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单个P因子插入对黑腹果蝇刚毛数量和活力的影响。

Effects of single P-element insertions on bristle number and viability in Drosophila melanogaster.

作者信息

Lyman R F, Lawrence F, Nuzhdin S V, Mackay T F

机构信息

Department of Genetics, North Carolina State University, Raleigh 27695-7614, USA.

出版信息

Genetics. 1996 May;143(1):277-92. doi: 10.1093/genetics/143.1.277.

Abstract

Single P-element mutagenesis was used to construct 1094 lines with P[lArB] inserts on all three major chromosomes in an isogenic background previously free of P elements. The effects of insertions on bristle number and on viability were assessed by comparison to 392 control lines. The variance and effects of P-element inserts on bristle number and viability were larger than those inferred from spontaneous mutations. The distributions of effects on bristle number were symmetrical and highly leptokurtic, such that a few inserts with large effects caused most of the increase in variance. The distribution of effects on viability were negatively skewed and platykurtic. On average, the effects of P-element insertions on bristle number were partly recessive and on viability were completely recessive. P-element inserts with large effects on bristle number tended to have reduced viability, but the correlation between the absolute value of the effects on bristle number and on viability was not strong. Fifty P-element inserts tagging quantitative trait loci (QTLs) with large effects on bristle number were mapped cytogenetically. Two P-element-induced scabrous alleles and five extramacrochaetae alleles were generated. Single P-element mutagenesis is a powerful method for identifying QTLs at the level of genetic locus.

摘要

在一个先前不含P因子的同基因背景中,利用单P因子诱变构建了1094个品系,这些品系在所有三条主要染色体上都带有P[lArB]插入片段。通过与392个对照品系比较,评估了插入片段对刚毛数量和活力的影响。P因子插入对刚毛数量和活力的方差及效应大于自发突变所推断的结果。对刚毛数量影响的分布是对称且高度峰态的,以至于少数具有大效应的插入片段导致了大部分方差的增加。对活力影响的分布是负偏态和平峰态的。平均而言,P因子插入对刚毛数量的效应部分呈隐性,对活力的效应完全呈隐性。对刚毛数量有大效应的P因子插入片段往往活力降低,但对刚毛数量和活力影响的绝对值之间的相关性不强。对50个对刚毛数量有大效应的标记数量性状位点(QTL)的P因子插入片段进行了细胞遗传学定位。产生了两个P因子诱导的粗糙等位基因和五个额外大刚毛等位基因。单P因子诱变是在基因座水平上鉴定QTL的一种强大方法。

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