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果蝇及其寄生蜂抗性和毒力进化中的地理模式。

Geographic Patterns in the Evolution of Resistance and Virulence in Drosophila and Its Parasitoids.

作者信息

Kraaijeveld A R, Godfray H C J

出版信息

Am Nat. 1999 May;153(S5):S61-S74. doi: 10.1086/303212.

Abstract

Many insects are attacked by internal parasitoids against which they mount a largely cellular immunological defense. The resistance of a host and the virulence of a parasitoid determine which species survives after parasitism. Drosophila is parasitized by several hymenopterous parasitoids, especially those in the genera Asobara and Leptopilina. Geographic patterns have been found in parasitoid virulence and host resistance, the clearest of which is a cline in Asobara tabida virulence from the north (low) to the south (high) of Europe. Drosophila melanogaster resistance is highest in central-southern Europe and lower elsewhere. We review and interpret these patterns in the light of recent experimental and theoretical studies of the evolution and coevolution of these traits. We find no evidence for genotype-specific virulence and defense, which makes "Red Queen"-type coevolution unlikely. The most important explanation for the patterns is geographic differences in host-parasitoid community structure. Asobara tabida virulence is positively correlated with the resistance of its main hosts, and there is more limited evidence that D. melanogaster resistance is influenced by the virulence of its parasitoids. We critically appraise whether the evidence available so far supports a coevolutionary explanation for the levels of these traits.

摘要

许多昆虫会受到体内寄生蜂的攻击,对此它们主要通过细胞免疫防御来应对。宿主的抗性和寄生蜂的毒力决定了寄生后哪些物种能够存活。果蝇会被几种膜翅目寄生蜂寄生,尤其是阿索巴属(Asobara)和细蜂属(Leptopilina)的寄生蜂。在寄生蜂毒力和宿主抗性方面已发现地理分布模式,其中最明显的是欧洲阿索巴果蝇(Asobara tabida)的毒力从北(低)到南(高)呈渐变群分布。黑腹果蝇(Drosophila melanogaster)的抗性在欧洲中南部最高,在其他地方较低。我们根据这些性状进化和协同进化的最新实验和理论研究来回顾和解读这些模式。我们没有发现基因型特异性毒力和防御的证据,这使得“红皇后”式协同进化不太可能。对这些模式最重要的解释是宿主 - 寄生蜂群落结构的地理差异。阿索巴果蝇的毒力与其主要宿主的抗性呈正相关,并且有更有限的证据表明黑腹果蝇的抗性受到其寄生蜂毒力的影响。我们批判性地评估了目前可用的证据是否支持对这些性状水平的协同进化解释。

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