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体外瘤胃发酵中增强木质纤维素降解的共底物策略:特性和微生物组成。

Cosubstrate strategy for enhancing lignocellulose degradation during rumen fermentation in vitro: Characteristics and microorganism composition.

机构信息

International Science and Technology Cooperation Center for Urban Alternative Water Resources Development, Key Laboratory of Northwest Water Resource, Environment and Ecology, MOE, Engineering Technology Research Center for Wastewater Treatment and Reuse, Shaanxi, Key Laboratory of Environmental Engineering, Shaanxi, Xi'an University of Architecture and Technology, No. 13 Yanta Road, Xi'an, 710055, China.

International Science and Technology Cooperation Center for Urban Alternative Water Resources Development, Key Laboratory of Northwest Water Resource, Environment and Ecology, MOE, Engineering Technology Research Center for Wastewater Treatment and Reuse, Shaanxi, Key Laboratory of Environmental Engineering, Shaanxi, Xi'an University of Architecture and Technology, No. 13 Yanta Road, Xi'an, 710055, China.

出版信息

Chemosphere. 2020 Jul;250:126104. doi: 10.1016/j.chemosphere.2020.126104. Epub 2020 Feb 11.

Abstract

To enhance the degradation of wheat straw (WS) and corn straw (CS) in rumen fermentation, characterization of degradation and ruminal microorganisms of monosubstrate (WS/CS) groups and a cosubstrate strategy with food waste (FW) group was performed. The cellulose, hemicellulose, and lignin degradation efficiency of WS and CS; soluble chemical oxygen demand; volatile fatty acid yields; and activity of ligninolytic, cellulolytic, and hemicellulolytic enzymes for the cosubstrate group were improved compared with those for the corresponding monosubstrate groups. An accurate and a good of fit of the Weibull kinetic model, decreased crystallinity index values, and characteristic absorbance bands in the Fourier transform-infrared spectra further confirmed that cosubstrate addition with FW decreased the resistance of cellulose and hemicellulose to biodegradation. High-throughput sequencing results suggested that the bacterial diversity in CS rumen fermentation and fungal diversity and richness in WS rumen fermentation were promoted with FW as a cosubstrate. The cosubstrate addition with FW significantly affected the composition of the ruminal bacteria and fungi in rumen fermentation. The relative abundances (RAs) of rumen bacteria were increased in the cosubstrate CS/WS and FW fermentation conditions, and the enhancement of CS degradation with FW supplementation was stronger than that of WS rumen fermentation with FW supplementation. The RAs of the ruminal fungal genera Ustilago and Fusarium were promoted in CS and WS fermentation with FW, respectively. Moreover, the fermentation properties and rumen flora in the FW rumen fermentation also provided some evidence to suggest an enhancement of the cosubstrate strategy compared with the monosubstrate strategy.

摘要

为了增强小麦秸秆(WS)和玉米秸秆(CS)在瘤胃发酵中的降解,对单底物(WS/CS)组和与食物垃圾(FW)组的共底物策略的降解和瘤胃微生物进行了表征。与相应的单底物组相比,WS 和 CS 的纤维素、半纤维素和木质素降解效率;可溶化学需氧量;挥发性脂肪酸产量;木质素降解酶、纤维素降解酶和半纤维素降解酶的活性均有所提高。威布尔动力学模型的准确性和拟合度较好,结晶度指数值降低,傅里叶变换红外光谱中的特征吸收带进一步证实,FW 的共底物添加降低了纤维素和半纤维素的生物降解阻力。高通量测序结果表明,FW 作为共底物促进了 CS 瘤胃发酵中的细菌多样性和 WS 瘤胃发酵中的真菌多样性和丰富度。FW 的共底物添加显著影响瘤胃发酵中细菌和真菌的组成。在共底物 CS/WS 和 FW 发酵条件下,瘤胃细菌的相对丰度(RA)增加,FW 补充对 CS 降解的增强作用强于 FW 对 WS 瘤胃发酵的增强作用。FW 对 CS 和 WS 发酵中瘤胃真菌属 Ustilago 和 Fusarium 的 RA 均有促进作用。此外,FW 瘤胃发酵的发酵特性和瘤胃菌群也提供了一些证据,表明共底物策略比单底物策略具有更强的增强作用。

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