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测试传粉榕小蜂 Platyscapa awekei 中兼性性别比例调整的模型。

Testing models of facultative sex ratio adjustment in the pollinating fig wasp Platyscapa awekei.

机构信息

Department of Genetics, University of Pretoria, Pretoria 0002, South Africa.

出版信息

Evolution. 2011 Jan;65(1):203-19. doi: 10.1111/j.1558-5646.2010.01116.x. Epub 2010 Sep 29.

Abstract

Female hymenoptera are renowned for their ability to adjust offspring sex ratio to local mate competition. When two females share a patch, they frequently produce clutches that differ in size, the female with the larger clutch optimally producing a more female-biased sex ratio and vice versa. Females can base their sex allocation on their own clutch size only ("self-knowledge") or on both females' clutch sizes ("complete knowledge"). Few studies have genotyped offspring so that each mother's contribution can be considered separately while none has found that both sources of information are used simultaneously. We genotyped 2489 wasps from 28 figs and assigned their maternity to one of the two foundress females. We argue that likelihood is a very convenient method to compare alternative models, while fitness calculations help to appreciate the cost of maladaptation. We find that the pollinating fig wasp Platyscapa awekei simultaneously uses its own as well as the other females clutch size in allocating sex. Indeed, the complete knowledge model explains the data 36 times better than the self-knowledge model. However, large clutches contained fewer males than the optimal predictions leading to a median selection coefficient of 0.01.

摘要

膜翅目昆虫的雌性以其能够根据当地的配偶竞争调整后代的性别比例而闻名。当两只雌性共享一个区域时,它们通常会产下大小不同的卵,其中拥有较大卵的雌性会产生更偏向雌性的性别比例,反之亦然。雌性可以根据自己的卵数进行性别分配(“自我认知”),也可以根据两只雌性的卵数进行分配(“完全认知”)。很少有研究对后代进行基因分型,以便可以分别考虑每个母亲的贡献,而没有研究发现这两种信息来源同时被使用。我们对来自 28 个榕果的 2489 只榕小蜂进行了基因分型,并将它们的母性分配给了两个创始雌性之一。我们认为,似然性是一种非常方便的方法来比较替代模型,而适应度计算有助于理解适应不良的代价。我们发现,传粉榕小蜂 Platyscapa awekei 同时使用自己和其他雌性的卵数来分配性别。实际上,完整知识模型比自我认知模型解释数据的能力强 36 倍。然而,大卵中包含的雄性数量少于最佳预测值,导致中位数选择系数为 0.01。

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