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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >Thermotolerance and place memory in adult Drosophila are independent of natural variation at the foraging locus
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Thermotolerance and place memory in adult Drosophila are independent of natural variation at the foraging locus

机译:成人果蝇的耐热性和位置记忆与觅食地点的自然变异无关

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摘要

Natural polymorphisms at the foraging (for) gene influence several behaviors. However, it is seldom clear how different for alleles could be selected. In one case, Drosophila with the rover allele (for r ) have higher locomotor activity in the presence of food than animals with the sitter allele (for s ), suggesting a complementary feeding strategy. There are, in addition, differences between for r and for s Drosophila in some tests of short-term memory (for r animals generally perform at higher levels) and thermotolerance (for s larvae are more resistant to the effects of high-temperature). We asked whether there could be a direct compensating advantages in adult for s flies that could maintain the natural for variants. First, are adult for s flies more thermotolerant? Second, do for r flies have a higher short-term place memory? Third, as an alternative, might for s flies have higher place memory? Our results do not confirm these possibilities. Thus, a thermotolerance advantage of for s flies does not compensate for a potential for r short-term memory advantage; for r flies do not have a universal advantage in short-term memory; and for s flies do not have an advantage in place memory that could compensate for for r advantages in other learning contexts.
机译:觅食(for)基因的天然多态性影响几种行为。但是,很少清楚如何选择等位基因。在一种情况下,具有流动者等位基因(针对 r )的果蝇在存在食物时的运动能力高于具有固定等位基因(针对 s 的动物)的运动能力,这表明存在互补喂养策略。此外,在一些短期记忆测试中, r 和 s 果蝇之间存在差异(对于 r 动物通常在较高的水平)和耐热性(对于 s 的幼虫更耐高温。)我们问到 s 果蝇成虫是否具有直接的补偿优势,可以保持变体的天然性。首先, s 的成年蝇是否更耐高温?其次, r 蝇是否具有较高的短期位置记忆?第三,作为替代, s 的苍蝇是否可能具有更高的位置记忆?我们的结果并未证实这些可能性。因此, s 蝇的耐热性优势无法弥补 r 短期记忆优势的潜力。对于 r 来说,苍蝇在短期记忆中没有普遍的优势;对于 s 来说,苍蝇在位置记忆方面没有优势,在其他学习环境中,它可以弥补 r 的优势。

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