Higher offspring mortality in deer mice (Peromyscus maniculatus bairdii) that spontaneously present with large nest building behaviour

IF 1.3 4区 生物学 Q4 BEHAVIORAL SCIENCES
Heike Stoppel , Brian H. Harvey , De Wet Wolmarans
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Abstract

Nesting is a normal, evolutionary conserved rodent behavioural phenotype that is expressed for purposes of breeding, safety, and thermal regulation. Further, nesting is commonly assessed as marker of overall rodent health and wellbeing, with poorer nesting performance generally proposed to resemble a worse state of health. Deer mice can be bidirectionally separated with 30 % of mice presenting with excessively large nesting behaviour (LNB). All laboratory-housed deer mice are exposed to identical environmental conditions. Thus, the functional purpose of LNB remains unknown. Considering the evolutionary functions of nesting, we hypothesized that LNB will be related to an inflated drive to breed and nurse offspring. After breeding two generations of offspring from six ‘normal’ nesting (NNB) and seven LNB expressing pairs, our data showed that while as fertile as NNB expressing pairs, offspring survival of LNB mice were notably worse (67.9 % vs. 98.3 %). In conclusion, variance in nesting behaviour should be considered when animal health and wellbeing is considered, since it may point to underlying biobehavioural perturbations.

自发出现大量筑巢行为的鹿鼠(Peromyscus maniculatus bairdii)后代死亡率较高。
筑巢是一种正常的、进化保守的啮齿动物行为表型,其目的是为了繁殖、安全和热调节。此外,筑巢通常被评估为啮齿动物整体健康和福祉的标志,一般认为筑巢表现较差的啮齿动物健康状况较差。鹿鼠可能会出现双向分离,30%的鹿鼠会出现过大的筑巢行为(LNB)。所有实验室饲养的鹿小鼠都暴露在相同的环境条件下。因此,LNB 的功能性目的仍然未知。考虑到筑巢的进化功能,我们假设LNB与繁殖和哺育后代的驱动力膨胀有关。在对六对 "正常 "筑巢(NNB)小鼠和七对表达 LNB 的小鼠繁殖了两代后代后,我们的数据显示,虽然 LNB 小鼠与表达 NNB 的小鼠一样具有繁殖能力,但其后代的存活率却明显低于 NNB 小鼠(67.9% 对 98.3%)。总之,在考虑动物的健康和福利时,应该考虑筑巢行为的差异,因为它可能指向潜在的生物行为干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Behavioural Processes
Behavioural Processes 生物-动物学
CiteScore
2.70
自引率
7.70%
发文量
144
审稿时长
4-8 weeks
期刊介绍: Behavioural Processes is dedicated to the publication of high-quality original research on animal behaviour from any theoretical perspective. It welcomes contributions that consider animal behaviour from behavioural analytic, cognitive, ethological, ecological and evolutionary points of view. This list is not intended to be exhaustive, and papers that integrate theory and methodology across disciplines are particularly welcome.
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