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将人工授精作为濒危鸟类物种迁地保护的有效工具加以实施。

Implementing artificial insemination as an effective tool for ex situ conservation of endangered avian species.

作者信息

Blanco J M, Wildt D E, Höfle U, Voelker W, Donoghue A M

机构信息

Centro de Estudios de Rapaces Ibéricas, Sevilleja de la Jara 45671 Toledo, Spain.

出版信息

Theriogenology. 2009 Jan 1;71(1):200-13. doi: 10.1016/j.theriogenology.2008.09.019. Epub 2008 Nov 11.

Abstract

Approximately 503 of the known species of birds are classified as 'endangered' or 'critical'. Captive propagation programs have proven useful in maintaining genetic diversity and restoring wild populations of certain species, including the Peregrine falcon, California condor and Whooping crane. Artificial insemination (AI) has the potential of solving problems inherent to reproductive management of small, closed populations of endangered birds, including dealing with demographic instability, physical and behavioral disabilities, sexual incompatibility, lack of synchrony, and need to maintain gene diversity. In this review, we address the necessary methods and factors that allow AI to be applied effectively to manage rare bird populations. It is clear that semen availability and quality are the greatest limiting factors to implementing consistently successful AI for birds. Behavioral sensitivity to animal handling and the ability to minimize stress in individual birds also are keys to success. Multiple, deep vaginal inseminations can improve fertility, particularly when semen quality is marginal. Laparoscopic methods of semen transfer also have produced fertile eggs. All of these practices leading to successful AI remain dependent on having adequate basic knowledge on female reproductive status, copulatory behavior, endocrine profiles and duration of fertility, especially as related to oviposition. The overall greatest challenge and highest priority is defining these normative traits, which are highly species-specific.

摘要

已知的鸟类物种中约有503种被归类为“濒危”或“极危”。圈养繁殖计划已被证明有助于维持遗传多样性,并恢复某些物种的野生种群,包括游隼、加州兀鹫和美洲鹤。人工授精(AI)有潜力解决濒危鸟类小型封闭种群繁殖管理中固有的问题,包括应对种群数量不稳定、身体和行为缺陷、性不相容、缺乏同步性以及维持基因多样性的需求。在本综述中,我们阐述了使人工授精有效应用于珍稀鸟类种群管理的必要方法和因素。显然,精液的可获得性和质量是在鸟类中持续成功实施人工授精的最大限制因素。对动物处理的行为敏感性以及将个体鸟类的应激降至最低的能力也是成功的关键。多次深部阴道授精可以提高受精率,尤其是在精液质量一般的情况下。腹腔镜精液移植方法也已产生可育卵。所有这些导致人工授精成功的做法仍然依赖于对雌性生殖状态、交配行为、内分泌特征和生育期持续时间有足够的基础知识,特别是与产卵相关的知识。总体而言,最大的挑战和最优先事项是确定这些高度物种特异性的规范特征。

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