Mapping candidate genes for Drosophila melanogaster resistance to the parasitoid wasp Leptopilina boulardi.

M Hita, E Espagne, F Lemeunier, L Pascual, Y Carton, G Periquet, M Poirie
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引用次数: 24

Abstract

Drosophila melanogaster resistance against the parasitoid wasp Leptopilina boulardi is under the control of a single gene (Rlb), with two alleles, the resistant one being dominant. Using strains bearing deletions, we previously demonstrated that the 55E2-E6; 55F3 region on chromosome 2R is involved in the resistance phenomenon. In this paper, we first restricted the Rlb containing region by mapping at the molecular level the breakpoints of the Df(2R)Pc66, Df(2R)P34 and Df(2R)Pc4 deficiencies, using both chromosomal in situ hybridization and Southern analyses. The resistance gene was localized in a 100 kb fragment, predicted to contain about 10 different genes. Male recombination genetic experiments were then performed, leading to identification of two possible candidates for the Rlb gene. Potential involvement of one of this genes, edl/mae, is discussed.
黑腹果蝇对疏寄生蜂抗性候选基因定位。
黑腹果蝇(Drosophila melanogaster)对疏寄生蜂(Leptopilina boulardi)的抗性受单基因(Rlb)控制,有两个等位基因,抗性基因占显性。使用承载缺失的应变,我们先前证明55E2-E6;染色体2R上的55F3区参与了抗性现象。在本文中,我们首先利用染色体原位杂交和Southern分析,在分子水平上定位Df(2R)Pc66、Df(2R)P34和Df(2R)Pc4缺陷的断点,从而限制了Rlb含区。抗性基因定位在一个100kb的片段中,预计包含约10个不同的基因。然后进行了雄性重组基因实验,从而确定了两个可能的Rlb基因候选者。讨论了其中一个基因edl/mae的潜在参与。
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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