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| 1 | Characteristics of fungal community structure during the decomposition of mixed foliage litter from Pinus massoniana and broadleaved tree species in southwestern China显示文摘针叶树凋落物相当顽强且养分含量低,而阔叶凋落物通过增加可降解养分和促进微生物代谢来促进针叶凋落物的分解。马尾松(Pinus massoniana)凋落物和三个阔叶凋落物混合可能会增加真菌分解者的多样性和丰富性,并且会随着阔叶树种的数量和比例而有所差异。我们使用高通量测序技术分析了西南地区马尾松与香椿(Toona sinensis),香樟(Cinnamomum camphora)和檫木(Sassafras tzumu)凋落叶混合分解过程中的真菌群落组成和多样性,共设置35种实验处理。研究结果表明,与单一凋落叶相比,除马尾松+香椿,马尾松+檫木+香椿和马尾松+檫木+香樟组合中马尾松凋落叶占70%-80%以及马尾松+檫木+香樟+香椿组合中香椿凋落叶所占比例较小外,其余混合凋落叶均增加了真菌的多样性和丰富性。其中马尾松+香樟+香椿组合中的7:1:2的真菌多样性和丰富性显著高于其他处理。子囊菌门和担子菌门是最主要的优势门,曲霉属是最丰富的真菌群落属。一针一阔(6:4)和一针两阔(阔叶凋落叶占30%-40%)组合的凋落叶在整个分解过程中均表现出较强的协同作用,并且增加了可分解较难分解物质真菌菌群的相对丰度。可见马尾松+香樟+香椿组合中阔叶凋落物占30%-40%比例时增加了真菌的多样性,促进了针叶凋落物中难分解物质的分解。因此,香椿和香樟可能是构建马尾松混交林潜在的候选阔叶伴生树种。 | Yan Zhang Xun Li Danju Zhang Yu Qin Yang Zhou Simeng Song Jian Zhang | 2020 | Journal of Plant Ecology2020,13,5: | 1 |
| 2 | Dietary resistant starch alleviates Escherichia coli-induced bone loss in meat ducks by promoting short-chain fatty acid production and inhibiting Malt1/NF-κB inflammasome activation显示文摘Background:Escherichia coli(E.coli)infection in humans and animals usually comes with gut dysbiosis,which is potential culprit to skeletal health,it is still unclear to whether diet interfered gut microbiome changes can be a protective strategy to bone loss development.Here,the effects of resistant starch from raw potato starch(RPS),a type of prebiotic,on E.coli-induced bone loss and gut microbial composition in meat ducks were evaluated.Results:The results showed that dietary 12%RPS treatment improved bone quality,depressed bone resorption,and attenuated the pro-inflammatory reaction in both ileum and bone marrow.Meanwhile,the 12%RPS diet also increased the abundance of Firmicutes in E.coli-treated birds,along with higher production of short-chain fatty acids(SCFAs)especially propionate and butyrate.Whereas addition ofβ-acid,an inhibitor of bacterial SCFAs production,to the drinking water of ducks fed 12%RPS diet significantly decreased SCFAs level in cecum content and eliminated RPS-induced tibial mass improvement.Further,treatment with MI-2 to abrogate mucosa-associated lymphoid tissue lymphoma translocation protein 1(Malt1)activity replicated the protective role of dietary 12%RPS in E.coli-induced bone loss including reduced the inhibition on nuclear factorκB(NF-κB)inflammasome activation,decreased bone resorption,and improved bone quality,which were correlated with comparable and higher regulatory T cells(Treg)frequency in MI-2 and 12%RPS group,respectively.Conclusions:These findings suggested that the diet with 12%RPS could alleviate E.coli-induced bone loss in meat ducks by changing the gut microbial composition and promoting concomitant SCFAs production,and consequently inhibiting Malt1/NF-κB inflammasome activation and Treg cells expansion. | Huaiyong Zhang Simeng Qin Xiangli Zhang Pengfei Du Yao Zhu Yanqun Huang Joris Michiels Quifeng Zeng Wen Chen | 2023 | Journal of Animal Science and Biotechnology2023,14,1: | 0 |
| 3 | Dietary resistant starch ameliorating lipopolysaccharide-induced inflammation in meat ducks associated with the alteration in gut microbiome and glucagon-like peptide 1 signaling显示文摘Background:Consumption of resistant starch(RS)has been associated with various intestinal and systemic health benefits,but knowledge of its effects on intestinal health and inflammatory response in stressed birds is limited.Here,we examined how dietary RS supplementation from 12%raw potato starch(RPS)modulated inflammatory severity induced by lipopolysaccharide(LPS)in meat ducks.Results:LPS administration at 14,16,and 18 d(chronic challenge)decreased body weight(BW)and glucagon-like peptide 1 receptor(GLP-1R)level with higher intestinal permeability and inflammation,evident by higher proinflammatory cytokine levels.Dietary 12%RPS supplementation enhanced Claudin-1 and GLP-1R expression,along with lower levels of inflammatory factors in both ileum and serum.Microbiome analysis showed that RS treatment shifted microbial structure reflected by enriched the proportion of Firmicutes,Bifidobacterium,Ruminococcus,etc.Dietary RS addition also significantly increased the concentrations of propionate and butyrate during chronic LPS challenge.Furthermore,response to acute challenge,the ducks received 2 mg/kg BW LPS at 14 d had higher concentrations of serum endotoxins and inflammatory cytokines,as well as upregulated transcription of toll like receptor 4(TLR4)in ileum when compared to control birds.Analogous to GLP-1 agonist liraglutide,dietary RS addition decreased endotoxins and inflammation cytokines,whereas it upregulated the GLP-1 synthesis related genes expression.Meanwhile,dietary RS supplementation suppressed the acute LPS challenge-induced TLR4 transcription.Conclusions:These data suggest that dietary 12%RPS supplementation could attenuate the LPS-induced inflammation as well as intestinal injury of meat ducks,which might involve in the alteration in gut microbiota,SCFAs production and the signaling pathways of TLR4 and GLP-1/GLP-1R. | Simeng Qin Weiqiang Bai Todd JApplegate Keying Zhang Gang Tian Xuemei Ding Shiping Bai Jianping Wang Li Lv Huanwei Peng Yue Xuan Qiufeng Zeng | 2022 | Journal of Animal Science and Biotechnology2022,13,6: | 0 |