Kim A I, Lyubomirskaya N V, Belyaeva E S, Shostack N G, Ilyin Y V
Dept. of Genetics and Breeding, M.V. Lomonosov Moscow State University, Russia.
Mol Gen Genet. 1994 Feb;242(4):472-7. doi: 10.1007/BF00281799.
A previously described genetic system comprising a Mutator Strain (MS) and the Stable Strain (SS) from which it originated is characterized by genetic instability caused by transpositions of the retrotransposon gypsy. A series of genetic crosses was used to obtain three MS derivatives, each containing one MS chromosome (X, 2 or 3) in the environment of SS chromosomes. All derivatives are characterized by elevated frequencies of spontaneous mutations in both sexes. Mutations appear at the premeiotic stage and are unstable. Transformed derivatives of SS and another stable strain 208 were obtained by microinjection of plasmid DNA containing transpositionally active gypsy inserted into the Casper vector. In situ hybridization experiments revealed amplification and active transposition of gypsy in SS derivatives, while the integration of a single copy of gypsy into the genome of 208 does not change the genetic properties of this strain. We propose that genetic instability in the MS system is caused by the combination of two factors: mutation(s) in gene(s) regulating gypsy transposition in SS and its MS derivatives, and the presence of transpositionally active gypsy copies in MS but not SS.
一种先前描述的遗传系统,由突变菌株(MS)及其起源的稳定菌株(SS)组成,其特征是由逆转录转座子吉普赛(gypsy)的转座导致的遗传不稳定性。通过一系列遗传杂交获得了三个MS衍生物,每个衍生物在SS染色体环境中都含有一条MS染色体(X、2或3)。所有衍生物的特征都是两性自发突变频率升高。突变出现在减数分裂前阶段且不稳定。通过显微注射含有插入到卡斯珀载体中的具有转座活性的吉普赛序列的质粒DNA,获得了SS和另一个稳定菌株208的转化衍生物。原位杂交实验揭示了吉普赛序列在SS衍生物中的扩增和活跃转座,而将单拷贝的吉普赛序列整合到208的基因组中并未改变该菌株的遗传特性。我们提出,MS系统中的遗传不稳定性是由两个因素共同导致的:调节SS及其MS衍生物中吉普赛序列转座的基因发生突变,以及MS中存在具有转座活性的吉普赛序列拷贝而SS中不存在。