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Most species are not driven to extinction before genetic factors impact them

机译:在遗传因素影响它们之前,大多数物种没有被灭绝

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There is controversy concerning the role of genetic factors in species extinctions. Many authors have asserted that species are usually driven to extinction before genetic factors have time to impact them, but few studies have seriously addressed this issue. If this assertion is true, there will be little difference in genetic diversity between threatened and taxonomically related nonthreatened species. We compared average heterozygosities in 170 threatened taxa with those in taxonomically related nonthreatened taxa in a comprehensive metaanalysis. Heterozygosity was lower in threatened taxa in 77% of comparisons, a highly significant departure from the predictions of the no genetic impact hypothesis. Heterozygosity was on average 35% lower (median 40%) in threatened taxa than in related nonthreatened ones. These differences in heterozygosity indicate lowered evolutionary potential, compromised reproductive fitness, and elevated extinction risk in the wild. Independent evidence from stochastic computer projections has demonstrated that inbreeding depression elevates extinction risk for threatened species in natural habitats when all other threatening processes are included in the models. Thus, most taxa are not driven to extinction before genetic factors affect them adversely.
机译:关于遗传因素在物种灭绝中的作用存在争议。许多作者断言,通常在遗传因素没有时间影响物种之前,物种就已濒临灭绝,但很少有研究认真地解决这个问题。如果这种说法是正确的,则受威胁物种和与分类相关的非受威胁物种之间的遗传多样性几乎没有差异。在全面的荟萃分析中,我们比较了170个受威胁的分类单元和与分类学相关的非受威胁的分类单元的平均杂合度。在有威胁的生物分类中,杂合度较低,为77%,与无遗传影响假说的预测高度不同。受威胁的分类单元的杂合度平均比未受威胁的分类单元低35%(中位数为40%)。这些杂合性的差异表明在野生环境中进化潜能降低,生殖适应性降低和灭绝风险增加。来自随机计算机预测的独立证据表明,当模型中包括所有其他威胁过程时,近交抑制会增加自然栖息地中受威胁物种的灭绝风险。因此,在遗传因素对其造成不利影响之前,大多数分类单元都不会灭绝。

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