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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Isolation and characterization of mimosine, 3, 4 DHP and 2, 3 DHP degrading bacteria from a commercial rumen inoculum
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Isolation and characterization of mimosine, 3, 4 DHP and 2, 3 DHP degrading bacteria from a commercial rumen inoculum

机译:来自市售瘤胃接种物的含羞草,3、4 DHP和2、3 DHP降解细菌的分离和鉴定

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摘要

The presence of the toxic amino acid mimosine in Leucaena leucocephala restricts its use as a protein source for ruminants. Rumen bacteria degrade mimosine to 3,4- and 2,3-dihydroxypyridine (DHP), which remain toxic. Synergistes jonesii is believed to be the main bacterium responsible for degradation of these toxic compounds but other bacteria may also be involved. In this study, a commercial inoculum provided by the Queensland's Department of Agriculture, Fisheries, and Forestry was screened for isolation and characterization of mimosine, 3,4- and 2,3-DHP degrading bacterial strains. A new medium for screening of 2,3-DHP degrading bacteria was developed. Molecular and biochemical approaches used in this study revealed four bacterial isolates - Streptococcus lutetiensis, Clostridium butyricum, Lactobacillus vitulinus, and Butyrivibrio fibrisolvens - to be able to completely degrade mimosine within 7 days of incubation. It was also observed that C. butyricum and L. vitulinus were able to partially degrade 2,3-DHP within 12 days of incubation, while S. lutetiensis, was able to fully degrade both 3,4 and 2,3 DHP. Collectively, we concluded that S. jonesii is not the sole bacterium responsible for detoxification of Leucaena. Comprehensive screening of rumen fluid of cattle grazing on Leucaena pastures is needed to identify additional mimosine-detoxifying bacteria and contribute to development of more effective inoculums to be used by farmers against Leucaena toxicity.
机译:银合欢中有毒氨基酸含羞草的存在限制了其作为反刍动物的蛋白质来源的用途。瘤胃细菌将含羞草降解为3,4-和2,3-二羟基吡啶(DHP),它们仍然具有毒性。据信Jonesii Synergistes jonesii是导致这些有毒化合物降解的主要细菌,但其他细菌也可能参与其中。在这项研究中,对昆士兰州农业,渔业和林业部提供的商业接种物进行了筛选,以分离和表征含羞草碱,3,4-和2,3-DHP降解细菌菌株。开发了一种用于筛选2,3-DHP降解细菌的新培养基。这项研究中使用的分子和生化方法揭示了四种细菌分离株-链霉菌,黄梭菌,乳杆菌和玻璃纤维溶菌-能够在孵育后7天内完全降解含羞草。还观察到,丁酸梭状芽胞杆菌和玻璃藻(L. vitulinus)能够在孵育的12天之内部分降解2,3-DHP,而Lutetiensis能够完全降解3,4和2,3 DHP。总的来说,我们得出结论,琼脂链球菌不是引起白花菜解毒的唯一细菌。需要对在Leucaena牧场上放牧的牛的瘤胃液进行全面筛查,以鉴定出其他含羞草脱毒的细菌,并有助于开发出更有效的接种物,以供农民使用以抵抗Leucaena的毒性。

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