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1.
接种微生物菌剂对猪粪堆肥过程中细菌群落多样性的影响   总被引:10,自引:1,他引:9  
利用PCR-DGGE方法研究了接种外源微生物菌剂对鲜猪粪高温好氧堆肥过程中细菌群落多样性的影响.结果表明:接种外源微生物菌剂可以促进堆肥的顺利进行,比不接种处理的高温期提前2 d.DGGE图谱分析表明,堆肥中优势细菌群落组成发生了明显的更迭现象,不同堆肥时期细菌群落的Shannon-Wiener指数呈显著差异.目的条带克隆测序结果表明,整个堆肥过程Clostridium stercorarium subsp. thermolacticum sp.一直是优势菌属,不经培养细菌、Bacillus coagulans sp.、Clostridium thermocellum sp.在接种外源微生物菌剂处理的第10、16天成为优势菌属,不经培养的Firmicutes sp.和不经培养的 delta proteobacterium分别在未接种外源微生物菌剂处理堆肥发酵的第5天和第16天成为优势菌属.非优势菌属Ureibacillus thermosphaericus、不经培养的Silvimonas sp.出现在堆肥腐熟后期,不经培养的土壤细菌主要出现在堆肥初期和高温初期.UPGMC聚类分析表明,接种外源微生物菌剂明显影响了堆肥不同时期的细菌群落结构组成.堆肥化过程中细菌DGGE图谱主成分分析表明,细菌群落变化主要受外源接种微生物菌剂的影响.  相似文献   

2.
高通量测序技术分析猪粪堆肥过程中微生物群落结构变化   总被引:4,自引:0,他引:4  
为了解猪粪堆肥过程中微生物群落结构组成及多样性的变化,采集猪粪堆肥过程的三个代表性样品—新鲜猪粪、高温堆肥、腐熟堆肥,利用Illumina Miseq高通量测序技术对16S rRNA V4~V5可变区序列进行测序,分别获得37 009、42 470、36 713条有效序列及328、280、160个操作分类单元(OTU)。Alpha多样性分析表明,在堆肥过程中微生物群落丰富度呈现降低趋势,而多样性呈现先上升后下降趋势。随着堆肥的进行,在门水平上,厚壁菌门、拟杆菌门和软壁菌门相对丰度降低,而变形菌门和放线菌门相对丰度升高;在属水平上,Turicibacter、Terrisporobacter、Parabacteroides、Clostridium sensu stricto、Corynebacterium等来自动物肠道的微生物相对丰度明显下降,Thermopolyspora、Thermomonospora、Thermobifida、Halocella等耐热耐盐微生物成为最主要优势菌。堆肥过程不同菌群优势度的变化是微生物与堆肥中各理化因子相互作用的结果。  相似文献   

3.
【目的】利用大田实验和分子生物学技术进行水稻促生菌解淀粉芽孢杆菌(Bacillus amyloliquefaciens) FH-1改良土壤微生物组的研究,以初步了解解淀粉芽孢杆菌FH-1的促生机理,为微生物肥料的研制和应用提供理论基础。【方法】设置菌剂FH-1处理(FH)和空白对照(CK)的水稻大田实验,测定植物生理性状包括水稻株高、根长和穗长,并统计水稻的穗数、单穗粒数和千粒重;利用实时荧光定量PCR技术分析水稻根际土壤细菌的数量;利用16SrRNA基因高通量测序解析水稻根际土壤微生物的物种组成;进一步通过Pearson相关统计分析研究水稻-土壤-微生物之间的相互作用。【结果】与空白对照(CK)相比,菌剂FH-1处理(FH)中植物的株高、根长、穗长、单株穗数、单穗粒数、千粒重显著提高,但是土壤理化性质无显著性差异。菌剂FH-1处理(FH)对细菌总数量无显著影响,但是可显著降低微生物α多样性,显著提高土壤中的γ-变形菌纲、绿弯菌门,显著降低土壤中的β-变形菌纲、疣微菌门的丰度(P0.05),LEfSe分析显示菌剂FH-1处理(FH)土壤中富集的微生物有19个,主要包括绿弯菌门、PAUC34f、S035、4-29、芽孢杆菌纲、芽孢杆菌目、浮霉菌纲、A31、H39、S0208、Gemmatales、红螺菌目、HOC36、AKIW659、0319-6A21、生丝微菌科、红螺菌科、EB1003、HB2-32-21。相关性分析结果表明施加菌剂FH-1及其富集的相关物种与水稻植株的各个特性呈正相关。【结论】在水稻大田种植中施加微生物菌剂FH-1,可显著促进水稻生长,对土壤理化性质无显著影响,但可以显著改变微生物群落结构和功能,富集有益物种。因此我们推测解淀粉芽孢杆菌FH-1是通过调控根际微生物群落结构和功能促进水稻生长和发育。  相似文献   

4.
生物炭对猪粪堆肥过程中细菌群落结构的影响   总被引:4,自引:0,他引:4  
【背景】细菌群落多样性影响堆肥过程,生物炭影响细菌的生长,但生物炭对猪粪堆肥细菌群落结构的影响尚未见报道。【目的】根据细菌群落结构和堆肥温度的变化规律,添加适量的生物炭到猪粪堆肥,以提高堆肥主要细菌的占比和堆肥效率,为推广生物炭和猪粪堆肥的联合应用提供参考。【方法】设计0%、3%、6%和9%的生物炭添加量,在堆肥的高温期和温度稳定期分别取样,总共8个样品。根据IlluminaMiSeq对细菌16SrRNA基因的高通量测序结果,分析生物炭添加量和堆肥温度对猪粪堆肥细菌群落结构的影响。【结果】在细菌门水平上,猪粪堆肥主要的细菌有Proteobacteria、Actinobacteria、Bacteroidetes、Chloroflexi、Gemmatimonadetes、Firmicutes、Acidobacteria和Deinococcus-Thermus;在细菌属水平上,猪粪堆肥主要的细菌有Chryseolinea、Subgroup_6_norank、Steroidobacter、Anaerolineaceae、Nonomuraea、Longispora、Bacillus、Sporacetigenium、Luteimonas、Phyllobacteriaceae、Truepera、Rhodothermacea和Aquamicrobium。生物炭添加量对猪粪堆肥主要细菌的生长既有促进作用,也有抑制作用。随着生物炭添加量的增加,Bacillus、Streptomyces、Rhodothermaceae和Firmicutes的丰度随之增加,而Chryseolinea、Longispora和Steroidobacter的丰度却随之减少。Firmicutes、Bacillus和Streptomyces的丰度在堆肥高温期要大于堆肥温度稳定期,而Chloroflexi、Anaerolineaceae和Longispora则相反。猪粪堆肥高温期的细菌多样性要明显大于堆肥温度稳定期。堆肥高温期的细菌群落达到70个,远多于堆肥温度稳定期的15个;其中对猪粪堆肥起主要作用的细菌,堆肥高温期时达到7个(Rhizobiales、Incertae_Sedis、Proteobacteria、Alphaproteobacteria、Xanthomonadales、Gammaproteobacteria和Steroidobacter),而堆肥温度稳定期只有3个(Micromonosporales、Longispora和Micromonosporaceae)。猪粪堆肥添加生物碳后,环境因子(电导率、含水量、温度和pH)对堆肥主要的细菌不能产生显著的影响。β-Proteobacteria、Rhodothermaceae、Phyllobacteriaceae和Bacterium是含水量、温度和pH影响最大的细菌。【结论】生物碳添加量和堆肥温度能改变猪粪堆肥的细菌群落结构,在猪粪堆肥高温期能显著增加细菌的数量和多样性。猪粪堆肥的电导率、含水率、温度和pH能影响堆肥细菌的生长,但对堆肥主要细菌的影响不显著。  相似文献   

5.
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 MiSeq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.  相似文献   

6.
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.  相似文献   

7.
【目的】本文以三亚湾泰来草根际沉积物为主要研究对象,研究室内培养条件下泰来草根际沉积物微生物对于高温处理和海草定殖的响应。【方法】通过对培养过程中水体物理化学参数(如pH、溶解氧、磷酸盐、硝酸盐、亚硝酸盐和铵盐)的监测以分析环境因子的变化;16S rRNA扩增子测序研究微生物群落结构的动态响应;通过荧光定量分析16SrRNA基因丰度变化。【结果】研究表明高温处理组在培养35 d后海水中磷酸盐、硝酸盐、亚硝酸盐和铵盐含量以及pH均要高于模拟原位环境的对照组,高温处理组根际沉积物微生物丰度在培养过程中呈现先上升后降低的趋势,同时,高温处理组根际微生物中初始阶段由厚壁菌门(32.4%)、变形菌门(22.92%)和梭杆菌门(27.21%)占据优势,培养一段时间后,厚壁菌门和梭杆菌门大幅度减少,逐渐被蓝细菌门和放线菌门所替代,最终由变形菌门(51.1%)占据主导地位,其中,属于硫还原细菌的脱硫杆菌科(Desulfobacteraceae)和硫氧化细菌的螺杆菌科(Helicobacteraceae)的细菌丰度不断提高。【结论】揭示了海草的定殖会提高高温处理后沉积物的多样性,并塑造和改善其根际沉积物微生物群落组成。  相似文献   

8.
【背景】低温是影响北方温室番茄稳产与高产的主要障碍因子,前期研究明确链霉菌(Streptomycessp.)TOR3209能显著提高番茄的耐低温能力。【目的】揭示菌株TOR3209提高番茄抗冷性与番茄内生细菌结构和特性的关系。【方法】在番茄根部施用TOR3209菌剂,分别在低温(5℃)和常温(25℃)条件下,采用平板分离法和16S rRNA基因序列扩增研究菌株TOR3209处理对番茄根系和茎部内生细菌菌群结构的影响。【结果】共分离、纯化获得内生细菌69株,分属4门20科28属。分析发现,与对照相比,在低温和常温下,接种菌株TOR3209均可提高番茄根茎内生细菌群落的丰富度和多样性。在门水平上,番茄根茎厚壁菌门的相对丰度显著提高,变形菌门和拟杆菌门的相对丰度显著降低;在属水平上,芽孢杆菌属的相对丰度显著提高,假单胞菌属和黄杆菌属的相对丰度则显著降低;在种水平上,菌株TOR3209处理能显著提高番茄根茎解淀粉芽孢杆菌(Bacillusamyloliquefaciens)、贝莱斯芽孢杆菌(Bacillusvelezensis)和阿氏芽孢杆菌(Bacillus aryabhattai)等共有芽...  相似文献   

9.
十字花科作物根肿病对根际土壤微生物群落的影响   总被引:1,自引:0,他引:1  
为探究根肿病对十字花科作物根际土壤微生物多样性的影响,以罹病大白菜和健康株根际土壤为研究对象,采用高通量测序技术对2组样本的细菌16S rDNA和真菌ITS基因进行序列测定,分析了样本间的微生物群落结构和组成差异,同时测定根际土壤理化性质,探讨根肿病、土壤微生物群落、土壤环境因子三者的相关性。研究表明:1)患病植株根际土壤pH和总磷、总钾、碱解氮、速效钾含量显著低于正常植株根际土,而交换性钙含量明显增加。2)根肿病的发生降低了根际土壤中细菌种群的丰富度和多样性程度,但对根际土壤中的真菌α-多样性无明显影响。3)变形菌门、拟杆菌门、放线菌门等是所测土壤样本的主要优势细菌种群,其中患病植株根际土壤中拟杆菌门丰度显著高于健康植株根际土壤,放线菌门丰度则显著降低(P0.05)。优势细菌纲为γ-变形菌纲、拟杆菌纲、α-变形菌纲、放线菌纲、酸杆菌纲等,2组土壤样本间多种优势细菌纲相对丰度差异显著。4)根际土壤优势真菌类群为子囊菌门、被孢霉门、担子菌门和壶菌门,其相对丰度在患病和健康株根际土壤样本中均有明显差异。主要真菌纲为散囊菌纲、被孢霉纲、锤舌菌纲等,并且土壤样本间的多种优势真菌纲相对丰度存在显著性差异。5)主坐标分析结果表明病株根际土壤与健康株根际土壤细菌和真菌群落结构差异明显,冗余分析结果显示速效钾和交换性钙是根际土壤微生物群落变化的主要影响因素。研究结果为揭示根肿病发生的根际微生态机制以及研发根肿病综合防控技术提供理论支撑。  相似文献   

10.
张平究  梁川  陈芳  俞姗姗  周利  张金花 《生态学报》2023,43(11):4747-4759
土壤细菌对湿地生态系统功能和健康维持起着重要作用。以菜子湖原始湿地、不同退耕年限湿地(3a、7a、11a和21a)和仍耕作油菜地土壤为研究对象,应用聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)、高通量测序和磷脂脂肪酸(PLFAs)方法分析土壤细菌群落组成和生物量,探讨它们在退耕还湿后的变化过程及其影响因素。结果表明,退耕还湿后土壤变形菌门(α-变形菌纲、β-变形菌纲和δ-变形菌纲)、酸杆菌门(酸杆菌纲和全噬菌纲)、Nitrospinae(Nitrospinia纲)和硝化螺旋菌门(硝化螺旋菌纲)相对丰度先增高后降低;这些参与氮循环的土壤细菌对退耕后湿地生态恢复过程中土壤氮素提升起着重要作用。与农业生产活动密切关联的厚壁菌门(芽孢杆菌纲和梭菌纲)和放线菌门(放线菌纲)相对丰度逐渐降低。湿地土壤细菌多样性在退耕初期(3—7a)上升达到最大,退耕中后期逐渐降低。表层土壤各类群细菌生物量逐渐升高,亚表层土壤各类群细菌生物量则先降后升再降。水分条件和容重是与研究区土壤细菌群落结构和多样性密切相关的土壤因子,而全氮是与土壤细菌生物量密切相关的土壤因子。研究从生态过程视角解析了土壤细菌群落较详...  相似文献   

11.
AIMS: To determine the microbial succession of the dominating taxa and functional groups of microorganisms and the total microbial activity during the composting of biowaste in a monitored process. METHODS AND RESULTS: Biowaste (vegetable, fruit and garden waste) was composted in a monitored composting bin system. During the process, taxonomic and functional subpopulations of microorganisms were enumerated, and dominating colonies were isolated and identified. All counts decreased during the thermophilic phase of the composting, but increased again when the temperature declined. Total microbial activity, measured with an enzyme activity assay, decreased during the thermophilic phase, increased substantially thereafter, and decreased again during maturation. Bacteria dominated during the thermophilic phase while fungi, streptomycetes and yeasts were below the detection limit. Different bacterial populations were found in the thermophilic and mesophilic phases. In fresh wastes and during the peak-heating phase, all bacterial isolates were bacilli. During the cooling and maturation phase the bacterial diversity increased, including also other Gram-positive and Gram-negative bacteria. Among the fungi, Aspergillus spp. and Mucor spp. were predominant after the thermophilic phase. CONCLUSIONS: The microbial abundance, composition and activity changed substantially during composting and compost maturity was correlated with high microbial diversity and low activity. SIGNIFICANCE AND IMPACT OF THE STUDY: A more complete overview of the whole composting process of biowaste, based on microbial counts, species diversity and functional groups and abiotic parameters is presented, and the potential of a simple enzyme assay to measure total microbial activity was demonstrated.  相似文献   

12.
以猪粪与秸秆(鲜质量10.5∶1)为基础,在自制的强制通风静态堆肥反应箱中进行堆肥化试验,研究添加8%葡萄籽对猪粪秸秆高温堆肥中微生物群落演替和碳氮转化的影响.在堆肥化的30 d里,分7次采集不同时期的堆肥样品,测定堆肥中微生物区系、微生物生理群的数量及堆肥碳氮含量.结果表明:添加葡萄籽使堆肥中细菌数量略高、放线菌数量显著增加、真菌数量明显降低,细菌/放线菌下降;氨化细菌和反硝化细菌数量降低;而硝化细菌、固氮菌和纤维素分解菌数量增多;铵态氮和有机碳含量下降,而硝态氮含量明显提高.堆肥中硝态氮含量与放线菌数量呈极显著正相关关系.添加葡萄籽使堆体升温快且高温期稳定,堆肥含水率波动较小,从而使堆肥高温期放线菌和亚硝化细菌的波动较小,数量较高,有利于堆肥中硝态氮含量的增加.  相似文献   

13.
Due to the enviornmental problems associated with disposal of livestock sludge, many stabilization studies emphasizing on the sludge volume reduction were performed. However, little is known about the microbial risk present in sludge and its stabilized products. This study microbiologically explored the effects of anaerobic lagoon fermentation (ALF) and autothermal thermophilic aerobic digestion (ATAD) on pathogen-related risk of raw swine manure by using culture-independent 16S rDNA cloning and sequencing methods. In raw swine manure, clones closely related to pathogens such as Dialister pneumosintes, Erysipelothrix rhusiopathiae, Succinivibrioan dextrinosolvens, and Schineria sp. were detected. Meanwhile, in the mesophilic ALF-treated swine manure, bacterial community clones closely related to pathogens such as Schineria sp. and Succinivibrio dextrinosolvens were still detected. Interestingly, the ATAD treatment resulted in no detection of clones closely related to pathogens in the stabilized thermophilic bacterial community, with the predominance of novel Clostridia class populations. These findings support the superiority of ATAD in selectively reducing potential human and animal pathogens compared to ALF, which is a typical manure stabilization method used in livestock farms.  相似文献   

14.
Changes in temperature, pH, moisture, C/N ratio, and bacterial community were monitored in Istanbul full-scale composting plant. C/N ratio steadily decreased during composting and final mature compost products had a C/N ratio of less than 20. During the composting process, temperature was mostly above 55 °C and decreased to mesophilic conditions in the matured stages. Different types of bacteria were dominant in every stage of composting and bacterial diversity changed mainly by temperature. Bacillus species were dominant in early stages of composting while Acinetobacter and Sphingobacterium strains were detected in thermophilic and maturing stages. Bacteria were mainly active in the degradation of cellulose and toxic organics while some strains had denitrification ability. Generally, thermophilic stages were more rich in bacterial diversity than mesophilic and hyperthermophilic conditions significantly changed the bacterial community.  相似文献   

15.
Microbial population dynamics in co-composting of cow manure and rice straw were evaluated using 16S high throughput sequencing technology. Physicochemical factors, including temperature, pH, nitrogen contents, the ratio of carbon and nitrogen, and germination index, were also determined in this study. 16S high throughput sequencing results showed that bacterial community structure and composition significantly varied in each phase of composting. The major phyla included Bacteroidetes, Proteobacteria, Firmicutes, Actinobacteria and Planctomycetes, respectively. Bacteroidetes and Proteobacteria were the most abundant phyla in all phases, and Actinobacteria was just dominant in the mesophilic phase, while Firmicutes and Planctomycetes were ubiquitous. At the genus level, Simiduia, Flavobacterium, unclassified Chitinophagaceae and Flexibacter notably changed in each phase of composting. Bacterial community diversity in the mesophilic phase was higher than that in others based on the Shannon–Wiener index and Simpson diversity index. The ratio of carbon and nitrogen and germination index indicated that the co-composting of cow manure and rice straw reached maturation. The result of nitrogen contents showed that nitrogen loss mainly occurred in the thermophilic phase. In addition, the differences in the distributions of key OTUs between in the late thermophilic phase and the cooling and maturation phase were unobvious compared with other phase’s base on the principal component analysis. Redundancy analysis revealed that the changes of nitrogen played a predominant role in the distributions of OTUs during the composting process.  相似文献   

16.
Microbial succession during a laboratory-scale composting process of garbage was analysed by denaturing gradient gel electrophoresis (DGGE) combined with measurement of physicochemical parameters such as temperature, pH, organic acids, total dissolved organic carbon and water-soluble humic substance. From the temperature changes, a rapid increase from 25 to 58 degrees C and then a gradual decrease, four phases were recognized in the process as follows; mesophilic (S), thermophilic (T), cooling (C) and maturing (M). The polymerase chain reaction-amplified 16S rDNA fragments with universal (907R) and eubacterial (341F with GC clamp) primers were subjected to DGGE analysis. Consequently, the DGGE band pattern changed during the composting process. The direct sequences from DGGE bands were related to those of known genera in the DNA database. The microbial succession determined by DGGE was summarized as follows: in the S phase some fermenting bacteria, such as lactobacillus, were present with the existing organic acids; in the T phase thermophilic bacillus appeared and, after the C phase, bacterial populations were more complex than in previous phases and the phylogenetic positions of those populations were relatively distant from strains so far in the DNA database. Thus, the DGGE method is useful to reveal microbial succession during a composting process.  相似文献   

17.
中高温污泥厌氧消化系统中微生物群落比较   总被引:9,自引:0,他引:9  
【目的】结合中温与高温消化两者优势的两相厌氧消化工艺可能是推进污泥厌氧消化发展的重要方向,因此,探究和比较中温和高温污泥厌氧消化系统中微生物群落组成的异同具有重要意义。【方法】利用高通量测序技术检测中温和高温厌氧消化系统中细菌与古菌的16S r RNA基因序列信息和真菌的内转录间隔(ITS)序列信息,利用基因芯片(Geo Chip 5.0)检测病毒和病原菌致病基因的信息,以对比中温和高温条件下微生物群落在物种组成和功能基因层面上的异同。【结果】中温和高温条件下细菌和古菌在群落物种组成上存在显著差异,病毒和病原菌毒性基因也显著不同,而两种系统中真菌群落的物种组成相似且丰度相对较低。中温条件下产甲烷古菌和未分类微生物相对丰度较高,而高温条件下产酸及嗜热菌相对丰度较高,且高温消化后病毒和病原菌毒性基因相对丰度下降。微生物群落结构与COD、TS和VS有着显著相关性。【结论】微生物群落组成和功能基因在中高温的污泥厌氧消化系统中显著不同,从而解释了两个系统功能的差异。微生物群落的形成与进水参数相关,说明微生物对进水条件敏感。  相似文献   

18.
AIMS: This study investigates changes in microbiological and physicochemical parameters during large-scale, thermophilic composting of a single batch of municipal organic waste. The inter-relationships between the microbial biomass and community structure as well as several physicochemical parameters and estimates of maturation were evaluated. METHODS AND RESULTS: Analyses of signature fatty acids with the phospholipid fatty acid and ester-linked methods showed that the total microbial biomass was highest during the early thermophilic phase. The contribution of signature 10Me fatty acids from Actinobacteria indicated a relatively constant proportion around 10% of the microbial community. However, analyses of the Actinobacteria species composition with a PCR-denaturing gradient gel electrophoresis approach targeting 16S rRNA genes demonstrated clear shifts in the community structure. CONCLUSIONS: This study demonstrates that compost quality, particularly maturity, is linked to the composition of the microbial community structure, but further studies in other full-scale systems are needed to validate the generality of these findings. SIGNIFICANCE AND IMPACT OF THE STUDY: The combination of signature lipid and nucleic acid-based analyses greatly expands the specificity and the scope for assessing the microbial community composition in composts. The results presented in this study give new information on how the development of the compost microbial community is connected to curing and maturation in the later stages of composting, and emphasizes the role of Actinobacteria in this respect.  相似文献   

19.
The bacterial and archaeal community structure was examined in two methanogenic anaerobic digestion processes degrading organic household waste at mesophilic (37 degrees C) and thermophilic (55 degrees C) temperatures. Analysis of bacterial clone libraries revealed a predominance of Bacteroidetes (34% of total clones) and Chloroflexi (27%) at the mesophilic temperature. In contrast, in the thermophilic clone library, the major group of clones were affiliated with Thermotogae (61%). Within the domain Archaea, the phyla Euryarchaeota and Crenarchaeota were both represented, the latter only at the mesophilic temperature. The dominating archaeons grouped with Methanospirillum and Methanosarcina species at the mesophilic and thermophilic temperature, respectively. Generally, there was a higher frequency of different sequences at the lower temperature, suggesting a higher diversity compared to the community present at the thermophilic temperature. Furthermore, it was not only the species richness that was affected by temperature, but also the phylogenetic distribution of the microbial populations.  相似文献   

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