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4篇 您的检索式:作者名="Hengwei Cheng"
    题名 作者 年代 出处 被引量
1微生物-肠-脑轴调控蛋鸡应激性异常行为的研究进展显示文摘现代养禽业采用的高密度笼养体系、分阶段饲养、断喙等管理措施可引起禽的过度应激,使它们出现啄羽、攻击或同类相食等异常行为。肠道菌群被视为一种跨物种的虚拟内分泌器官,通过肠-脑轴的双向通讯整合来自代谢、免疫、内分泌和神经通路发出的信号,并通过肠神经和迷走神经等外周神经系统、5-羟色胺和短链脂肪酸等微生物代谢产物以及免疫系统等途径调控动物应激反应及相应异常行为。本文系统地总结了蛋鸡饲养管理措施所造成的禽过度应激行为,并对微生物-肠-脑轴对鸡应激及其相关行为调控的可能机制进行论述,旨在为益生菌在蛋鸡饲养管理的推广应用提供参考依据。邹昕羽 CHENG Hengwei 金美兰 江莎 2021动物营养学报2021,33,4:3
2Evanescent Wave Absorption Sensor Based Tapered Plastic Optical Fiber Coated with Monolayer Graphene for Ethanol Molecules Detection显示文摘Shouzhen Jiang Hengwei Qiu Saisai Gao Peixi Chen Zhen Li Kaiyang Yu Weiwei Yue Cheng Yang Yanyan Huo Shuyun Wang 2016Chinese Journal of Chemistry2016,34,10:1
3An improved 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) reduction assay for evaluating the viability of Escherichia coli cells显示文摘Hengwei Wang Hairong Cheng Fengqing Wang Dongzhi Wei Xuedong Wang 2010Journal of Microbiological Methods2010,,3:1
4Cecal microbiota transplantation:unique influence of cecal microbiota from divergently selected inbred donor lines on cecal microbial profile,serotonergic activity,and aggressive behavior of recipient chickens显示文摘Background Accumulating evidence from human trials and rodent studies has indicated that modulation of gut microbiota affects host physiological homeostasis and behavioral characteristics.Similarly,alterations in gut micro-biota could be a feasible strategy for reducing aggressive behavior and improving health in chickens.The study was conducted to determine the effects of early-life cecal microbiota transplantation(CMT)on cecal microbial composi-tion,brain serotonergic activity,and aggressive behavior of recipient chickens.Methods Chicken lines 63 and 72 with nonaggressive and aggressive behavior,respectively,were used as donors and a commercial strain Dekalb XL was used as recipients for CMT.Eighty-four 1-d-old male chicks were randomly assigned to 1 of 3 treatments with 7 cages per treatment and 4 chickens per cage(n=7):saline(control,CTRL),cecal solution of line 6_(3)(6_(3)-CMT),and cecal solution of line 7_(2)(7_(2)-CMT).Transplantation was conducted via oral gavage once daily from d 1 to 10,and then boosted once weekly from week 3 to 5.At weeks 5 and 16,home-cage behavior was recorded,and chickens with similar body weights were assigned to paired aggression tests between the treat-ments.Samples of blood,brain,and cecal content were collected from the post-tested chickens to detect CMT-induced biological and microbiota changes.Results 63-CMT chickens displayed less aggressive behavior with a higher hypothalamic serotonergic activity at week 5.Correspondingly,two amplicon sequence variants(ASVs)belonging to Lachnospiraceae and one Ruminococ-caceae UCG-005 ASV were positively correlated with the levels of brain tryptophan and serotonin,respectively.7_(2)-CMT chickens had lower levels of brain norepinephrine and dopamine at week 5 with higher levels of plasma serotonin and tryptophan at week 16.ASVs belonging to Mollicutes RF39 and GCA-900066225 in 7_(2)-CMT chickens were nega-tively correlated with the brain 5-hydroxyindoleacetic acid(5-HIAA)at week 5,and one Bacteroides ASV was negatively correlated with plasma serotonin at week 16.Conclusion Results indicate that CMT at an early age could regulate aggressive behavior via modulating the cecal microbial composition,together with central serotonergic and catecholaminergic systems in recipient chickens.The selected CMT could be a novel strategy for reducing aggressive behavior through regulating signaling along the microbiota-gut-brain axis.Yuechi Fu Jiaying Hu Marisa A.Erasmus Huanmin Zhang Timothy A.Johnson Hengwei Cheng 2023Journal of Animal Science and Biotechnology2023,14,5:0
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