Gene-environment interactions at the foraging locus of Drosophila

In&Vertebrates Pub Date : 2021-12-02 DOI:10.52732/torh8261
S. Benmaamar, B. Brembs
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Abstract

Environmental variability during the development of an organism has known impacts on the expression of certain behavioural patterns. We used the fruit fly Drosophila melanogaster to investigate how different environmental conditions interact with the allelic variants of rover (forR) and sitter (fors) at the foraging locus to affect food-related behaviour of larvae. We discovered that larval density and nutrient availability were key environmental factors affecting the larval behaviour during early development. High larval density decreased the tendency of rovers to leave a food patch and reduced their travelled path lengths, such that rovers and sitters showed no more significant differences regarding their behaviour. Similar results were obtained when starving the larvae. Furthermore, cutting the availability only of specific nutrients such as sugar, fat or protein during development all affected larval foraging behaviour and locomotion.
果蝇觅食位点的基因-环境相互作用
生物发育过程中的环境变化对某些行为模式的表达有已知的影响。本研究以黑腹果蝇为研究对象,研究了不同环境条件下觅食位点的流浪者(rover)和坐位者(sitter)等位基因变异对幼虫食物相关行为的影响。我们发现,幼虫密度和养分供应是影响幼虫发育早期行为的关键环境因素。高的幼虫密度降低了游览者离开食物区域的倾向,并缩短了它们行走的路径长度,因此游览者和保姆在行为上没有更大的差异。当幼虫挨饿时,也得到了类似的结果。此外,在发育过程中只减少特定营养物质(如糖、脂肪或蛋白质)的可用性,都会影响幼虫的觅食行为和运动。
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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