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鱼类中资产阶级、寄生性和合作性繁殖行为的演变

The evolution of bourgeois, parasitic, and cooperative reproductive behaviors in fishes.

作者信息

Taborsky M

机构信息

KLIVV, Austrian Academy of Sciences, Vienna.

出版信息

J Hered. 2001 Mar-Apr;92(2):100-10. doi: 10.1093/jhered/92.2.100.

Abstract

Among vertebrate classes, fishes exhibit by far the greatest variability in competitive and cooperative behaviors in male reproduction. Scramble competition between reproductive males is one possibility. Another possibility occurs when resources, mates, or locations can be monopolized, in which case males may invest in primary access to fertilizations by adopting a "bourgeois" strategy, or they may employ alternative mating tactics to evade the reproductive monopoly of other males. Adaptations in morphology, physiology, and behavior to bourgeois and alternative phenotypes are highly divergent. Here I review the functional characteristics that differ between bourgeois and parasitic phenotypes, and discuss the variability of alternative reproductive tactics at the levels of plasticity, determination, and selection. Examples will illustrate the importance of ecology, and will suggest that variation in reproductive tactics is largely adaptive. Behavioral solutions to competition for mates and fertilizations often involve agonistic behavior and conflict, but also cooperation among competitors (e.g., when subordinate males pay a price to bourgeois males for gaining access to fertilizable eggs). Application of molecular genetic tools has helped to uncover intricate sexual and social relationships in various fish species, including species that display some of the most complex reproductive and social patterns known among the vertebrates.

摘要

在脊椎动物类别中,鱼类在雄性繁殖的竞争和合作行为方面展现出迄今为止最大的变异性。生殖雄性之间的争夺竞争是一种可能性。另一种可能性是当资源、配偶或领地能够被垄断时,在这种情况下,雄性可能会通过采取“中产阶级”策略来投入主要精力获取受精机会,或者它们可能采用替代交配策略来规避其他雄性的繁殖垄断。在形态、生理和行为上对中产阶级和替代型表型的适应性差异极大。在此,我回顾了中产阶级和寄生型表型之间不同的功能特征,并讨论了替代繁殖策略在可塑性、决定性和选择层面的变异性。实例将阐明生态学的重要性,并表明繁殖策略的差异在很大程度上是适应性的。解决配偶和受精竞争的行为方式通常涉及争斗行为和冲突,但竞争者之间也存在合作(例如,当从属雄性为获得可受精卵向中产阶级雄性付出代价时)。分子遗传学工具的应用有助于揭示各种鱼类中复杂的性别和社会关系,包括那些展现出一些脊椎动物中已知最复杂繁殖和社会模式的物种。

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