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生殖技术在遗传资源保护中的应用。

Application of Reproduction Technologies to the Conservation of Genetic Resources.

作者信息

Santiago Enrique, Caballero Armando

机构信息

Departamento de Biología Funcional, Facultad de Biología, Universidad de Oviedo, 33071 Oviedo, Spain.

Departamento de Bioquímica, Genética e Inmunología, Facultad de Ciencias, Universidad de Vigo, 36200 Vigo, Spain, email

出版信息

Conserv Biol. 2000 Dec 18;14(6):1831-1836. doi: 10.1111/j.1523-1739.2000.99448.x.

Abstract

Maintaining the levels of genetic variability in captive populations of endangered species is an important objective of conservation biology. Because of the generally low sizes of captive populations, genetic drift is the main cause of loss of diversity. Several simple management rules, such as equalization of contributions from parents to the next generation, are recommended for minimizing genetic drift, but it cannot be removed completely because of the unavoidable random segregation of heterozygotes. Recent advances in reproductive technology, particularly developed for mammals, are now making a reality of the possibility of using more than one cell from a single meiosis in reproduction. With this technology it is possible to reduce or even completely cancel the genetic drift caused by segregation of heterozygotes. We evaluated the theoretical benefits of the use of such technologies to conservation biology. The effective population size can be increased enormously and, consequently, the amount of drift can be greatly reduced if manipulations in reproduction are made.

摘要

维持濒危物种圈养种群的遗传变异水平是保护生物学的一个重要目标。由于圈养种群规模通常较小,遗传漂变是多样性丧失的主要原因。为了尽量减少遗传漂变,推荐了一些简单的管理规则,比如使亲代对下一代的贡献均等化,但由于杂合子不可避免的随机分离,遗传漂变无法完全消除。生殖技术的最新进展,特别是专门为哺乳动物开发的技术,现在正使在繁殖中使用来自一次减数分裂的多个细胞成为可能。有了这项技术,就有可能减少甚至完全消除由杂合子分离引起的遗传漂变。我们评估了使用此类技术对保护生物学的理论益处。如果在繁殖中进行操作,有效种群规模可以大幅增加,因此,漂变的量可以大大减少。

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