FAILED
首站-论文投稿智能助手
典型文献
The release and catabolism of ferulic acid in plant cell wall by rumen microbes:A review
文献摘要:
Ferulic acid(FA)is one of the most abundant hydroxycinnamic acids in the plant world,especially in the cell wall of grain bran,in comparison with forage and crop residues.Previous studies noted that FA was mainly linked with arabinoxylans and lignin in plant cell walls in ester and ether covalent forms.After forages were ingested by ruminant animals or encountered rumen microbial fermentation in vitro,these cross-linkages form physical and chemical barriers to protect cell-wall carbohydrates from microbial attack and enzymatic hydrolysis.Additionally,increasing studies noted that FA presented some toxic effect on microbial growth in the rumen.In recent decades,many studies have addressed the re-lationships of ester and/or ether-linked FA with rumen nutrient digestibility,and there is still some controversy whether these linkages could be used as a predicator of forage digestibility in ruminants.The authors in this review summarized the possible relationships between ester and/or ether-linked FA and fiber digestion in ruminants.Rumen microbes,especially bacteria and fungi,were found capable of breaking down the ester linkages within plant cell walls by secreting feruloyl and p-coumaroyl esterase,resulting in the release of free FA and improvement of cell wall digestibility.The increasing evidence noted that these esterases secreted by rumen microbes presented synergistic effects with xylanase and cellulase to effectively hydrolyze forage cell walls.Some released FA were absorbed through the rumen wall directly and entered into blood circulation and presented antioxidant effects on host animals.The others were partially catabolized into volatile fatty acids by rumen microbes,and the possible catabolic pathways discussed.To better understand plant cell wall degradation in the rumen,the metabolic fate of FA along with lignin decomposition mechanisms are needed to be explored via future microbial isolation and incubation studies with aims to maximize dietary fiber intake and enhance fiber digestion in ruminant animals.
文献关键词:
作者姓名:
Yan-Lu Wang;Wei-Kang Wang;Qi-Chao Wu;Hong-Jian Yang
作者机构:
State Key Laboratory of Animal Nutrition,College of Animal Science and Technology,China Agricultural University,Beijing 100193,China
引用格式:
[1]Yan-Lu Wang;Wei-Kang Wang;Qi-Chao Wu;Hong-Jian Yang-.The release and catabolism of ferulic acid in plant cell wall by rumen microbes:A review)[J].动物营养(英文),2022(02):335-344
A类:
arabinoxylans,forages,predicator,esterases,hydrolyze,catabolized
B类:
catabolism,ferulic,plant,by,rumen,microbes,review,Ferulic,FA,one,most,abundant,hydroxycinnamic,acids,world,especially,grain,bran,comparison,crop,residues,Previous,studies,noted,that,was,mainly,linked,lignin,walls,covalent,forms,After,were,ingested,animals,encountered,microbial,fermentation,vitro,these,cross,linkages,physical,chemical,barriers,protect,carbohydrates,from,attack,enzymatic,hydrolysis,Additionally,increasing,presented,some,toxic,growth,In,recent,decades,many,have,addressed,nutrient,digestibility,there,still,controversy,whether,could,used,ruminants,authors,this,summarized,possible,relationships,between,fiber,digestion,Rumen,bacteria,fungi,found,capable,breaking,down,within,secreting,feruloyl,coumaroyl,resulting,free,improvement,evidence,secreted,synergistic,effects,xylanase,cellulase,effectively,Some,released,absorbed,through,directly,entered,into,blood,circulation,antioxidant,host,others,partially,volatile,fatty,catabolic,pathways,discussed,To,better,understand,degradation,metabolic,fate,along,decomposition,mechanisms,are,needed,explored,via,future,isolation,incubation,aims,maximize,dietary,intake,enhance
AB值:
0.492164
相似文献
Dietary Coleus amboinicus Lour. decreases ruminal methanogenesis and biohydrogenation, and improves meat quality and fatty acid composition in longissimus thoracis muscle of lambs
Yulianri Rizki Yanza;Malgorzata Szumacher-Strabel;Dorota Lechniak;Sylwester Ślusarczyk;Pawel Kolodziejski;Amlan Kumar Patra;Zora Váradyová;Dariusz Lisiak;Mina Vazirigohar;Adam Cieslak-Department of Animal Nutrition,Faculty of Veterinary Medicine and Animal Science,Poznań University of Life Sciences,60-637 Poznań,Poland;Department of Biology Education,Universitas Islam Riau,Jl.Kaharuddin Nasution 113,Pekanbaru 28284,Indonesia;Department of Genetics and Animal Breeding,Poznań University of Life Sciences,Wo?yńska 33,60-637 Poznań,Poland;Department of Pharmaceutical Biology and Botany, Wroc?aw Medical University,50-556 Wroc?aw,Poland;Department of Animal Physiology and Biochemistry,Faculty of Veterinary Medicine and Animal Science,Poznań University of Life Sciences,60-637 Poznań,Poland;Department of Animal Nutrition,West Bengal University of Animal and Fishery Sciences,Belgachia,K.B.Sarani 37,Kolkata 700037,India;Institute of Animal Physiology,Centre of Biosciences of Slovak Academy of Sciences, ?oltésovej 4-6,04001 Ko?ice,Slovak Republic;Department of Meat and Fat Technology,Wac?aw D?browski Institute of Agricultural and Food Biotechnology,Rakowiecka 36,02-532 Warszawa,Poland;Zist Dam Group, University Incubator Center,University of Zanjan,Zanjan 45371-38791,Iran
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。