近亲繁殖抑郁症
生物扩散
生物
近亲繁殖
圈养繁殖
犀牛
濒危物种
生态学
人口规模小
遗传多样性
保护遗传学
动物
遗传负荷
栖息地
人口
人口学
微卫星
遗传学
等位基因
基因
社会学
作者
Ronald V. K. Mellya,J. Grant C. Hopcraft,William Mwakilema,Ernest Eblate,Simon Mduma,Bakari Mnaya,Idrissa S. Chuma,Emmanuel S. Macha,Dickson Wambura,Robert Fyumagwa,Elizabeth Kilbride,Barbara K. Mable,Anubhab Khan
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2023-06-29
被引量:1
标识
DOI:10.1101/2023.06.28.546899
摘要
Abstract Due to ever increasing anthropogenic impacts, many species survive only in small and isolated populations. Active conservation management to reduce extinction risk includes: increasing habitat connectivity; translocations from captive populations; or intense surveillance of highly protected closed populations. The fitness of individuals born under these scenarios may vary due to differences in selection pressures. However, the genetic impacts of such strategies are rarely assessed. Using whole genome sequences from cohorts of the critically endangered eastern black rhinoceros as a model, we compare the consequences of past conservation efforts. We find that offspring of individuals that had either dispersed from native populations (F ROH>100Kb = 0.13) or translocated from captive populations (F ROH>100Kb = 0.08) showed lower inbreeding compared to closed populations (F ROH>100Kb = 0.17). However, the frequency of highly deleterious mutations was higher for offspring resulting from translocation compared to the other groups and this load was sheltered by higher heterozygosity. This could increase risks of inbreeding depression if captive founders subsequently inbreed after translocation. In contrast, native dispersers reduced the negative effects of inbreeding without compromising the benefits of past purging of deleterious mutations. Our study highlights the importance of natural dispersal and reiterates the importance of maintaining habitat corridors between populations.
科研通智能强力驱动
Strongly Powered by AbleSci AI