高密度、集约化的凡纳滨对虾养殖常伴随病害的发生,但还不能确定能否利用对虾的肠道细菌差异来指示其健康状况.因此,我们分别采集了健康和发病养殖塘水样和对虾样品,利用Illumina Mi Seq测序技术测定细菌16S rRNA基因,研究细菌的群落结...高密度、集约化的凡纳滨对虾养殖常伴随病害的发生,但还不能确定能否利用对虾的肠道细菌差异来指示其健康状况.因此,我们分别采集了健康和发病养殖塘水样和对虾样品,利用Illumina Mi Seq测序技术测定细菌16S rRNA基因,研究细菌的群落结构和多样性.结果表明:细菌群落结构变异主要受水体中亚硝酸盐、叶绿素a和磷酸盐的影响.发病对虾肠道细菌群落多样性显著低于健康对虾.在健康和发病对虾肠道细菌中,运用响应比分析,我们筛选到了28个丰度差异显著的分类操作单元(OTUs),其中来源于放线菌纲、黄杆菌纲和芽孢杆菌纲的OTUs丰度在发病对虾肠道中显著降低,而隶属于梭状芽孢杆菌纲的OTUs丰度在发病对虾肠道显著增加.此外,我们挑选出61个指示物种,主要属于拟杆菌门、变形菌门、厚壁菌门、浮霉菌门和放线菌门.值得注意的是,它们能够区分样品的来源(水样或虾肠道)和健康状态.本研究为对虾病害预测和益生菌开发提供了理论依据.展开更多
AIM To investigate gut microbial diversity and the interventional effect of Xiaoyaosan(XYS) in a rat model of functional dyspepsia(FD) with liver depression-spleen deficiency syndrome. METHODS The FD with liver depres...AIM To investigate gut microbial diversity and the interventional effect of Xiaoyaosan(XYS) in a rat model of functional dyspepsia(FD) with liver depression-spleen deficiency syndrome. METHODS The FD with liver depression-spleen deficiency syndrome rat model was established through classic chronic mild unpredictable stimulation every day. XYS group rats received XYS 1 h before the stimulation. The models were assessed by parameters including state ofthe rat, weight, sucrose test result and open-field test result. After 3 wk, the stools of rats were collected and genomic DNA was extracted. PCR products of the V4 region of 16 S rD NA were sequenced using a barcoded Illumina paired-end sequencing technique. The primary composition of the microbiome in the stool samples was determined and analyzed by cluster analysis.RESULTS Rat models were successfully established, per data from rat state, weight and open-field test. The microbiomes contained 20 phyla from all samples. Firmicutes, Bacteroidetes, Proteobacteria, Cyanobacteria and Tenericutes were the most abundant taxonomic groups. The relative abundance of Firmicutes, Proteobacteria and Cyanobacteria in the model group was higher than that in the normal group. On the contrary, the relative abundance of Bacteroidetes in the model group was lower than that in the normal group. Upon XYS treatment, the relative abundance of all dysregulated phyla was restored to levels similar to those observed in the normal group. Abundance clustering heat map of phyla corroborated the taxonomic distribution. CONCLUSION The microbiome relative abundance of FD rats with liver depression-spleen deficiency syndrome was significantly different from the normal cohort. XYS intervention may effectively adjust the gut dysbacteriosis in FD.展开更多
凡纳滨对虾养殖过程中,早期阶段是病害易感阶段,而消化道菌群结构与对虾健康关系密切。因此,探讨幼虾的消化道菌群尤其是弧菌类细菌与对虾发病的关系对病害有效防治具有重要意义。本实验采用Illumina测序研究了凡纳滨对虾健康和患病幼...凡纳滨对虾养殖过程中,早期阶段是病害易感阶段,而消化道菌群结构与对虾健康关系密切。因此,探讨幼虾的消化道菌群尤其是弧菌类细菌与对虾发病的关系对病害有效防治具有重要意义。本实验采用Illumina测序研究了凡纳滨对虾健康和患病幼虾的消化道细菌群落结构,并基于纯培养和16S r DNA,rec A和pyr H基因序列比对,分析了幼虾消化道中弧菌的主要种类组成。结果发现,健康幼虾消化道中α-变形菌纲和厚壁菌门丰度较高,而患病幼虾中γ-变形菌纲、拟杆菌门、放线菌门和β-变形菌纲较高,其中放线菌门丰度差异显著。基于科水平的响应比分析,发现患病幼虾消化道中动性球菌科和噬菌弧菌科的丰度显著降低,而弧菌科的丰度显著升高。相似度分析发现,驱动群落变异的OTU主要来源于弧菌属、海洋杆状菌属、冷杆菌属、假交替单胞菌属以及未分类至属的红杆菌科和微杆菌科。健康幼虾消化道弧菌组成以锡那罗亚州弧菌为主,而患病幼虾消化道弧菌组成以坎氏弧菌为主。尽管健康和患病幼虾消化道内细菌群落结构整体差异不显著,但一些重要类群丰度变化显著,其特征与已知的生态功能一致。展开更多
Although soil bacteria play critical roles in agro-ecosystems, the knowledge of their response to long-term fertilization across the black soil region of Northeast China is limited. In this study, we sequenced 16 S rR...Although soil bacteria play critical roles in agro-ecosystems, the knowledge of their response to long-term fertilization across the black soil region of Northeast China is limited. In this study, we sequenced 16 S rRNA genes to assess the effects of four long-term fertilization regimes—non-fertilization(NoF), chemical fertilizer(CF), manure(M), and chemical fertilizer plus manure(CFM)—on soil properties and bacterial communities in three locations, the northern, middle, and southern parts, across the black soil region. Results showed that the influence of fertilization regimes on soil properties varied significantly among the three locations. Manure fertilization significantly increased microbial biomass carbon and relative abundance of copiotrophic bacteria. Principal component analysis(PCA)showed that the total bacterial communities were separated into three groups according to the sampling location despite long-term fertilization, and that soil pH was the most important factor in shifting bacterial communities. In addition, similar fertilization regimes resulted in different influences on bacterial community composition, and the most influential soil properties varied among the three locations. Our results highlighted that geographical separation was a more dominant factor affecting bacterial communities than fertilization, and that long-term similar fertilization regimes did not induce consistent changes in bacterial community composition in the black soil region.展开更多
Lacustrine sediment played important roles in migration and transformation of its water soluble organic matter(WSOM), and the source and composition of WSOM would affect water trophic status and the fate of pollutants...Lacustrine sediment played important roles in migration and transformation of its water soluble organic matter(WSOM), and the source and composition of WSOM would affect water trophic status and the fate of pollutants. However, we know little about the pathway of WSOM transformation and its driving bacterial communities in lacustrine sediment. In the present study, we investigated the spatial distribution patterns of sediment WSOM and its fluorescent fractions across Lake Chaohu using fluorescence spectroscopy, and explored WSOM compositional structure through our proposed calculated ratios. In addition, we also analyzed sediment bacterial community using Illumina sequencing technology, and probed the possible pathway of sediment WSOM transformation under the mediate of indigenous bacteria. Our results showed that the inflowing rivers affected the spatial distribution patterns of WSOM and its five fractions(including tyrosine-, tryptophan-, fulvic acid-, humic acid-like substances and soluble microbial productions), and sediment WSOM originated from fresh algae detritus or bacterial sources. In parallel, we also found that Proteobacteria(mainly γ-Proteobacteria and δ-Proteobacteria), Firmicutes(mainly Bacilli), Chloroflexi, Acidobacteria, Planctomycetes and Actinobacteria dominate sediment bacterial community. Furthermore, these dominant bacteria triggered sediment WSOM transformation, specifically, the humic acid-like substances could be converted into fulvic acid-like substances, and further degraded into aromatic protein-like and SMP substances. In addition, our proposed ratios(P-L:H-L, Ar-P:SMP and H-L ratio), as supplementary tool, were effective to reveal WSOM composition structure. These results figured out possible pathway of WSOM transformation, and revealed its microbial mechanism in lacustrine sediment.展开更多
以不同种植年限特殊药材根际土壤为材料,采用IlluminaNovaSeq高通量测序法和常规分析方法,分析了种植年限(0 a, 1 a, 4 a, 24 a)对根际土壤化学性质及微生物群落多样性的影响。结果表明:连续种植24 a后,土壤电导率、硝态氮含量显著高于...以不同种植年限特殊药材根际土壤为材料,采用IlluminaNovaSeq高通量测序法和常规分析方法,分析了种植年限(0 a, 1 a, 4 a, 24 a)对根际土壤化学性质及微生物群落多样性的影响。结果表明:连续种植24 a后,土壤电导率、硝态氮含量显著高于其他种植年限。特殊药材连作对土壤细菌α-多样性指数均无显著影响,但土壤细菌丰富度和多样性减少;连续种植24 a真菌α-多样性指数中ACE指数、Chao1指数显著高于种植1 a,真菌丰富度和多样性增加。细菌群落Proteobacteria(变形菌门)、Acidobacteria(酸杆菌门)、Actinobacteria(放线菌门)为优势菌门,Sphingomonas(鞘氨醇单胞菌属)、Xanthomonadaceae(黄单胞菌科)相对丰度随着种植年限增加呈明显上升趋势,未知菌属RB41、Lysobacter(溶杆菌属)相对丰度呈下降趋势。土壤真菌群落Mortierellomycota(被孢霉门)、Ascomycota(子囊菌门)、Basidiomycota(担子菌门)为优势菌门,Mortierella(被孢霉属)相对丰度随种植年限增加呈先增后降趋势,Fusarium(镰刀菌属)、Cladosporium(枝孢属)、Aspergillus(曲霉属)相对丰度均随种植年限增加呈先降后升趋势,连续种植24 a土壤Fusarium相对丰度高于种植1 a、4 a,Fusarium相对丰度增加是导致特殊药材连作障碍的重要原因。Basidiomycota(担子菌门)、Ascomycota(子囊菌门)、Chytridiomycota(壶菌门)、Mucoromycota(毛霉门)相对丰度与土壤电导率、硝态氮呈正相关,pH、硝态氮、电导率等理化性质改变是影响土壤微生物群落变化的重要因素。展开更多
文摘高密度、集约化的凡纳滨对虾养殖常伴随病害的发生,但还不能确定能否利用对虾的肠道细菌差异来指示其健康状况.因此,我们分别采集了健康和发病养殖塘水样和对虾样品,利用Illumina Mi Seq测序技术测定细菌16S rRNA基因,研究细菌的群落结构和多样性.结果表明:细菌群落结构变异主要受水体中亚硝酸盐、叶绿素a和磷酸盐的影响.发病对虾肠道细菌群落多样性显著低于健康对虾.在健康和发病对虾肠道细菌中,运用响应比分析,我们筛选到了28个丰度差异显著的分类操作单元(OTUs),其中来源于放线菌纲、黄杆菌纲和芽孢杆菌纲的OTUs丰度在发病对虾肠道中显著降低,而隶属于梭状芽孢杆菌纲的OTUs丰度在发病对虾肠道显著增加.此外,我们挑选出61个指示物种,主要属于拟杆菌门、变形菌门、厚壁菌门、浮霉菌门和放线菌门.值得注意的是,它们能够区分样品的来源(水样或虾肠道)和健康状态.本研究为对虾病害预测和益生菌开发提供了理论依据.
基金Supported by National Natural Science Foundation of China,No.81273919 and No.81673727National Basic Research Program of China(973 Program)No.2013CB531703
文摘AIM To investigate gut microbial diversity and the interventional effect of Xiaoyaosan(XYS) in a rat model of functional dyspepsia(FD) with liver depression-spleen deficiency syndrome. METHODS The FD with liver depression-spleen deficiency syndrome rat model was established through classic chronic mild unpredictable stimulation every day. XYS group rats received XYS 1 h before the stimulation. The models were assessed by parameters including state ofthe rat, weight, sucrose test result and open-field test result. After 3 wk, the stools of rats were collected and genomic DNA was extracted. PCR products of the V4 region of 16 S rD NA were sequenced using a barcoded Illumina paired-end sequencing technique. The primary composition of the microbiome in the stool samples was determined and analyzed by cluster analysis.RESULTS Rat models were successfully established, per data from rat state, weight and open-field test. The microbiomes contained 20 phyla from all samples. Firmicutes, Bacteroidetes, Proteobacteria, Cyanobacteria and Tenericutes were the most abundant taxonomic groups. The relative abundance of Firmicutes, Proteobacteria and Cyanobacteria in the model group was higher than that in the normal group. On the contrary, the relative abundance of Bacteroidetes in the model group was lower than that in the normal group. Upon XYS treatment, the relative abundance of all dysregulated phyla was restored to levels similar to those observed in the normal group. Abundance clustering heat map of phyla corroborated the taxonomic distribution. CONCLUSION The microbiome relative abundance of FD rats with liver depression-spleen deficiency syndrome was significantly different from the normal cohort. XYS intervention may effectively adjust the gut dysbacteriosis in FD.
文摘凡纳滨对虾养殖过程中,早期阶段是病害易感阶段,而消化道菌群结构与对虾健康关系密切。因此,探讨幼虾的消化道菌群尤其是弧菌类细菌与对虾发病的关系对病害有效防治具有重要意义。本实验采用Illumina测序研究了凡纳滨对虾健康和患病幼虾的消化道细菌群落结构,并基于纯培养和16S r DNA,rec A和pyr H基因序列比对,分析了幼虾消化道中弧菌的主要种类组成。结果发现,健康幼虾消化道中α-变形菌纲和厚壁菌门丰度较高,而患病幼虾中γ-变形菌纲、拟杆菌门、放线菌门和β-变形菌纲较高,其中放线菌门丰度差异显著。基于科水平的响应比分析,发现患病幼虾消化道中动性球菌科和噬菌弧菌科的丰度显著降低,而弧菌科的丰度显著升高。相似度分析发现,驱动群落变异的OTU主要来源于弧菌属、海洋杆状菌属、冷杆菌属、假交替单胞菌属以及未分类至属的红杆菌科和微杆菌科。健康幼虾消化道弧菌组成以锡那罗亚州弧菌为主,而患病幼虾消化道弧菌组成以坎氏弧菌为主。尽管健康和患病幼虾消化道内细菌群落结构整体差异不显著,但一些重要类群丰度变化显著,其特征与已知的生态功能一致。
基金supported by the Strategic Priority Research Program of Chinese Academy of Sciences (No. XDB15010103)the Natural Science Foundation of China (No. 41771284)China Biodiversity Observation Networks (Sino BON)
文摘Although soil bacteria play critical roles in agro-ecosystems, the knowledge of their response to long-term fertilization across the black soil region of Northeast China is limited. In this study, we sequenced 16 S rRNA genes to assess the effects of four long-term fertilization regimes—non-fertilization(NoF), chemical fertilizer(CF), manure(M), and chemical fertilizer plus manure(CFM)—on soil properties and bacterial communities in three locations, the northern, middle, and southern parts, across the black soil region. Results showed that the influence of fertilization regimes on soil properties varied significantly among the three locations. Manure fertilization significantly increased microbial biomass carbon and relative abundance of copiotrophic bacteria. Principal component analysis(PCA)showed that the total bacterial communities were separated into three groups according to the sampling location despite long-term fertilization, and that soil pH was the most important factor in shifting bacterial communities. In addition, similar fertilization regimes resulted in different influences on bacterial community composition, and the most influential soil properties varied among the three locations. Our results highlighted that geographical separation was a more dominant factor affecting bacterial communities than fertilization, and that long-term similar fertilization regimes did not induce consistent changes in bacterial community composition in the black soil region.
基金supported by the National Nature Science Foundation of China (No. 51608002)the China National Critical Project for Science and Technology on Water Pollution Prevention and Control (No. 2017ZX07603-003)the Nture Science Foundation of Anhui Province of China (No. 1908085QD167)。
文摘Lacustrine sediment played important roles in migration and transformation of its water soluble organic matter(WSOM), and the source and composition of WSOM would affect water trophic status and the fate of pollutants. However, we know little about the pathway of WSOM transformation and its driving bacterial communities in lacustrine sediment. In the present study, we investigated the spatial distribution patterns of sediment WSOM and its fluorescent fractions across Lake Chaohu using fluorescence spectroscopy, and explored WSOM compositional structure through our proposed calculated ratios. In addition, we also analyzed sediment bacterial community using Illumina sequencing technology, and probed the possible pathway of sediment WSOM transformation under the mediate of indigenous bacteria. Our results showed that the inflowing rivers affected the spatial distribution patterns of WSOM and its five fractions(including tyrosine-, tryptophan-, fulvic acid-, humic acid-like substances and soluble microbial productions), and sediment WSOM originated from fresh algae detritus or bacterial sources. In parallel, we also found that Proteobacteria(mainly γ-Proteobacteria and δ-Proteobacteria), Firmicutes(mainly Bacilli), Chloroflexi, Acidobacteria, Planctomycetes and Actinobacteria dominate sediment bacterial community. Furthermore, these dominant bacteria triggered sediment WSOM transformation, specifically, the humic acid-like substances could be converted into fulvic acid-like substances, and further degraded into aromatic protein-like and SMP substances. In addition, our proposed ratios(P-L:H-L, Ar-P:SMP and H-L ratio), as supplementary tool, were effective to reveal WSOM composition structure. These results figured out possible pathway of WSOM transformation, and revealed its microbial mechanism in lacustrine sediment.
文摘以不同种植年限特殊药材根际土壤为材料,采用IlluminaNovaSeq高通量测序法和常规分析方法,分析了种植年限(0 a, 1 a, 4 a, 24 a)对根际土壤化学性质及微生物群落多样性的影响。结果表明:连续种植24 a后,土壤电导率、硝态氮含量显著高于其他种植年限。特殊药材连作对土壤细菌α-多样性指数均无显著影响,但土壤细菌丰富度和多样性减少;连续种植24 a真菌α-多样性指数中ACE指数、Chao1指数显著高于种植1 a,真菌丰富度和多样性增加。细菌群落Proteobacteria(变形菌门)、Acidobacteria(酸杆菌门)、Actinobacteria(放线菌门)为优势菌门,Sphingomonas(鞘氨醇单胞菌属)、Xanthomonadaceae(黄单胞菌科)相对丰度随着种植年限增加呈明显上升趋势,未知菌属RB41、Lysobacter(溶杆菌属)相对丰度呈下降趋势。土壤真菌群落Mortierellomycota(被孢霉门)、Ascomycota(子囊菌门)、Basidiomycota(担子菌门)为优势菌门,Mortierella(被孢霉属)相对丰度随种植年限增加呈先增后降趋势,Fusarium(镰刀菌属)、Cladosporium(枝孢属)、Aspergillus(曲霉属)相对丰度均随种植年限增加呈先降后升趋势,连续种植24 a土壤Fusarium相对丰度高于种植1 a、4 a,Fusarium相对丰度增加是导致特殊药材连作障碍的重要原因。Basidiomycota(担子菌门)、Ascomycota(子囊菌门)、Chytridiomycota(壶菌门)、Mucoromycota(毛霉门)相对丰度与土壤电导率、硝态氮呈正相关,pH、硝态氮、电导率等理化性质改变是影响土壤微生物群落变化的重要因素。