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Suppression subtractive hybridization as a basis to assess Mycoplasma agalactiae and Mycoplasma bovis genomic diversity and species-specific sequences

机译:抑制生成杂交作为评估支原体嗜毒症和支原体Bovis基因组多样性和物种特异性序列的基础

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The phylogenically related Mycoplasma agalactiae and Mycoplasma bovis species are two ruminant pathogens difficult to differentiate and for which a limited amount of sequence data are available. To assess the degree of genomic diversity existing between and within these mycoplasma species, sets of DNA fragments specific for M. bovis type-strain PG45 or for M. agalactiae type-strain PG2 were isolated by suppression subtractive hybridization and used as probes on a panel of M. agalactiae and M. bovis field isolates. Results indicated that approximately 70?% of the DNA fragments specific to one or the other type strain are represented in all field isolates of the corresponding species. Only one M. bovis isolate, which was first classified as M. agalactiae, reacted with 15?% of the PG2-specific probes, while several M. agalactiae isolates reacted with 15?% of the PG45-specific probes. Sequence analyses indicated that most of the genomic diversity observed within one species is related to ORFs with (i) no homologies to proteins recorded in the databases or (ii) homologies to proteins encoded by restriction modification systems. Reminiscent of gene transfer as a means for genomic diversity, a PG45-specific DNA fragment with significant homologies to a central protein of an integrative conjugative element of Mycoplasma fermentans (ICEF) was found in most M. bovis field isolates and in a few M. agalactiae isolates. Finally, sequences encoding part of DNA polymerase III were found in both sets of M. agalactiae- and M. bovis-specific DNA fragments and were used to design a species-specific PCR assay for the identification and differentiation of M. agalactiae and M. bovis.
机译:系统发育相关的支原体嗜碱剂和支原体BOVIS物种是两个反刍动物病原体难以分化,并且可以使用有限量的序列数据。为了评估这些支原体物种之间存在的基因组多样性,通过抑制生物结合杂交分离出对M.​​ Bovis型菌株PG45或M.嗜毒菌菌株PG2特异的DNA片段组。在面板上用作探针氨基乳酸和M. Bovis野外分离物。结果表明,在相应物种的所有场分离株中,约70℃特异于一种或其他类型菌株的DNA片段。只有一只牛肉肉醇分离物,其首先将其分类为M.氨酰胺,与15μl%的pG2特异性探针反应,而几种腺酰胺分离物与15μl的pG45特异性探针反应。序列分析表明,在一个物种内观察到的大多数基因组多样性与(I)与在数据库中记录的蛋白质的同源物或通过限制性修饰系统编码的蛋白质中记录的蛋白质没有同源物。让基因转移作为基因组多样性的方法,在大多数M. Bovis野外分离物中发现了与高分子蛋白酶(ICEF)的整合缀合元素(ICEF)的中央蛋白质具有重要同源物的PG45特异性DNA片段。姬松茸的分离物。最后,在两组M.氨基酰胺和M.Bovis-and特异性DNA片段中发现了编码DNA聚合酶III的一部分的序列,用于设计用于鉴定和分化的特异性PCR测定,用于染色体和M. Bovis。

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