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通过抑制性消减杂交确定的,肠道纤维分解菌肠道纤维杆菌与产琥珀酸纤维杆菌不共有的新型分子特征。

Novel molecular features of the fibrolytic intestinal bacterium Fibrobacter intestinalis not shared with Fibrobacter succinogenes as determined by suppressive subtractive hybridization.

作者信息

Qi Meng, Nelson Karen E, Daugherty Sean C, Nelson William C, Hance Ioana R, Morrison Mark, Forsberg Cecil W

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, N1G 2W1 Ontario, Canada.

出版信息

J Bacteriol. 2005 Jun;187(11):3739-51. doi: 10.1128/JB.187.11.3739-3751.2005.

Abstract

Suppressive subtractive hybridization was conducted to identify unique genes coding for plant cell wall hydrolytic enzymes and other properties of the gastrointestinal bacterium Fibrobacter intestinalis DR7 not shared by Fibrobacter succinogenes S85. Subtractive clones from F. intestinalis were sequenced and assembled to form 712 nonredundant contigs with an average length of 525 bp. Of these, 55 sequences were unique to F. intestinalis. The remaining contigs contained 764 genes with BLASTX similarities to other proteins; of these, 80% had the highest similarities to proteins in F. succinogenes, including 30 that coded for carbohydrate active enzymes. The expression of 17 of these genes was verified by Northern dot blot analysis. Of genes not exhibiting BLASTX similarity to F. succinogenes, 30 encoded putative transposases, 6 encoded restriction modification genes, and 45% had highest similarities to proteins in other species of gastrointestinal bacteria, a finding suggestive of either horizontal gene transfer to F. intestinalis or gene loss from F. succinogenes. Analysis of contigs containing segments of two or more adjacent genes revealed that only 35% exhibited BLASTX similarity and were in the same orientation as those of F. succinogenes, indicating extensive chromosomal rearrangement. The expression of eight transposases, and three restriction-modification genes was confirmed by Northern dot blot analysis. These data clearly document the maintenance of carbohydrate active enzymes in F. intestinalis necessitated by the preponderance of polysaccharide substrates available in the ruminal environment. It also documents substantive changes in the genome from that of F. succinogenes, which may be related to the introduction of the array of transposase and restriction-modification genes.

摘要

进行抑制性消减杂交以鉴定编码植物细胞壁水解酶的独特基因,以及肠道纤维杆菌DR7具有而产琥珀酸纤维杆菌S85不具备的其他胃肠道细菌特性。对来自肠道纤维杆菌的消减克隆进行测序和组装,形成712个非冗余重叠群,平均长度为525 bp。其中,55个序列是肠道纤维杆菌特有的。其余重叠群包含764个与其他蛋白质具有BLASTX相似性的基因;其中80%与产琥珀酸纤维杆菌中的蛋白质具有最高相似性,包括30个编码碳水化合物活性酶的基因。通过Northern斑点印迹分析验证了其中17个基因的表达。在与产琥珀酸纤维杆菌不具有BLASTX相似性的基因中,30个编码推定的转座酶,6个编码限制修饰基因,45%与其他胃肠道细菌物种中的蛋白质具有最高相似性,这一发现表明要么是水平基因转移至肠道纤维杆菌,要么是产琥珀酸纤维杆菌发生了基因丢失。对包含两个或更多相邻基因片段的重叠群进行分析发现,只有35%表现出BLASTX相似性,并且与产琥珀酸纤维杆菌的基因方向相同,这表明存在广泛的染色体重排。通过Northern斑点印迹分析证实了8个转座酶和3个限制修饰基因的表达。这些数据清楚地证明了瘤胃环境中大量多糖底物使得肠道纤维杆菌必须维持碳水化合物活性酶。它还证明了该基因组与产琥珀酸纤维杆菌的基因组相比发生了实质性变化,这可能与转座酶和限制修饰基因阵列的引入有关。

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