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[Population dynamics of the response of the genomic pattern of the mobile genetic element Dm412 in Drosophila on selection for a quantitative trait].

作者信息

Vasil'eva L A, Bubenshchikova E V, Zakharenko L P, Ratner V A

机构信息

Institute of Cytology and Genetics, Russian Academy of Sciences, Russia.

出版信息

Genetika. 1998 Jul;34(7):929-40.

PMID:9749334
Abstract

In an isogenic line of Drosophila melanogaster carrying the Mendelian mutation radius incompletus, selection for the total length of two segments of the disrupted longitudinal wing vein was conducted. After gamma-irradiation at a dose of 13 Gy, positive and negative truncation selection became highly effective and was completed in 50 generations. The pattern of mobile genetic element Dm412 was almost completely fixed in the course of selection. In the positive direction of selection, fixations of mobile genetic element (MGE) sites exceeded losses; in the negative direction, this relationship was reversed. The number of MGE sites in the pattern increased from 23 to 33 and to 26 in the positive and negative directions, respectively. The mean heterozygosity of MGE sites decreased respectively ten and six times. The dynamics of some sites (6F, 43B, 66A, 69E, and others) corresponded to that expected with an adaptive response to selection. Two out of these sites (43B and 66A) were previously assigned to hot sites of Dm412 transposition induced by heat shock. Fixation and loss of sites continued on average for tens of generations. Four hypotheses describe the relationship between patterns of polygenes and MGE in the context of explanation of the above facts: (1) genetic drift; (2) the linkage of MGE and polygenes without modification of the latter (hitchhiking); (3) the linkage and modifying effect of MGE on polygenes linked with them; (4) the selection of the "champion" pattern of polygenes and a random or adaptive MGE pattern linked with it. Hypotheses 1 and 2 are unlikely, hypothesis 3 is possible in the case of other selection modes, whereas hypothesis 4 seems to be most plausible.

摘要

相似文献

1
[Population dynamics of the response of the genomic pattern of the mobile genetic element Dm412 in Drosophila on selection for a quantitative trait].
Genetika. 1998 Jul;34(7):929-40.
2
[Response of the MGE 412 pattern to truncation selection of a quantitative trait in an isogenic line of drosophila after severe heat shock (SHS)].
Genetika. 2000 Jun;36(6):774-81.
3
[Analysis of MGE Dm412 localization pattern in Drosophila melanogaster lines undergoing long-term selection for a quantitative character].
Genetika. 1991 Aug;27(8):1350-8.
4
[Comparative analysis of patterns of localization of mobile genetic elements in genetic selection experiments on Drosophila melanogaster].[黑腹果蝇遗传选择实验中移动遗传元件定位模式的比较分析]
Genetika. 1995 Jul;31(7):920-31.
5
[Induction of transposition of MGE Dm412 using gamma-irradiation of an isogenic line of Drosophila melanogaster].
Genetika. 1995 Jun;31(6):798-803.
6
[Analysis of changes in MGE localization of Drosophila after selection and temperature treatment using Southern blot-hydridization].
Genetika. 1995 Mar;31(3):333-41.
7
[Heavy heat shock induces genetic variation in a polygenic system of a quantitative trait in Drosophila].[重度热休克诱导果蝇数量性状多基因系统中的遗传变异]
Genetika. 2000 Apr;36(4):493-9.
8
[Truncation family selection and nonsystematic inbreeding leads to a rapid fixation of a pattern of mobile genetic elements in a computer model].
Genetika. 2000 Mar;36(3):407-12.
9
[Prolongation of MGE 412 transposition induction after gamma-irradiation in an isogenic line of Drosophila melanogaster]].
Genetika. 2001 Apr;37(4):485-93.
10
[Transposition induction of the mobile genetic element Dm412 in the Drosophila genome using heat shock].
Genetika. 1991 Sep;27(9):1547-55.

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