genetic architecture of migration-related processes is poorly understood. Using a genetic cross of clonal lines derived from migratory and nonmigratory life-history types of Onchorhynchus mykiss (steelhead and rainbow trout, respectively), we have dissected the genetic architecture of the complex physiological and morphological transformation that occurs immediately prior to seaward migration (termed smoltification). Quantitative trait loci (QTL) analyses were used to identify the number, effects, and genomic location of loci associated with smoltification-related traits, including growth and condition factor, body coloration, morphology, and osmoregulatory enzymes during the smoltification period. Genetic analyses revealed numerous QTL, but one locus in particular is associated with multiple traits in single and joint analyses. Dissecting the genetic architecture of this highly complex trait has profound implications for understanding the genetic and evolutionary basis of life-history diversity within and among migratory fishes.
机译:淡水和海水之间迁移的时机和倾向是鲑鱼生活史多样性中的一个关键主题。在整个鲑鱼物种中,生活史策略的范围从完全淡水居住的种群到种群内部的迁徙和非迁徙变异,再到主要是迁徙的种群和物种。尽管迁移是这些鱼类进化的中心主题,但对与迁移有关的过程的遗传结构知之甚少。利用源自迁移和非迁移性生活史的Onchorhynchus mykiss(分别为钢头和虹鳟)的克隆系的遗传杂交,我们解剖了在向海迁移之前即发生的复杂生理和形态转变的遗传结构。糖化)。定量性状基因座(QTL)分析用于鉴定与糖化相关性状相关的基因座的数量,作用和基因组位置,包括在糖化期间的生长和条件因子,身体色泽,形态和渗透调节酶。遗传分析揭示了许多QTL,但在单个分析和联合分析中,一个基因座尤其与多个性状相关。剖析这种高度复杂性状的遗传结构对于理解迁徙鱼类内部和之间的生活史多样性的遗传和进化基础具有深远的意义。

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