Data from: Genetic structuring among colonies of a pantropical seabird: Implication for subspecies validation and conservation
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Appendix S1 Table S1 Details of field researchers and licences under which
they took blood samples from white-tailed tropicbirds from populations in
the years of study Table S2 Morphometrics of 616 individual white-tailed
tropicbirds from 11 populations. Population codes are as described in
Table 1. Table S3 Raw microsatellite genotypes for 382 individual
White-tailed tropicbird from 13 populations. Population codes are as
described in Table 1 Table S4 Details of mtDNA sequences Table
S5 Tests of bottleneck (P-values for one-tailed Wilcoxon’s signed rank
test for heterozygosity excess) based on 10 microsatellites in 13
populations of Phaethon lepturus Table S6 Pairwise FST estimates based on
nuclear microsatellite variation (above diagonal), and ΦST estimates based
on mtDNA sequence (below diagonal) for 11 populations with sample sizes
>5 (‘Pop’s) of Phaethon lepturus (see Table 1 for population codes)
附录S1
表S1:野外研究人员详情,以及研究期间从各种群白尾热带鸟(Phaethon lepturus)采集血液样本所依据的许可文件
表S2:来自11个种群的616只个体白尾热带鸟的形态测量数据,种群代码详见表1
表S3:来自13个种群的382只个体白尾热带鸟的微卫星基因型原始数据,种群代码详见表1
表S4:线粒体DNA(mitochondrial DNA, mtDNA)序列详情
表S5:基于13个种群的白尾热带鸟(Phaethon lepturus)的10个微卫星位点,开展瓶颈效应检验的结果(基于杂合子过剩的单侧Wilcoxon符号秩检验的P值)
表S6:针对样本量>5的11个白尾热带鸟(Phaethon lepturus)种群(种群代码详见表1),基于核基因组微卫星变异计算的成对FST值(对角线以上),以及基于线粒体DNA序列变异计算的成对ΦST值(对角线以下)
提供机构:
Dryad
创建时间:
2020-07-31



