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The locust foraging gene

机译:蝗虫觅食基因

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Our knowledge of how genes act on the nervous system in response to the environment to generate behavioral plasticity is limited. A number of recent advancements in this area concern food-related behaviors and a specific gene family called foraging (for), which encodes a cGMP-dependent protein kinase (PKG). The desert locust (Schistocerca gregaria) is notorious for its destructive feeding and long-term migratory behavior. Locust phase polyphenism is an extreme example of environmentally induced behavioral plasticity. In response to changes in population density, locusts dramatically alter their behavior, from solitary and relatively sedentary behavior to active aggregation and swarming. Very little is known about the molecular and genetic basis of this striking behavioral phenomenon. Here we initiated studies into the locust for gene by identifying, cloning, and studying expression of the gene in the locust brain. We determined the phylogenetic relationships between the locust PKG and other known PKG proteins in insects. FOR expression was found to be confined to neurons of the anterior midline of the brain, the pars intercerebralis. Our results suggest that differences in PKG enzyme activity are correlated to well-established phase-related behavioral differences. These results lay the groundwork for functional studies of the locust for gene and its possible relations to locust phase polyphenism. © 2010 Wiley Periodicals, Inc.
机译:我们对基因如何响应环境以产生行为可塑性的神经系统知识的了解是有限的。该领域的许多最新进展涉及与食物有关的行为和称为觅食的特定基因家族,该基因家族编码依赖cGMP的蛋白激酶(PKG)。沙漠蝗虫(Schistocerca gregaria)因破坏性食物和长期迁徙行为而臭名昭著。蝗虫相的多态性是环境诱导的行为可塑性的一个极端例子。为了应对人口密度的变化,蝗虫极大地改变了其行为,从孤独和相对久坐的行为到活跃的聚集和蜂群。对于这种惊人的行为现象的分子和遗传基础知之甚少。在这里,我们通过鉴定,克隆和研究该基因在蝗虫大脑中的表达,开始对蝗虫进行基因研究。我们确定了蝗虫PKG和昆虫中其他已知PKG蛋白之间的系统发育关系。发现FOR表达仅限于大脑前中线的神经元pars脑间。我们的结果表明,PKG酶活性的差异与公认的阶段相关行为差异相关。这些结果为蝗虫的基因功能研究及其与蝗虫相位多态性的可能关系奠定了基础。 ©2010 Wiley Periodicals,Inc.

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