Mahu Maxime, De Pauw Nele, Vande Maele Lien, Verlinden Marc, Boyen Filip, Ducatelle Richard, Haesebrouck Freddy, Martel An, Pasmans Frank
Department of Pathology, Bacteriology and Avian Diseases, Faculty of Veterinary Medicine, Ghent University, Salisburylaan 133, B-9820, Merelbeke, Belgium.
Technology and Food Science Unit, Institute for Agricultural and Fisheries Research (ILVO), Brusselsesteenweg 370, B-9090, Melle, Belgium.
Vet Res. 2016 Jun 23;47(1):66. doi: 10.1186/s13567-016-0353-x.
Brachyspira hyodysenteriae is the primary cause of swine dysentery, which is responsible for major economic losses to the pig industry worldwide. The hemolytic activity of 10 B. hyodysenteriae strains isolated from stools of pigs with mild to mucohemorrhagic diarrhea was compared and seven hemolysis associated genes were sequenced. Hemolysis induced by these strains varied from strong to near absent. One weakly hemolytic B. hyodysenteriae strain showed sequence changes in five hemolysis associated genes (tlyA, tlyB, hemolysin III, hemolysin activation protein and hemolysin III channel protein) resulting in amino acid substitutions. The occurrence of weakly hemolytic strains identifiable as B. hyodysenteriae should be taken into account in swine dysentery diagnostics. The presence of these strains may affect herd dysentery status, with great impact on a farms trading opportunities.
猪痢疾短螺旋体是猪痢疾的主要病因,给全球养猪业造成重大经济损失。比较了从患有轻度至黏液出血性腹泻的猪粪便中分离出的10株猪痢疾短螺旋体菌株的溶血活性,并对7个与溶血相关的基因进行了测序。这些菌株诱导的溶血程度从强到几乎没有变化。一株弱溶血猪痢疾短螺旋体菌株在5个与溶血相关的基因(tlyA、tlyB、溶血素III、溶血素激活蛋白和溶血素III通道蛋白)中出现序列变化,导致氨基酸替换。在猪痢疾诊断中应考虑到可鉴定为猪痢疾短螺旋体的弱溶血菌株的存在。这些菌株的存在可能会影响猪群的痢疾状况,对农场的贸易机会产生重大影响。