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首页> 外文期刊>Canadian Journal of Animal Science >Chemical characterization and in vitro fermentation of Brassica straw treated with the aerobic fungus, Trametes versicolor
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Chemical characterization and in vitro fermentation of Brassica straw treated with the aerobic fungus, Trametes versicolor

机译:好氧真菌云芝Trametes versicolor处理芸Bra属植物的化学特性和体外发酵

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Ramirez-Bribiesca, J. E., Wang, Y., Jin, L., Canam, T., Town, J. R., Tsang, A., Dumonceaux, T. J. and McAllister, T. A. 2011. Chemical characterization and in vitro fermentation of Brassica straw treated with the aerobic fungus, Trametes versicolor. Can. J. Anim. Sci. 91: 695-702. Brassica napus straw (BNS) was either not treated or was treated with two strains of Trametes versicolor; 52J (wild type) or m4D (a cellobiose dehydrogenase-deficient mutant) with four treatments: (i) untreated control (C-BNS), (ii) 52J (B-52J), (iii) m4D (B-m4D) or (iv) m4D +glucose (B-m4Dg). Glucose was provided to encourage growth of the mutant strain. All treatments with T. versicolor decreased (P <0.05) neutral-detergent fibre and increased (P <0.05) protein and the concentration of lignin degradation products in straw. Ergosterol was highest (P<0.05) in straw treated with B-52J, suggesting it generated the most fungal biomass. Insoluble lignin was reduced (P <0.05) in straw treated with B-52J and B-m4D, but not with B-m4Dg. Mannose and xylose concentration were generally higher (P <0.05) in straw treated with fungi, whereas glucose and galactose were lower as compared with C-BNS. The four treatments above were subsequently assessed in rumen in vitro fermentations, along with BNS treated with 2 mL g(-1) of 5 N NaOH. Concentrations of total volatile fatty acids after 24 and 4811 were lower (P <0.05) in incubations that contained BNS treated with T. versicolor as compared with C-BNSor NaOH-treated BNS. Compared with C-BNS, in vitrodry matter disappearance and gas production were increased (P <0.05) by NaOH, but not by treatment with either strain of T. versicolor. Although treatment with T. versicolor did release more lignin degradation products, it did not appear to provide more degradable carbohydrate to in vitro rumen microbial populations, even when a mutant strain with compromised carbohydrate metabolism was utilized. Production of secondary compounds by the aerobic fungi may inhibit rumen microbial fermentation.
机译:Ramirez-Bribiesca,JE,Wang,Y,Jin,L.,Canam,T.,Town,JR,Tsang,A.,Dumonceaux,TJ和McAllister,TA2011。经处理的芸苔秸秆的化学表征和体外发酵有氧真菌,Trametes versicolor。能够。 J.动漫科学91:695-702。甘蓝型油菜秸秆(BNS)未处理或已用两株云芝Trametes菌株处理过; 52J(野生型)或m4D(纤维二糖脱氢酶缺陷型突变体),经过以下四种处理:(i)未经处理的对照(C-BNS),(ii)52J(B-52J),(iii)m4D(B-m4D)或(iv)m4D +葡萄糖(B-m4Dg)。提供葡萄糖以促进突变菌株的生长。杂色草的所有处理均降低(P <0.05)中性洗涤剂纤维,并增加(P <0.05)蛋白质和秸秆中木质素降解产物的浓度。 B-52J处理的麦草中麦角固醇最高(P <0.05),表明它产生最多的真菌生物量。 B-52J和B-m4D处理过的秸秆中不溶性木质素减少(P <0.05),但B-m4Dg处理不减少。与C-BNS相比,用真菌处理的秸秆中的甘露糖和木糖浓度通常较高(P <0.05),而葡萄糖和半乳糖则较低。随后在瘤胃体外发酵中评估上述四种处理方法,以及用2 mL g(-1)5 N NaOH处理的BNS进行评估。与含有C-BNS或NaOH处理的BNS相比,在含有用杂色丁香处理的BNS的培养物中,24和4811之后的总挥发性脂肪酸浓度较低(P <0.05)。与C-BNS相比,用NaOH增加了体外干物质的消失和产气量(P <0.05),但没有用任何一种杂色小麦进行处理。尽管用杂色丁香处理可以释放出更多的木质素降解产物,但即使使用了碳水化合物代谢受损的突变菌株,也无法为体外瘤胃微生物群体提供更多可降解的碳水化合物。有氧真菌产生次级化合物可能会抑制瘤胃微生物发酵。

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