植物提取物对水牛瘤胃产甲烷及微生物特征的影响

D. Kamra, A. Patra, P. Chatterjee, Ravindra Kumar, N. Agarwal, L. Chaudhary
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引用次数: 94

摘要

富含次生代谢物(皂苷、单宁、精油等)的植物具有抗菌活性,可用于选择性抑制瘤胃中特定微生物群。以水牛瘤胃液为接种物,筛选了大量具有抑制甲烷生成和纤毛虫原生动物的植物提取物,并进行了体外产气试验。93种植物提取物中,11种对体外产甲烷的抑制程度为25 ~ 50%,9种对体外产甲烷的抑制程度超过50%。在20个具有抗甲烷活性的提取物中,乙醇提取物9个,甲醇提取物10个,水提取物只有1个。显微镜检查和14c标记放射性同位素技术检测发现,部分植物提取物对纤毛虫原生动物有抑制作用,但对原生动物的抑制作用与对甲烷的抑制作用不相关,说明对植物次生代谢物敏感的产甲烷菌与纤毛虫原生动物可能存在共生关系,也可能没有。通过实时PCR测定,甲烷抑制作用伴随着产甲烷菌数量的急剧下降。有潜力作为控制反刍动物产甲烷的饲料添加剂的植物有:(i)含皂苷丰富的无骨子(Sapindus mukorossi)和含单宁丰富的chebula Terminalia)的籽浆;(ii)三角杨叶、芒果叶和番石榴叶(富含单宁和精油);(三)香菇(Syzygium aromaticum)花蕾和葱(Allium sativum)球茎(富含精油)。文献报道的一些具有抗甲烷活性的植物包括木贼草、山茱萸、大黄、鼠尾草、皂荚、钩藤和丝兰。
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Effect of plant extracts on methanogenesis and microbial profile of the rumen of buffalo: a brief overview
Plants rich in secondary metabolites (saponins, tannins, essential oils, etc.) have antimicrobial activity which can be exploited for selective inhibition of a particular group of microbes in the rumen. We have screened a large number of plant extracts for their potential to inhibit methanogenesis and ciliate protozoa in an in vitro gas production test using buffalo rumen liquor as the inoculum. Out of 93 plant extracts tested, 11 inhibited in vitro methanogenesis to the extent of 25–50% and nine plant extracts inhibited methanogenesis more than 50%. Among 20 extracts exhibiting antimethanogenic activity, nine were ethanol extracts, 10 were methanol extracts and only one was a water extract. Some of these plant extracts inhibited ciliate protozoa as tested by microscopic examination and 14C-labelled radioisotopic technique, but the protozoa inhibition was not correlated with methane inhibition, indicating that the methanogens sensitive to plant secondary metabolites may or may not be having any symbiotic relationship with ciliate protozoa. Methane inhibition was accompanied by a drastic fall in the number of methanogens as determined by real time PCR. Plants that appeared to have some potential as feed additives to control methanogenesis by the ruminants are: (i) seed pulp of Sapindus mukorossi (rich in saponins) and Terminalia chebula (rich in tannins); (ii) leaves of Populus deltoides, Mangifera indica and Psidium guajava (rich in tannins and essential oils); and (iii) flower buds of Syzygium aromaticum and bulb of Allium sativum (rich in essential oils). Some of the plants reported in literature exhibiting antimethanogenic activity include Equisetum arvense, Lotus corniculatus, Rheum palmatum, Salvia officinalis, Sapindus saponaria, Uncaria gambir and Yucca schidigera.
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