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Isozyme Variation among Biological Species in the Gibberella fujikuroi Species Complex (Fusarium Section Liseola)

机译:富士赤霉菌种复合体(Liseola镰刀菌科)中生物物种间的同工酶变化

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摘要

Isozyme phenotypes were determined for 101 strains of Gibberella fujikuroi and 2 strains of Gibberella nygamai that represent seven biological species (mating populations) isolated from a variety of plant hosts in dispersed geographic locations. Fourteen enzymes were resolved in one or more of three buffer systems. Two of the enzymes, arylesterase and acid phosphatase, were polymorphic within two or more biological species and are suitable for intraspecific studies of population variation. Six enzymes, alcohol dehydrogenase, aspartate aminotransferase, glucose-6-phosphate dehydrogenase, mannitol dehydrogenase, phosphoglucomutase, and phosphogluconate dehydrogenase, were monomorphic in all of the isolates examined. The remaining six enzymes, fumarase, glucose phosphate isomerase, glutamate dehydrogenase (NADP), isocitrate dehydrogenase (NADP), malate dehydrogenase, and triose-phosphate isomerase, could potentially be used to distinguish the different biological species. Mating populations C and D are the most similar, since the mating population C isolates examined had the same isozyme phenotype as did a subset of the isolates in mating population D. Mating population E is the least similar to the other taxa examined. Unique isozyme phenotypes are present but are composed of banding patterns shared among the biological species. This finding supports the hypothesis that these biological species, with the possible exception of mating populations C and D, are reproductively isolated from one another and that no significant gene flow is occurring between them. Isozyme analysis is a useful method to distinguish these closely related biological species. Examination of isozyme phenotypes is more rapid than the present technique, which is based on sexual crosses; can be applied to strains that are not sexually fertile; and is more sensitive than traditional morphological characters, which cannot distinguish more than three or four morphological groups among the seven biological species. While emphasizing the discreteness of the mating populations as biological entities, our isozyme data also reaffirm the close genetic relationship among these groups.
机译:确定了101株富士赤霉菌菌株和2株奈加迈赤霉菌的同工酶表型,它们代表了从分散的地理位置上的各种植物宿主中分离出来的7个生物物种(交配种群)。在三个缓冲系统中的一个或多个中解析了十四种酶。其中的两种酶(芳基酯酶和酸性磷酸酶)在两个或多个生物物种中具有多态性,适用于种群变异的种内研究。在所有检查的分离物中,六种酶(乙醇脱氢酶,天冬氨酸转氨酶,6-磷酸葡萄糖脱氢酶,甘露醇脱氢酶,磷酸葡萄糖变位酶和磷酸葡萄糖酸酯脱氢酶)是单态的。其余的六种酶,富马酸酶,葡萄糖磷酸异构酶,谷氨酸脱氢酶(NADP),异柠檬酸脱氢酶(NADP),苹果酸脱氢酶和磷酸三糖磷酸异构酶,有可能被用来区分不同的生物物种。交配群体C和D最相似,因为所检查的交配群体C分离株与交配群体D中的一部分分离株具有相同的同工酶表型。交配群体E与所研究的其他分类群最不相似。存在独特的同工酶表型,但由生物物种之间共享的条带模式组成。这一发现支持以下假设:这些生物物种,除了交配种群C和D之外,可能是彼此繁殖分离的,并且在它们之间没有显着的基因流动。同工酶分析是区分这些密切相关的生物学物种的有用方法。同工酶表型的检查比基于异性杂交的本技术更快。可用于不具有性育能力的菌株;并且比传统形态特征更敏感,传统形态特征不能区分七个生物物种中的三个以上或四个形态组。在强调交配种群作为生物实体的离散性的同时,我们的同工酶数据也重申了这些群体之间的紧密遗传关系。

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