Wildlife Biology Unit, School of Agriculture and Food Sciences, The University of Queensland, Gatton, Australia.
Academic Unit of Reproductive and Developmental Medicine, The University of Sheffield, Sheffield, UK.
Adv Exp Med Biol. 2019;1200:327-362. doi: 10.1007/978-3-030-23633-5_12.
The successful development and application of an assisted breeding program in any animal relies primarily on a thorough understanding of the fundamental reproductive biology (anatomy, physiology and behaviour) of the species in question. Surely, the ultimate goal and greatest hallmark of such a program is the efficacious establishment of a series of reliable techniques that facilitate the reproductive and genetic management of fragmented populations, both in captivity and in the wild. Such an achievement is all that more challenging when knowledge of the reproductive biology of that species is essentially rudimentary and without adequate models to compare to. Using the koala (Phascolarctos cinereus) as a case study, this chapter provides insights into the development of a concept that began as small undergraduate student project but that subsequently evolved into the first-ever successful artificial insemination of a marsupial. Apart from this historical perspective, we shall also provide a brief review of the current reproductive biology of the koala, discuss technical elements of current assisted breeding technology of this species, its application to the closely related wombat, and the potential role it might play in helping to conserve wild koala populations in the form of a live koala genome bank. There is little doubt that the unique reproductive biology and tractability of the koala has been a benefit rather than a hindrance to the success of artificial breeding in this species.
任何动物辅助繁殖计划的成功开发和应用都主要依赖于对所涉及物种的基本生殖生物学(解剖学、生理学和行为)的透彻理解。当然,这样的计划的最终目标和最大特点是有效地建立一系列可靠的技术,以促进圈养和野外的碎片化种群的生殖和遗传管理。当该物种的生殖生物学知识基本上是基础的,并且没有足够的模型可以与之比较时,实现这一目标就更加具有挑战性。本章以树袋熊(Phascolarctos cinereus)为例,深入探讨了一个概念的发展,该概念最初是一个小型本科生项目,但后来演变成了首例有袋动物的人工授精成功案例。除了这种历史视角外,我们还将简要回顾树袋熊目前的生殖生物学,讨论该物种当前辅助繁殖技术的技术要素,及其在密切相关的袋熊中的应用,以及它在建立活体树袋熊基因组库的形式下,在保护野生树袋熊种群方面可能发挥的作用。毫无疑问,树袋熊独特的生殖生物学和易处理性对该物种的人工繁殖成功是有益的,而不是阻碍。