Hereditary nature of death-feigning frequency in a parasitoid wasp Heterospilus prosopidis using sib analysis.

IF 2.1 3区 生物学 Q3 ECOLOGY Journal of Evolutionary Biology Pub Date : 2024-08-01 DOI:10.1093/jeb/voae079
Haruna Fujioka, Takahisa Miyatake, Yusaku Ohkubo, Masakazu Shimada
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Abstract

Death feigning, a state of immobility observed in many animals in response to external stimuli, is an anti-predator behaviour. Although previous studies showed that death-feigning behaviours are quantitative genetic traits, the knowledge of the heritable basis of death-feigning behaviour is lacking. To investigate the heritable basis of death-feigning behaviour, we used 3 laboratory strains of a braconid parasitoid wasp, Heterospilus prosopidis. The heritable basis using half-sib analysis, and the effects of different geographical backgrounds, rearing conditions in the laboratory, and host age were evaluated. The results of the half-sib analysis showed that the frequency of death feigning varied among sires, suggesting a certain extent of additive genetic variance. Also, the frequency of death feigning varied between geographical backgrounds and among strains. Death-feigning frequency was not affected by the age of the host. Our findings highlight the importance of genetic factors underlying the basis of the death-feigning behaviour and provide support for the genetic alterations of traits from the perspective of evolution in various animal species.

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利用兄弟姐妹分析寄生蜂 Heterospilus prosopidis 死亡信号频率的遗传性质。
佯死是许多动物对外界刺激做出反应时的一种不动状态,是一种反捕食者行为。尽管之前的研究表明佯死行为是一种数量遗传性状,但对佯死行为的遗传基础还缺乏了解。为了研究惧死行为的遗传基础,我们使用了三种腕足动物寄生蜂 Heterospilus prosopidis 的实验室品系。我们利用半同父异母分析法评估了其遗传基础,并评估了不同地理背景、实验室饲养条件和寄主年龄的影响。半同父异母分析结果表明,佯死的频率在不同父本之间存在差异,表明存在一定程度的加性遗传变异。此外,不同地理背景和不同品系的佯死频率也不相同。佯死频率不受宿主年龄的影响。我们的研究结果凸显了遗传因素在佯死行为基础上的重要性,并从动物物种进化的角度为性状的遗传改变提供了支持。
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来源期刊
Journal of Evolutionary Biology
Journal of Evolutionary Biology 生物-进化生物学
CiteScore
4.20
自引率
4.80%
发文量
152
审稿时长
3-6 weeks
期刊介绍: It covers both micro- and macro-evolution of all types of organisms. The aim of the Journal is to integrate perspectives across molecular and microbial evolution, behaviour, genetics, ecology, life histories, development, palaeontology, systematics and morphology.
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