Svanevik Cecilie S, Lunestad Bjørn T
National Institute of Nutrition and Seafood Research, Nordnes, P.O. Box 2029, 5817, Bergen, Norway.
Curr Microbiol. 2017 Sep;74(9):1043-1048. doi: 10.1007/s00284-017-1281-3. Epub 2017 Jun 16.
This paper describes a cultivation method to increase the recovery of bacteria from the marine muscle-invading parasitic nematode larvae of Anisakis spp. These larvae hold a high and complex population of accumulated bacteria, originating from seawater, crustaceans, fish, and marine mammals, all involved in the lifecycle of Anisakis. Two in-house agars based on fish juice prepared by either mechanical or enzymatic degradation of the fish tissue, were made. The Anisakis larvae were homogenised prior to cultivation on the in-house fish juice agars and the bacterial numbers and diversity were compared to those obtained applying the commercially available Marine Agar and Iron Agar Lyngby. Bacterial colonies of unique appearance were subcultured and identified by 16S rRNA gene sequencing. Totally three of twenty identified taxa were found on the in-house fish juice agars only. Fish juice agar prepared enzymatically would be the best supplementary agar, as this agar gave significantly higher heterotrophic plate counts, compared to mechanical preparation. The enzymatically prepared fish juice gave more suitable agar quality, was more resource efficient, and had apparently increased nutrient density and availability.
本文描述了一种培养方法,用于提高从海兽胃线虫属海洋肌肉侵袭性寄生线虫幼虫中回收细菌的效率。这些幼虫含有大量复杂的累积细菌群体,这些细菌源自海水、甲壳类动物、鱼类和海洋哺乳动物,它们都参与了海兽胃线虫的生命周期。制备了两种基于鱼汁的自制琼脂,鱼汁是通过对鱼组织进行机械或酶降解制成的。在自制鱼汁琼脂上培养之前,将海兽胃线虫幼虫匀浆,并将细菌数量和多样性与使用市售的海洋琼脂和林格比铁琼脂所获得的结果进行比较。对外观独特的细菌菌落进行传代培养,并通过16S rRNA基因测序进行鉴定。在二十个已鉴定的分类单元中,总共只有三个仅在自制鱼汁琼脂上被发现。酶解制备的鱼汁琼脂是最佳的补充琼脂,因为与机械制备相比,这种琼脂的异养平板计数显著更高。酶解制备的鱼汁提供了更合适的琼脂质量,更具资源效率,并且明显提高了营养密度和可利用性。