Intergenomic recombination events among pairs of defective cauliflower mosaic virus genomes in plants.

R M Walden, S H Howell
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Abstract

Pairs of defective cauliflower mosaic virus genomes coinoculated in plants are rescued at high frequency by homologous, intergenomic recombination events. Defective genomes may be rescued by one of at least two general types of recombination mechanisms. One mechanism appears to operate on linear DNA molecules with complementary sticky ends. Recombination of this type can be explained by the formation of mixed dimers (or concatamers) which can be resolved into normal genomes by a single crossover event. Another type of recombination takes place among viral DNA molecules which do not have complementary sticky ends. Rescue of this type yields normal viral DNA molecules which can be resolved only by the equivalent of a double crossover or internal gene conversion event between pairs of infecting molecules. Co-infection of plants with pairs of defective genomes derived from different viral isolates results in the formation of hybrid viral genomes. Analysis of these hybrids reveals that recombination can take place at different sites in the viral genome.

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植物花椰菜花叶病毒缺陷基因组对的基因组间重组事件。
在植物中共接种的有缺陷的花椰菜花叶病毒基因组对通过同源的基因组间重组事件高频率地获救。有缺陷的基因组可以通过至少两种一般类型的重组机制中的一种来挽救。一种机制似乎在具有互补粘性末端的线性DNA分子上起作用。这种类型的重组可以通过混合二聚体(或串联体)的形成来解释,这些二聚体可以通过单个交叉事件分解成正常的基因组。另一种类型的重组发生在没有互补粘性末端的病毒DNA分子之间。这种类型的拯救产生正常的病毒DNA分子,只能通过等效的双交叉或感染分子对之间的内部基因转换事件来解决。植物与来自不同病毒分离株的缺陷基因组对共同侵染可形成杂交病毒基因组。对这些杂交体的分析表明,重组可以发生在病毒基因组的不同位点。
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