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部分乞食行为:后代信号早期进化的一个实证模型

Partial begging: an empirical model for the early evolution of offspring signalling.

作者信息

Smiseth Per T, Darwell Clive T, Moore Allen J

机构信息

School of Biological Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, UK.

出版信息

Proc Biol Sci. 2003 Sep 7;270(1526):1773-7. doi: 10.1098/rspb.2003.2444.

Abstract

Species where, from birth, the offspring feed themselves in addition to begging for food from the parents can be described as 'partially begging'. Such species provide a unique opportunity to examine the evolution of offspring begging from non-signalling offspring foraging strategies. We used the partially begging burying beetle Nicrophorus vespilloides to test specific hypotheses concerning the coexistence of begging and self-feeding. We first tested whether the cessation of larval begging coincided with an increase in the efficiency of self-feeding. As predicted, begging ceased when the efficiency of self-feeding reached the point where the larvae grew just as well without as with access to food provided by the parent. We next tested whether the transition to nutritional independence was under parental or offspring control. The parent did not change its behaviour towards the larvae over time, while the larvae changed their behaviour by reducing the time spent begging in the presence of the parent. Food allocation during the transition to nutritional independence was therefore under offspring control. Our results on partial begging provide a starting point for new theoretical models for the origin of begging. We suggest that these should be constructed as scramble-competition models because the offspring control food allocation.

摘要

从出生起,幼崽除了向父母乞食外还自行觅食的物种可被描述为“部分乞食”。这类物种提供了一个独特的机会,来研究从非信号性的幼崽觅食策略中衍生出的幼崽乞食行为的进化过程。我们利用部分乞食的埋葬虫尼可罗蜚蠊来检验关于乞食与自行觅食共存的特定假设。我们首先测试幼虫乞食行为的停止是否与自行觅食效率的提高同时发生。正如预测的那样,当自行觅食效率达到幼虫在有无父母提供食物的情况下生长状况相同的程度时,乞食行为停止了。接下来我们测试向营养独立的转变是由父母还是幼崽控制的。随着时间的推移,父母对幼虫的行为没有改变,而幼虫则通过减少在父母面前乞食的时间来改变自己的行为。因此,向营养独立转变过程中的食物分配是由幼崽控制的。我们关于部分乞食的研究结果为乞食行为起源的新理论模型提供了一个起点。我们建议这些模型应构建为争夺竞争模型,因为幼崽控制着食物分配。

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