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1.
The effect of altitude on the composition and diversity of microbial communities have attracted highly attention recently but is still poorly understood. We used 16S rRNA gene clone library analyses to characterize the bacterial communities from the rhizosphere and roots of Stellera chamaejasme in the Tibetan Plateau. Our results revealed that Actinobacteria and Proteobacteria were dominant bacteria in this medicinal plant in the rhizosphere and root communities. The Shannon diversity index showed that the bacterial diversity of rhizosphere follows a small saddle pattern, while the roots possesses of a hump-backed trend. Significant differences in the composition of bacterial communities between rhizosphere and roots were detected based on multiple comparisons analysis. The community of Actinobacteria was found to be significantly negative correlated with soil available P (p?<?0.01), while the phylum of Proteobacteria showed a positive relationship with available P (p?<?0.05). Moreover, redundancy analysis indicated that soil phosphorus, pH, latitude, elevation and potassium positively correlated with bacterial communities associated with rhizosphere soils. Taken together, we provide evidence that bacterial communities associated with S. chamaejasme exhibited some certain elevational pattern, and bacterial communities of rhizosphere soil were regulated by environmental characteristics along elevational gradients in this alpine ecosystem.  相似文献   

2.
【背景】紫果云杉天然林在维护洮河上游生态环境安全方面发挥着重要作用,不同海拔梯度如何影响紫果云杉根际与非根际细菌多样性、土壤养分因子及三者之间的相关性尚不清楚。【目的】深入探索紫果云杉根际与非根际土壤细菌群落结构组成及受控因子。【方法】采用Illumina Miseq平台对洮河上游不同海拔紫果云杉天然林根际与非根际土壤细菌进行测序分析,分析土壤理化因子与细菌多样性随海拔的变化趋势,并通过相关性与冗余分析探究环境因子对细菌群落的影响。【结果】土壤养分因子随海拔升高呈先增加后降低趋势;根际土养分因子组间差异显著(P<0.05),非根际组间差异不显著(P>0.05)。随海拔升高根际微生物物种多样性指数(H)、均匀度指数(E)、丰富度指数(Chao1/ACE)和OTU数目呈单峰型变化趋势;非根际多样性指数随海拔升高呈双峰型变化趋势。土壤细菌多样性与养分因子密切相关,其中有机质、全氮和碱解氮呈显著正相关(P<0.05),而土壤pH和有效磷与细菌多样性呈负相关但不显著(P>0.05)。不同海拔梯度下紫果云杉天然林细菌群落结构一致性较高,从30个样本中获得7 159个细菌OTU,注释到37个门;细菌优势类群为放线菌门、变形菌门、酸杆菌门和绿弯菌门。不同细菌门对土壤养分因子的响应各不相同,有机质、全氮和碱解氮与变形菌门呈显著正相关(P<0.05)。【结论】土壤理化因子能够显著影响紫果云杉根际与非根际细菌多样性和组成,海拔和水热条件等环境因子对植物和土壤的驱动影响是细菌群落结构稳定组成的重要原因。本研究有助于深入理解紫果云杉天然林土壤细菌多样性的变化和驱动机制,为洮河上游天然林恢复与生态恢复提供借鉴。  相似文献   

3.
【目的】通过对碧塔海湿地不同水分梯度下土壤真菌群落结构及功能类群的分析,以期为湿地资源管理和生态恢复提供参考。【方法】选择滇西北碧塔海湿地不同水分梯度下的土壤,包括常年淹水的沼泽湿地(swamp wetland,SW)、季节性淹水的沼泽化草甸(swamp meadow,SM)和无淹水的草甸(meadow,M),利用Illumina高通量测序和FUNGuild比较分析不同水分梯度下土壤真菌群落结构和功能类群,并探究环境因子对真菌群落的影响。【结果】碧塔海湿地土壤真菌α多样性在不同水分梯度上无显著差异。非度量多维尺度分析和相似性分析表明真菌β多样性在不同水分梯度上存在显著的差异(R=0.501,P=0.001)。碧塔海湿地中真菌优势门为子囊菌门、担子菌门、隐菌门和被孢霉门。在不同水分梯度上担子菌门、被孢霉门和隐真菌门丰度存在显著差异(P<0.05)。优势科为火丝菌科、被孢霉科、古生菌科和珊瑚菌科(P<0.05)。相关分析显示,土壤pH、总氮、硝态氮、铵态氮、铁、钾、蔗糖酶和植物PCoA1与真菌α多样性呈显著相关(P<0.05)。冗余分析和相关性热图分析结果表明,含水率、铵...  相似文献   

4.
Soil microorganisms play an essential role in soil ecosystem processes such as organic matter decomposition, nutrient cycling, and plant nutrient availability. The land use for greenhouse cultivation has been increasing continuously, which involves an intensive input of agricultural materials to enhance productivity; however, relatively little is known about bacterial communities in greenhouse soils. To assess the effects of environmental factors on the soil bacterial diversity and community composition, a total of 187 greenhouse soil samples collected across Korea were subjected to bacterial 16S rRNA gene pyrosequencing analysis. A total of 11,865 operational taxonomic units at a 97% similarity cutoff level were detected from 847,560 sequences. Among nine soil factors evaluated; pH, electrical conductivity (EC), exchangeable cations (Ca2+, Mg2+, Na+, and K+), available P2O5, organic matter, and NO3-N, soil pH was most strongly correlated with bacterial richness (polynomial regression, pH: R2 = 0.1683, P < 0.001) and diversity (pH: R2 = 0.1765, P < 0.001). Community dissimilarities (Bray-Curtis distance) were positively correlated with Euclidean distance for pH and EC (Mantel test, pH: r = 0.2672, P < 0.001; EC: r = 0.1473, P < 0.001). Among dominant phyla (> 1%), the relative abundances of Proteobacteria, Gemmatimonadetes, Acidobacteria, Bacteroidetes, Chloroflexi, and Planctomycetes were also more strongly correlated with pH and EC values, compared with other soil cation contents, such as Ca2+, Mg2+, Na+, and K+. Our results suggest that, despite the heterogeneity of various environmental variables, the bacterial communities of the intensively cultivated greenhouse soils were particularly influenced by soil pH and EC. These findings therefore shed light on the soil microbial ecology of greenhouse cultivation, which should be helpful for devising effective management strategies to enhance soil microbial diversity and improving crop productivity.  相似文献   

5.
为了解野生和栽培阿尔泰银莲花根际土壤微生物多样性的差异,该研究采用Illumina MiSeq高通量测序技术对野生和栽培阿尔泰银莲花根际土壤微生物的群落组成和多样性进行探究。结果表明:(1)野生阿尔泰银莲花根际土壤的真菌多样性显著高于栽培阿尔泰银莲花(P<0.05),而细菌多样性差异不显著(P>0.05); NMDS分析结果显示,野生和栽培阿尔泰银莲花根际土壤真菌群落结构差异更显著。(2)细菌9 566个可操作分类单元(OTUs)涉及39门127纲315目500科886属,真菌2 670个OTUs涉及15门57纲138目293科597属。在门水平上,细菌群落中的变形菌门、酸杆菌门、放线菌门及真菌群落中的担子菌门、子囊菌门、被孢霉门均为野生和栽培阿尔泰银莲花根际土壤优势菌门,但其相对丰度在不同生长方式下存在差异。(3)环境因子关联分析(RDA)结果显示,土壤有机质是影响土壤细菌群落的主要因子(P<0.05),土壤pH、碱解氮和有效磷是影响真菌群落的主要因子(P<0.05)。综上认为,野生和栽培下的阿尔泰银莲花根际土壤微生物群落组成和多样性存在显著差异,这种差异可能与不同生长条件下的土壤理化性质存在密切的联系,该研究结果对阿尔泰银莲花科学种植以及土壤改良具有一定意义。  相似文献   

6.
茶树(Camellia sinensis L.)种植是亚热带丘陵山区主要的土地利用类型,茶园种植模式是影响土壤细菌群落结构的主要人为因素。为揭示种植模式和坡位对土壤细菌群落结构和功能的影响,选取两种不同种植模式(常规和有机种植模式)和3个坡位(上、中、下坡位)表层土壤(0-20cm)为对象,采用野外调查、Illumina Miseq高通量测序和PICRUSt2功能预测相结合的研究方法,研究不同种植模式和坡位下土壤细菌群落结构和功能特征,阐明土壤理化性质对土壤细菌群落结构的影响,预测土壤细菌功能特征。研究结果表明:(1)与常规种植模式相比,有机种植模式茶园土壤细菌Alpha多样性有所降低,其中中坡位常规茶园土壤细菌Sobs和Simpson指数显著高于有机茶园(P<0.05);从坡面尺度看,两种种植模式下土壤细菌Alpha多样性指标均以中坡位最高,其中常规茶园中坡位土壤细菌Ace和Simpson指数均显著高于下坡位(P<0.05)。(2)各样地茶园土壤细菌共获得29个门82个纲190个目316个科517个属929个种,主要细菌优势门为绿弯菌门(Chloroflexi)、放线菌门(Actinobacterita)、变形菌门(Proteobacteria)、酸杆菌门(Acidobacteria)。土壤细菌群落优势属以AD3、热酸菌属(Acidothermus)、norank_f__norank_o__Elsteralesnorank_f__Xanthobacteraceae为主。(3)主坐标分析(PCoA)显示,不同种植模式的茶园土壤细菌群落结构存在明显差异,常规种植模式下不同坡位之间的土壤细菌群落结构有显著差异(P<0.05),有机种植下不同坡位之间的土壤细菌群落结构无显著差异。置换多元方差分析(PERMANOVA)结果表明不同种植模式的土壤细菌群落结构差异显著(P<0.05),而不同坡位土壤细菌群落结构无显著差异(P>0.05),说明种植模式对茶园土壤细菌群落结构的影响更大。组间群落差异分析(LEfSe)表明,57个差异物种对种植模式非常敏感,不同种植模式富集了不同的细菌类群。(4) PICRUSt2功能预测共获得6个一级功能层和46个二级功能层,表现出功能上的丰富性,土壤细菌群落在代谢、遗传信息处理和环境信息方面功能活跃。有机种植模式提高了土壤细菌碳水化合物代谢、氨基酸代谢、膜运输、信号转导、脂质代谢及外源生物降解与代谢功能。(5)相关分析和冗余分析结果表明,土壤碱解氮、速效磷、全磷、全钾和pH是影响土壤细菌群落丰度和多样性的主要影响因子。总体而言,有机种植模式改变了茶园土壤细菌群落结构和代谢功能,增加土壤有益细菌的数量,有利于保持茶园土壤可持续的生态环境。  相似文献   

7.
Above- and below-ground organisms are closely linked, but how elevational distribution pattern of soil microbes shifting across the treeline still remains unknown. Sampling of 140 plots with transect, we herein investigated soil bacterial distribution pattern from a temperate forest up to a subalpine meadow along an elevational gradient using Illumina sequencing. Our results revealed distinct elevational patterns of bacterial diversity above and below the treeline in responding to changes in soil conditions: a hollow elevational pattern in the forest (correlated with soil temperature, pH, and C:N ratio) and a significantly decreasing pattern in the meadow (correlated with soil pH, and available phosphorus). The bacterial community structure was also distinct between the forest and meadow, relating to soil pH in the forest and soil temperature in the meadow. Soil bacteria did not follow the distribution pattern of herb diversity, but bacterial community structure could be predicted by herb community composition. These results suggest that plant communities have an important influence on soil characteristics, and thus change the elevational distribution of soil bacteria. Our findings are useful for future assessments of climate change impacts on microbial community.  相似文献   

8.
深入探究山地生态系统植物群落多样性与关键土壤因子的关系及土壤因子在植物群落构建与多样性维持中的重要作用是区域生物多样性保护和生态系统服务功能综合提升的基础。本文采用冗余分析(Redundancy analysis,RDA)和相关分析揭示了贺兰山东坡典型植物群落多样性垂直分布格局与土壤因子的关系。结果表明:(1)贺兰山东坡植物群落多样性具有明显的垂直分布格局,针阔叶混交林植物物种组成最为丰富,中域效应明显;不同层次植物多样性随海拔升高变化趋势不一致且各自在不同海拔间差异显著(P<0.05),植物多样性大体表现为草本层 > 灌木层 > 乔木层。(2)研究区土壤因子沿海拔梯度变化趋势不同,均存在显著差异(P<0.05),其中土壤含水量(SM)、有机碳(SOC)和全氮(TN)含量空间变异性较大;高山灌丛草甸土壤养分含量最高,高海拔区土壤P限制高。(3)9个土壤因子解释了研究区总体植物多样性89.68%的生态信息,与植物多样性具有较强的相关性,影响不同层次植物多样性垂直分异的关键土壤因子略有不同。综上,土壤有机碳、pH、碳磷比、含水量是影响贺兰山东坡植物多样性空间分布的主要驱动因子。  相似文献   

9.
The elevational alpha biodiversity gradient in mountain regions is one of the well‐known ecological patterns, but its beta diversity pattern remains poorly known. Examining the beta diversity and its components could enhance the understanding of community assembly mechanism. We studied the beta diversity pattern of the soil enchytraeids along a distinct elevational gradient (705–2,280 m) on the Changbai Mountain, the best‐preserved mountain in northeastern China. The overall abundance‐based community dissimilarity was relatively high (ca. 0.70), largely due to the balanced‐variation component (85%). The overall dissimilarity and its balanced‐variation (substitution) component were related to both local environmental heterogeneity and elevational distance, with the environmental relationships being stronger. In contrast, the abundance‐gradient (subsets) component was not related to the two gradients. The same important spatial and environmental variables were detected in structuring overall dissimilarity and substitution component, different from that in subsets component. Variation partitioning analysis showed that environmental control played a more important role than spatial (vertical and horizontal) factors in structuring the patterns of overall beta diversity and its two components. The predictive power of multivariate analysis was higher for the substitution component (nearly 50%) and overall dissimilarity (35%), but much lower for subsets components (<4%). These findings implied that abundance‐based beta diversity patterns of the soil enchytraeids were the results of different ecological processes (e.g., environmental sorting and dispersal limitation), operating in the two antithetic components. Our study showed the substitution and loss of individuals reflecting different ecological processes and highlights the importance of partitioning beta diversity in assessing biodiversity patterns and their causes.  相似文献   

10.
【目的】通过研究林地转型耕地对土壤编码碱性磷酸酶基因的细菌群落丰度、多样性和结构的影响,为丘陵区耕地长期施肥下农田土壤微生物多样性丧失的影响机制以及未来的退耕还林过程中土壤微生物多样性的提升和土地可持续利用研究提供一些基础数据和技术支撑。【方法】采用实时荧光定量PCR (real-time quantitative PCR,qPCR)和高通量测序技术解析土壤编码碱性磷酸酶基因的细菌群落的丰度、多样性和结构变化,并耦合土壤化学性质分析,明确土壤编码碱性磷酸酶基因的细菌群落丰度和多样性与土壤化学性质的关系以及关键的驱动因子。【结果】林地垦殖为农田后,长期施肥导致土壤酸化,pH从5.58降至4.72,而土壤速效磷则从2.49 mg/kg增至49.3 mg/kg。相应地,耕地土壤编码碱性磷酸酶基因的细菌群落的丰度和Shannon指数均显著低于林地。基于编码碱性磷酸酶的phoD基因(alkaline phosphatase-encoding gene)序列的物种分类表明,丘陵区土壤编码碱性磷酸酶基因的细菌群落的优势门为变形菌门(Proteobacteria)、蓝藻门(Cyanobacteria)、浮霉菌门(Planctomycetes)、放线菌门(Actinobacteria)、厚壁菌门(Firmicutes)和疣微菌门(Verrucomicrobia),其中林地土壤的蓝藻门的相对丰度显著高于耕地。耕地土壤的慢生根瘤菌属(Bradyrhizobium)和芽孢杆菌属(Bacillus)的相对丰度显著高于林地,而中慢生根瘤菌属(Mesorhizobium)、假单胞菌属(Pseudomonas)、Chlorogloea属、Gemmata属、Phormidesmis属和Pseudolabrys属的相对丰度显著低于林地。土壤编码碱性磷酸酶基因的细菌群落结构因林地转型耕地而发生显著改变。phoD基因丰度和Shannon指数与pH显著正相关,而与总磷、速效磷、硝态氮和铵态氮均显著负相关,其中土壤速效磷是这些影响因素中影响最强烈的,长期施用无机磷肥导致含碱性磷酸酶的土壤细菌群落对有机磷分解的能力退化。【结论】林地转型耕地加之长期施肥改变了土壤pH和速效磷,并在其他理化因子的协同驱动下,导致土壤编码碱性磷酸酶基因的细菌群落丰度、多样性和结构的显著变化。  相似文献   

11.
神农架国家公园林线过渡带土壤真菌多样性   总被引:1,自引:0,他引:1  
盛玉钰  丛静  卢慧  杨开华  杨林森  王敏  张于光 《生态学报》2018,38(15):5322-5330
林线过渡带是陆地生态系统对气候变化响应的敏感区域,研究林线过渡带土壤真菌的群落结构和形成机制,对于预测气候变化对土壤养分循环和维持陆地生态系统功能的影响具有重要意义。利用Illumina高通量测序技术分析了神农架国家公园林线上下的灌木林和针叶林的土壤真菌群落结构和多样性。结果表明,在真菌物种组成上,两种植被类型的土壤优势菌门、属和种类不同,针叶林和灌木林的优势菌门分别是担子菌门(Basidiomycota)和接合菌门(Zygomycota)。除趋势对应分析(DCA)和不相似性检验(Dissimilarity test)表明两种林型的土壤真菌群落结构组成存在显著差异,且针叶林土壤真菌Shannon指数、Chao值和Richness指数均显著(P0.05)高于灌木林。典范对应分析(CCA)和Mantel检验显示土壤真菌群落结构与土壤p H、植物多样性、土壤温度和土壤湿度存在显著相关性。因此,林线过渡带上下的土壤真菌群落结构和多样性存在显著差异,土壤p H、植物多样性、土壤湿度和土壤温度可能是影响土壤真菌群落结构的重要因素。  相似文献   

12.
关健飞  曹阳 《生态学报》2020,40(14):4929-4941
冻土是气候变化的敏感区,冻土中细菌对于预测冻土和气候之间的潜在反馈机制至关重要,研究冻土区土壤中细菌的多样性和种群结构将有助于及时检测环境变化并采取有效的应对措施。以黑龙江省表层冻土为研究对象,运用Illumina MiSeq高通量测序分析技术,系统分析黑龙江表层冻土细菌群落结构组成和功能特征,探究影响因素。结果表明,得到的785640条原始序列可划分为30个门,109个纲,209个目,326个科,512个属,598个种。优势菌门主要包括Proteobacteria、Actinobacteria、Acidobacteria、Chloroflexi、Bacteroidetes、Verrucomicrobia,在P0.01水平上,Proteobacteria与Actinobacteria、Chloroflexi极显著负相关,与Acidobacteria极显著正相关,Actinobacteria与Acidobacteria极显著负相关,与Chloroflexi极显著正相关,Acidobacteria和Chloroflexi之间则无显著相关性。属水平上,Aetherobacter属在各样本之间显著性差异最大,Flavobacteriu属和Burkholderia属,Microlunatus属和Massilia属之间呈现显著负相关。RDA多元回归分析发现,土壤pH是影响细菌群落结构组成的最主要因子,门水平上与Crenarchaeota、Verrucomicrobia、Thermi呈极显著正相关,与Elusimicrobia呈极显著负相关;属水平上,与Arthrobacter属、Blastococcus属、Chelatococcus属在P0.001水平上呈现显著正相关。基于细菌基因组的16S rRNA序列对菌群代谢功能进行预测发现,细菌群落主要代谢功能表现在膜转运功能、氨基酸代谢功能以及碳水化合物代谢功能三方面。黑龙江省区域尺度范围内,表层冻土中细菌群落结构分异主要受土壤理化性质影响,而土壤利用方式对微生物群落结构影响不显著。  相似文献   

13.
辽东山区典型人工针叶林土壤细菌群落多样性特征   总被引:9,自引:2,他引:7  
为揭示不同人工林树种对土壤养分和土壤微生物群落的影响,采用Illumina MiSeq高通量测序和OTU分析法比较辽东山区白石砬子自然保护区落叶松人工林(LGe)和红松人工林(PKe),以及辽宁省森林经营研究所实验林场落叶松人工林(LGd)和红松人工林(PKd)土壤细菌群落结构的差异,同时测定土壤理化性质,探讨土壤细菌群落结构、树种和土壤环境因子的相关性。研究结果表明:(1) LGe和PKe土壤全碳、全氮和碱解氮的含量无显著差异,LGd显著高于PKd。(2)从群落组成来看,该地区落叶松和红松人工林中土壤主要由34个门类群的菌群组成,优势菌群包括变形菌门、放线菌门、酸杆菌门、绿弯菌门、疣微菌门和芽单胞菌门。(3)从群落结构来看,LGe和PKe土壤细菌的多样性和丰富度指数无显著差异,PKd的多样性指数显著极高于LGd,丰富度指数无显著差异,且Metastats分析结果表明,较LGd和PKd相比,LGe和PKe在门水平和属水平上显著差异的个数较少,表现为趋同性。(4)优势细菌类群相对丰度和土壤理化性质的RDA和相关性分析表明,土壤p H、全氮、碱解氮的含量以及C/N是本区针叶林细菌群落结构的主要影响因子。综合分析表明,在保护区选择单一树种落叶松或红松造林对改善土壤养分及优化微土壤细菌群落结构无显著差异,而在实验林场选择落叶松更有利于提高土壤肥力。  相似文献   

14.
【目的】探讨青海省农田土壤细菌多样性及群落结构组成。【方法】采用高通量测序技术分析都兰县、互助县、共和县和大通县种植小麦、油菜、青稞土壤细菌群落结构组成及多样性差异,并解析其与土壤理化特性的关系。【结果】4个地区的土壤pH、水分、有机质、Chao1指数、Shannon指数、线性判别分析效应大小(linear discriminant analysis effect size, LEfSe)组间差异这些指标中部分指标存在极显著差异性(P<0.01),而3种作物的这些指标无显著差异(P>0.05)。主成分分析(principal component analysis, PCA)显示,不同区域细菌群落组成差异性较大,3种作物农田土壤细菌群落、物种组成相似度较高。4个地区共有3 127个可操作性分类单元(operational taxonomic units, OTUs),3种作物农田土壤细菌共有OTUs为3 694个;细菌物种隶属于36门93纲192目276科450属423种;4个地区或3种作物土壤具有相似的优势门、属、种,但相对丰度不同。水分、pH、有机质与Chao1、Shannon存在显著相关性,pH、有机质与未分类种、unclassified RB41、unclassified Sphingomonas具有显著正相关或负相关。Chao1、Shannon与unclassified Sphingomonas显著负相关,与unclassified RB41、unclassified Vicinamibacteraceae显著正相关。【结论】区域差异对土壤的理化性质、细菌群落结构和多样性具有显著影响,相较于作物而言其影响更加明显。  相似文献   

15.
胡冬  吕光辉  王恒方  杨启  蔡艳 《生态学报》2021,41(17):6738-6748
荒漠生态系统多样性的研究对维持荒漠区群落稳定性有着重要意义。以艾比湖流域荒漠植物群落为研究对象,基于野外样方调查数据及实验分析,探讨不同水分梯度下植物多样性与稳定性的变化规律及土壤因子对二者的影响。结果表明:(1)随土壤水分含量下降,Shannon-Wiener多样性指数(H)、Simpson多样性指数(D)、Pielou均匀度指数(J)、Margalef丰富度指数(R)和种群密度稳定性(ICV)指数均呈下降趋势,且当土壤含水量低于4.65%时,荒漠植物多样性与群落稳定性总体显著降低(P<0.05);(2)不同水分梯度下影响艾比湖流域植物多样性的土壤因子具有差异性,高水梯度为硝态氮与有机质,中水梯度下影响植物多样性的因子为pH,低水梯度为全氮和有机质;(3)仅在环境适宜的情况下,土壤因子(土壤含盐量与有机质)才能对群落稳定性产生显著影响(P<0.01);(4)三种梯度下,物种多样性均对群落稳定性有显著性影响(P<0.001),植物多样性与群落稳定性存在正相关关系。  相似文献   

16.
Conversion of native broadleaf forest (NF) and introduction of broadleaf species into monospecific Cunninghamia lanceolata plantations are silvicultural practices driven by the increasing demand for timber production. This study was conducted to evaluate the impacts of successive planting of C. lanceolata and mixed plantations (C. lanceolata-Michelia macclurei, CFM; C. lanceolata-Alnus cremastogyne, CFA; C. lanceolata-Kalopanax septemlobus, CFK) on microbial community diversity. Microbial biomass (MBC) was assessed using chloroform fumigation-extraction. Using denaturing gradient gel electrophoresis (DGGE), we examined the biodiversity within eubacterial (16S rRNA gene) and fungal (28S rRNA gene) species and two genes involved in N cycling: nifH and amoA. Microbial community diversities and microbial biomass decreased as NF was substituted by successive plantings of C. lanceolata plantations, whereas the trend reversed after introducing the broadleaf, M. macclurei, into pure C. lanceolata plantations. A strong positive correlation between MBC changes and total organic C (TOC), total organic N (TON), available N and extractable C (Cext) were seen, which suggests that MBC was tightly coupled with the content of soil organic matter. The Shannon index showed that bacterial diversity and two functional genes (nifH and amoA) diversities associated with monospecific C. lanceolata plantations were lower than that of NF or mixed C. lanceolata plantations, such as CFM and CFA, whereas the opposite was seen for fungal diversity. Bacterial diversity was positively correlated with pH, TOC, TON, Cext and NH 4 + -N; while fungal diversity was positively correlated with C/N ratio and negatively correlated with pH. Both nitrogen fixing and ammonia oxidizing bacterial diversities were positively correlated with pH. Thus, soil pH was not only significantly positively correlated with bacterial diversity (r?=?0.502, P?<?0.05), nifH gene diversity (r?=?0.564, P?<?0.01) and amoA gene diversity (r?=?0.659, P?<?0.001), but also negatively correlated with fungal diversity (r?=?? 0.505, P?<?0.05), which seemed to be responsible for the discrimination of the soil microbial communities among these plantations. These findings suggest that different silvicultural practices have significant impacts on the soil microbial community through influences on soil chemical properties.  相似文献   

17.
揭示不同恢复阶段热带森林土壤细菌呼吸季节变化及其主控因素,对于探明土壤细菌呼吸对热带森林恢复的响应机制具有重要的科学意义。以西双版纳不同恢复阶段热带森林(白背桐群落、崖豆藤群落和高檐蒲桃群落)为研究对象,运用真菌呼吸抑制法及高通量宏基因组测序技术分别测定土壤细菌呼吸速率和细菌多样性,并采用回归分析及结构方程模型揭示热带森林恢复过程中土壤细菌多样性、pH、土壤碳氮组分变化对土壤细菌呼吸速率的影响特征。结果表明:1)不同恢复阶段热带森林土壤细菌呼吸速率表现为:高檐蒲桃群落((1.51±0.62)CO2 mg g-1 h-1)显著高于崖豆藤群落((1.16±0.56)CO2 mg g-1 h-1)和白背桐群落((0.82±0.60)CO2 mg g-1 h-1)(P<0.05)。2)不同恢复阶段土壤细菌呼吸速率呈显著的单峰型季节变化(P<0.05),最大值均出现在9月:高檐蒲桃群落((...  相似文献   

18.
高原山地是对全球气候变化最为敏感的脆弱生态系统之一,研究高原山地土壤细菌群落沿海拔变化特征,对于揭示受气候变化和人为干扰的山地微生物群落结构和功能有十分重要的科学意义。研究以西藏岗巴拉山作为研究对象,运用Illumina MiSeq高通量测序技术,基于精细样方尺度分析了岗巴拉山沿海拔梯度土壤细菌群落组成和多样性的变化特征及其驱动因子。结果表明:岗巴拉山土壤细菌共包含36门125纲307目477科838属1878种,将12个海拔带分为高中低3组(低海拔从3800-4100 m、中海拔从4200-4500 m、高海拔从4600-4900 m),中海拔总分类操作单元(OTU)数最多,特有OTU数最少,土壤细菌群落丰富度随海拔升高呈单峰趋势,但其特异性随海拔呈U型分布格局。岗巴拉山土壤细菌群落中的优势菌门是放线菌门、酸杆菌门、变形菌门、绿弯菌门、疣微菌门和芽单胞菌门等,土壤细菌群落Shannon多样性指数随海拔升高而逐渐减小,而Simpson多样性指数在高海拔最高,Chao指数随海拔升高呈单峰变化趋势。主坐标分析(PCoA)表明土壤细菌群落结构在不同海拔梯度上存在显著差异,且低海拔土壤细菌群落组内也存在显著差异。冗余分析(RDA)表明海拔、pH、总氮、总磷和有机碳对土壤细菌群落结构有显著影响,与环境因子相关性分析表明海拔、pH、总氮、总磷和有机碳与土壤细菌群落结构显著相关,曼特尔检验表明pH和海拔是影响土壤细菌群落的关键因素。岗巴拉山土壤细菌多样性沿海拔梯度呈单调下降趋势,pH是影响土壤细菌群落沿海拔变化特征的关键环境因子,总氮、总磷和有机碳也是影响土壤细菌群落的重要环境因子。  相似文献   

19.
【背景】土壤细菌对环境变化非常敏感,是土壤环境质量检测的重要指标。【目的】为研究不同季节冬水田紫色土细菌的垂直分布规律,揭示土壤细菌群落结构和物种多样性与土壤环境因子的相互关系。【方法】以冬水田紫色土为研究对象,分别于2020年8月(夏季)和2021年 1月(冬季)采集不同深度土壤样品,对土壤细菌16S rRNA基因进行Illumina MiSeq高通量测序,分析在不同季节细菌群落组成和多样性的垂直分布规律。【结果】冬水田紫色土细菌ACE指数、Chao1指数和Shannon指数均呈现出夏季高于冬季,并且随土层深度增加呈现降低的趋势。冬水田紫色土优势菌门为变形菌门(Proteobacteria)、绿弯菌门(Chloroflexi)、酸杆菌门(Acidobacteria)、硝化螺旋菌门(Nitrospirae)、放线菌门(Actinobacteria)和浮霉菌门(Planctomycetes),优势菌属为DesulfobaccaHaliangiumAnaeromyxobacterCandidatus_OmnitrophusDefluviicoccusChloroflexiActinobacteria在夏季相对丰度较高,ProteobacteriaNitrospirae在冬季相对丰度较高;AnaeromyxobacterCandidatus_Omnitrophus在夏季相对丰度较高,DesulfobaccaHaliangiumDefluviicoccus在冬季相对丰度较高。冗余分析(redundancy analysis,RDA)和环境因子热图分析结果均表明,总氮(total nitrogen,TN)、土壤有机质(soil organic matter,SOM)和土壤氧化还原电位(soil redox potential,Eh)是显著影响紫色水稻土细菌群落的主要因子。【结论】本研究丰富了对冬水田紫色水稻土细菌群落组成和多样性的认识,证实了不同季节冬水田紫色土细菌群落组成和多样性存在差异。  相似文献   

20.
对太白山巴山冷杉(Abies fargesii)-糙皮桦(Betula utilis)混交林及其环境因子进行了调查,采用CCA排序法分析了环境因子与物种分布的关系,偏CCA评估了各个环境因子的重要程度,GAM拟合了物种丰富度对各个环境因子的响应。结果显示,土壤pH、海拔、岩石盖度对物种分布有显著影响(P<0.05),其影响强度为:海拔>岩石盖度>pH,其它环境因子(土壤有机质、全N、全P含量和坡度)影响不显著(P>0.05)。GAM拟合结果表明,土壤pH、岩石盖度、海拔和全N含量是影响物种丰富度的主要环境因子(P<0.01),物种丰富度随pH值升高而增加,随岩石盖度和海拔升高而减小,而随全N含量的变化较为复杂;土壤有机质、全P含量和坡度对物种丰富度没有显著影响(P>0.05)。巴山冷杉-糙皮桦混交林物种分布及多样性是由海拔、岩石盖度和土壤pH值为主的多种环境因子综合作用的结果。  相似文献   

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