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Natural variation in food acquisition mediated via a Drosophila cGMP-dependent protein kinase

机译:果蝇cGMP依赖性蛋白激酶介导的食物获取的自然变化

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In natural environments where food abundance and quality can change drastically over time, animals must continuously alter their food acquisition strategies. Although genetic variation contributes to this plasticity, the specific genes involved and their interactions with the environment are poorly understood. Here we report that natural variation in the Drosophila gene, foraging (for), which encodes a cGMP-dependent protein kinase (PKG), affects larval food acquisition in an environmentally dependent fashion. When food is plentiful, the wild-type rover (for(R)) allele confers lower food intake and higher glucose absorption than both the wild-type sitter (for(s)) allele and the mutant for(s2) allele. When food is scarce, for(R), for(s) and for(s2) larvae increase food intake to a common maximal level, but for(R) larvae retain their increased absorption efficiency. Changes in for expression can induce corrective behavioral modifications in response to food deprivation. When reared in environments with low food levels, for(R) larvae have higher survivorship and faster development than for(s) and for(s2) larvae. Together, these results show that natural variation in for has far reaching implications affecting a suite of phenotypes involved in the regulation of food acquisition.
机译:在自然环境中,食物的丰度和质量会随着时间发生急剧变化,因此动物必须不断改变其食物获取策略。尽管遗传变异有助于这种可塑性,但对涉及的特定基因及其与环境的相互作用了解甚少。在这里我们报告果蝇基因的自然变异,觅食(for),其编码依赖cGMP的蛋白激酶(PKG),以环境依赖性的方式影响幼虫的食物获取。当食物丰富时,野生型流浪者(for)等位基因比野生型保育者(for)等位基因和突变体(s2)等位基因都具有更低的食物摄入量和更高的葡萄糖吸收率。当食物匮乏时,for,s和for(s2)幼虫会将食物摄入量增加到一个共同的最大水平,但是for(R)幼虫保持其增加的吸收效率。表达的改变可引起对食物缺乏的矫正行为改变。当在食物水平低的环境中饲养时,与幼虫和幼虫相比,幼虫具有更高的存活率和更快的发育。总之,这些结果表明的自然变化对影响食物获取调控的一系列表型具有深远的影响。

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