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乳化十八烷酸对瘤胃厌氧真菌普通梨形霉M014产气及纤维素分解的影响

Effects of emulsified octadecanic acids on gas production and cellulolysis by the rumen anaerobic fungus, Piromyces communis M014.

作者信息

Kim Chang-H, Lee Shin J, Ha Jong K, Kim Wan Y, Lee Sung S

机构信息

School of Animal Life and Environment Science, Hankyong National University, GRRC, Anseong 456-749, Republic of Korea.

出版信息

Anaerobe. 2008 Feb;14(1):19-28. doi: 10.1016/j.anaerobe.2007.08.005. Epub 2007 Oct 7.

Abstract

Responses of the rumen anaerobic fungus, Piromyces communis M014, to octadecanic long-chain fatty acids (LCFAs) were evaluated by measuring total and hydrogen gas productions, filter paper (FP) cellulose degradation and polysaccharidase enzyme activities. Octadecanic acids (stearic acid, C(18:0); oleic acid, C(18:1); linoleic acid, C(18:2) and linolenic acid, C(18:3)) were emulsified by ultrasonication under anaerobic conditions, and added to the medium at the level of 0.001%. When P. communis M014 was grown in culture with stearic and oleic acids, the cumulative gas production, FP cellulose digestion and enzyme activities were significantly (p<0.05) increased in the early incubation times relative to those for the control. However, the addition of linolenic acid inhibited all of the investigated parameters, including cellulose degradation, enzyme activities and gas production, up to 168h incubation. These results indicated that stearic and oleic acids tended to have stimulatory effects on fungal cellulolysis, whereas linolenic acid caused a significant (p<0.05) inhibitory effect on cellulolysis by the rumen fungus. The fungus, P. communis M014, can biohydrogenate C(18) unsaturated fatty acids to escape from their toxic effects. Therefore, in this study, the results indicated that the more highly the added C(18) LCFA to the fungal culture was unsaturated, the higher the inhibition of gas production and cellulase enzyme activity was.

摘要

通过测量总产气量和氢气产量、滤纸(FP)纤维素降解率以及多糖酶活性,评估瘤胃厌氧真菌普通梨形霉M014对十八烷长链脂肪酸(LCFAs)的反应。在厌氧条件下,通过超声处理将十八烷酸(硬脂酸,C(18:0);油酸,C(18:1);亚油酸,C(18:2)和亚麻酸,C(18:3))乳化,并以0.001%的水平添加到培养基中。当普通梨形霉M014在含有硬脂酸和油酸的培养基中生长时,与对照相比,在培养初期,累积产气量、FP纤维素消化率和酶活性显著(p<0.05)增加。然而,添加亚麻酸会抑制所有研究参数,包括纤维素降解、酶活性和产气量,直至培养168小时。这些结果表明,硬脂酸和油酸倾向于对真菌纤维素分解有刺激作用,而亚麻酸对瘤胃真菌的纤维素分解有显著(p<0.05)抑制作用。普通梨形霉M014可以将C(18)不饱和脂肪酸进行生物氢化以逃避其毒性作用。因此,在本研究中,结果表明,向真菌培养物中添加的C(18) LCFA不饱和程度越高,对产气量和纤维素酶活性的抑制作用就越强。

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