Northrup Joseph M, Shafer Aaron B A, Anderson Charles R, Coltman David W, Wittemyer George
Department of Fish, Wildlife, and Conservation Biology, Colorado State University Fort Collins, CO, USA.
Department of Evolutionary Biology, Evolutionary Biology Centre, Uppsala University Uppsala, Sweden.
Evol Appl. 2014 Sep;7(8):937-48. doi: 10.1111/eva.12189. Epub 2014 Aug 28.
The relationship between genetic variation and phenotypic traits is fundamental to the study and management of natural populations. Such relationships often are investigated by assessing correlations between phenotypic traits and heterozygosity or genetic differentiation. Using an extensive data set compiled from free-ranging mule deer (Odocoileus hemionus), we combined genetic and ecological data to (i) examine correlations between genetic differentiation and migration timing, (ii) screen for mitochondrial haplotypes associated with migration timing, and (iii) test whether nuclear heterozygosity was associated with condition. Migration was related to genetic differentiation (more closely related individuals migrated closer in time) and mitochondrial haplogroup. Body fat was related to heterozygosity at two nuclear loci (with antagonistic patterns), one of which is situated near a known fat metabolism gene in mammals. Despite being focused on a widespread panmictic species, these findings revealed a link between genetic variation and important phenotypes at a fine scale. We hypothesize that these correlations are either the result of mixing refugial lineages or differential mitochondrial haplotypes influencing energetics. The maintenance of phenotypic diversity will be critical to enable the potential tracking of changing climatic conditions, and these correlates highlight the need to consider evolutionary mechanisms in management, even in widely distributed panmictic species.
遗传变异与表型性状之间的关系是自然种群研究与管理的基础。此类关系通常通过评估表型性状与杂合性或遗传分化之间的相关性来进行研究。我们利用从自由放养的骡鹿(Odocoileus hemionus)收集的大量数据集,将遗传数据与生态数据相结合,以(i)研究遗传分化与迁徙时间之间的相关性,(ii)筛选与迁徙时间相关的线粒体单倍型,以及(iii)测试核杂合性是否与身体状况相关。迁徙与遗传分化(亲缘关系越近的个体迁徙时间越接近)以及线粒体单倍群有关。体脂与两个核基因座的杂合性相关(呈现拮抗模式),其中一个基因座位于哺乳动物已知的脂肪代谢基因附近。尽管本研究聚焦于一个广泛分布的随机交配物种,但这些发现揭示了在精细尺度上遗传变异与重要表型之间的联系。我们推测这些相关性要么是混合避难谱系的结果,要么是不同线粒体单倍型影响能量代谢的结果。维持表型多样性对于潜在地追踪不断变化的气候条件至关重要,并且这些相关性凸显了在管理中考虑进化机制的必要性,即使是在广泛分布的随机交配物种中。