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1.
秸秆发酵乳酸菌复合系SFC-2的构建及其组成多样性研究   总被引:7,自引:2,他引:5  
为了获得促进作物干秸秆乳酸发酵的微生物,以玉米秸秆和水稻秸秆的自然发酵物为菌种来源,用MRS蔗糖培养基,通过连续定向继代培养,筛选出pH下降迅速、乳酸含量高、组成稳定的乳酸菌复合系SFC-2.DGGE分析表明,SFC-2经过连续继代培养,从第25代开始其微生物组成基本稳定.SFC-2 培养12 h后pH下降至3.8,乳酸含量达10.64 mg/mL,其中64%为L-(+) 乳酸.通过平板分离获得4株细菌,全部为Lactobacillus,其近缘种分别为L. fermentum、L. plantarum、L. paracasei和L. paracasei sub sp.;通过16S rDNA克隆文库分析获得7个克隆,其近缘种主要为L. fermentum、L. plantarumL.paracasei;在16S rDNA的克隆文库中,76.3%为L. fermentum的近缘种,20.3%为L. plantarum的近缘种,3.4%为L. paracasei的近缘种.  相似文献   

2.
乳酸菌复合系SFC-2处理水稻秸秆的效果   总被引:7,自引:0,他引:7  
以处理农作物稻秆,减轻环境压力为目的,将本实验室筛选的乳酸菌复合系SFC-2接种到水稻秸秆,研究了其饲料化效果.结果表明,接种处理与未接种处理相比外观上颜色发黄发亮,松软酸香,发酵30 d后,接种处理的pH降至3.8,对照为4.1.同时发酵料中乳酸生成量增加,尤其是L-乳酸增加了约2倍,粗蛋白含量提高了10.16%,粗纤维含量降低了3.2%.通过变性梯度凝胶电泳(DGGE)分析发酵过程中微生物菌系变化,接种SFC-2后,复合系中的主要组成菌Lactobacillus plantarum,Lactobacillus fermentum和Lactobacillus paracasei等菌株迅速成为发酵料中的优势菌群,相应未接种对照中可见的Enterobacter sakazakii, Pantoea agglomerans, Enterobacter endosymbiont, Pantoea ananatis等杂菌被抑制,发酵品质得到明显改善.  相似文献   

3.
为了探明WSC-6分解稻秆过程中的代谢特性,本试验以稻杆为唯一碳源,50℃静止培养WSC-6,以一次性添加不同量稻秆和多次连续添加的方式,研究了WSC-6分解稻杆的相对分解率、绝对分解量、分解产物及pH变化特性.结果表明,一次性添加1%稻秆时,pH由初始的7.8迅速下降,第3 d降到6.0后逐渐回升,6 d后稳定在8.0左右,在此过程中DO值保持在0.01~0.12 mg·L-1微好氧条件.以GC-MS法在稻杆分解过程中检测到乙醇、乙酸、乳酸、甘油等10种以上有机物,其中乳酸的含量最高,为7.381 g·L-1.在90 d的实验中,一次性添加不同量稻秆时,随着稻秆量的增加,pH下降得快而低,且回升时间拖后,当稻秆量为5%时pH下降到5.0后不再回升.在多次连续添加稻秆的实验中,隔12d和15d添加的处理pH重复下降和回升的规律性变化,分解活性保持旺盛.90 d后隔15 d添加的处理相对分解率最高,为86.7%;绝对分解量以隔6 d添加的处理最高,为32.4 g.pH变化规律能够反映WSC-6对木质纤维素的分解进程及分解活性.  相似文献   

4.
肖德顺  徐春梅  王丹英  陈松  褚光  刘元辉 《环境科学》2023,44(11):6362-6376
为探讨不同增氧模式对水稻根际土壤微生物数量和群落结构的影响特征,以密阳46(MY)和珍汕97B (ZS)为材料,设置干湿交替(AWD)、长淹充氧(CFA)和长淹(CF)这3种根际氧处理模式,采用Illumina MiSeq高通量测序技术结合土壤理化性质,分析不同氧环境下水稻根际土壤细菌和真菌群落多样性特征及其与土壤理化因子的关系.结果表明,水稻根际土壤中细菌优势菌群为绿弯菌门(Chloroflexi)、放线菌门(Actinobacteriota)、酸杆菌门(Acidobacteriota)、变形菌门(Proteobacteria)和厚壁菌门(Firmicutes);真菌优势菌群为子囊菌门(Ascomycota)和担子菌门(Basidiomycota).不同增氧模式下水稻根际土壤微生物群落组成存在明显差异.各生育期,Chloroflexi和Acidobacteriota在AWD处理时,Actinobacteriota在CFA处理时的相对丰度高于其他处理;Firmicutes在AWD处理下相对丰度低于其他处理.增氧影响根际微生物物种多样性和丰富度.如AWD处理显著增加细菌物种多样性,降低其丰富度;AWD和CFA处理后真菌物种多样性和丰富度均显著增加.土壤理化性质也受增氧模式的影响.不同处理土壤氧化还原电位(Eh)大小表现为:AWD>CFA>CF,处理间差异达显著水平;与CF处理相比,增氧处理(AWD和CFA)显著增加根际土壤NO3--N含量,降低NH4+-N含量.相关性分析表明,根际土壤pH和Eh与细菌物种多样性正相关,与丰富度负相关;与真菌物种多样性和丰富度正相关.冗余分析发现,全生育期的Chloroflexi相对丰度与pH和NH4+-N均呈正相关;分蘖期和齐穗期的Chloroflexi相对丰度与Eh和NO3--N呈正相关,成熟期则负相关.pH和Eh与Acidobacteriota、Proteobacteria和Basidiomycota相对丰度正相关,与Firmicutes和Ascomycota相对丰度负相关.Ascomycota相对丰度与NO3--N负相关,与NH4+-N正相关,Basidiomycota与之相反.综上,增氧模式改善根际土壤氧环境,改变土壤理化性质,影响微生物群落多样性和丰富度,从而优化微生物群落结构.  相似文献   

5.
镉胁迫下稻田土壤微生物基因多样性的DGGE分子指纹分析   总被引:22,自引:5,他引:17  
段学军  闵航 《环境科学》2004,25(5):122-126
采用现代分子生物学技术,避开传统的分离培养过程,探讨重金属镉污染条件下稻田土壤微生物种群的基因多样性.经过直接从土壤中抽提总DNA,并对总DNA中16S rDNA及其中 V3可变区序列作PCR扩增、变性梯度凝胶电泳(DGGE)分析等,对镉胁迫下稻田土壤总DNA、微生物种类分布进行了初步的研究,发现不同浓度镉胁迫下稻田土壤间的菌种有明显差异,DGGE技术可以用于污染环境下微生物多样性研究.同时对DGGE分子指纹图谱的生物信息学分析作了初步尝试,为污染环境下土壤微生物多样性研究提供了新的实验方法与依据.  相似文献   

6.
潮土细菌及真菌群落对化肥减量配施有机肥和秸秆的响应   总被引:6,自引:0,他引:6  
为了研究化肥减量配施有机肥和秸秆对华北麦玉轮作田潮土细菌和真菌群落的影响,在天津市宁河区试验基地开展田间定位施肥试验,采用Illumina高通量测序技术比较了5种施肥模式(单施化肥处理,F;化肥减施处理,FR;化肥减量与秸秆配施处理,FRS;化肥减量与有机肥配施处理,FRO;化肥减量与有机肥和秸秆配施处理,FROS)下土壤细菌及真菌群落的组成、多样性和结构差异,并结合土壤理化性质分析,探究不同施肥处理下驱动细菌和真菌群落变化的关键土壤环境因子.结果表明,FRO处理显著提高了土壤SOM含量.FROS处理的TP含量显著高于FRS处理,增加了13.33%.FRO和FROS处理AP含量较其它处理显著增加,NH4+-N含量显著高于化肥处理(F和FR).各施肥处理土壤中优势细菌门类均为变形菌门(Proteobacteria)、放线菌门(Actinobacteria)、绿弯菌门(Chloroflexi)和酸杆菌门(Acidobacteria),优势真菌门类均为子囊菌门(Ascomycota).在化肥减量配施有机肥(FRO)的基础上添加秸秆(FROS)显著降低了放线菌门(Actinobacteria)的相对丰度.FRS和FROS处理均显著降低了芽单胞菌门(Gemmatimonadetes)的相对丰度.FROS处理显著提高了浮霉菌门(Planctomycetes)和疣微菌门(Verrucomicrobia)的相对丰度.对于真菌群落而言,有机肥(FRO和FROS)的施入显著提高了子囊菌门(Ascomycota)的相对丰度.与FR处理相比,FROS处理显著降低了被孢菌门(Mortierellomycota)和油壶菌门(Olpidiomycota)的相对丰度,且FRS处理同样显著降低了油壶菌门(Olpidiomycota)的相对丰度.FROS处理的细菌群落Shannon多样性指数显著高于F和FR处理,分别增加了1.26%和1.25%,Chao1指数较F处理显著增加了4.51%,细菌Shannon多样性指数与AP和NH4+-N含量显著正相关(P<0.05).与FR处理相比,FRS、FRO和FROS处理显著降低了真菌群落Shannon多样性指数,分别达到29.85%、24.94%和25.73%,真菌Shannon多样性指数与AP含量显著负相关(P<0.05).细菌群落结构在FROS处理下显著区别于F、FR和FRO处理,土壤SM、TP、pH和AP是导致细菌群落结构变化的主要驱动因子;真菌群落结构在FRO和FROS处理下显著区别于F和FR处理,真菌群落结构变化主要受土壤TN、AP和TP的驱动.综上所述,添加有机肥和秸秆改变了土壤理化性质,进而改变了土壤细菌和真菌群落组成,土壤真菌对有机物料的敏感程度高于细菌,细菌和真菌群落结构均受到土壤P的调控,在潮土农业耕作中应引起充分重视.  相似文献   

7.
兰木羚  高明 《环境科学》2015,36(11):4252-4259
以水稻、小麦、玉米秸秆和油菜、蚕豆青秆为研究对象,采用磷脂脂肪酸(PLFA)方法,并结合主成分分析方法,研究了不同秸秆翻埋还田对旱地和水田土壤微生物数量、菌群分布、群落结构特征等的影响.PLFA分析结果表明,旱地土壤PLFA总量变幅为8.35~25.15 nmol·g-1,大小顺序为油菜蚕豆玉米水稻小麦,5种秸秆翻埋还田均能提高土壤微生物PLFA总量,其中油菜、蚕豆处理分别是不加秸秆处理的2.18、2.08倍,差异显著;5种秸秆处理各菌群PLFA量均高于不加秸秆处理,其中真菌量均显著提高,微生物群落物种丰富度值也显著提高.水田土壤PLFA总量变幅为4.04~22.19nmol·g-1,大小顺序为水稻玉米小麦油菜蚕豆,其中油菜和蚕豆处理低于不加秸秆处理;除蚕豆外其余秸秆处理真菌PLFA量均显著高于不加秸秆处理,蚕豆处理细菌和PLFA总量均显著低于其他处理,各处理间放线菌、革兰氏阳性菌(G+)、革兰氏阴性菌(G-)无显著差异;水稻、小麦、玉米、油菜均能显著提高水田土壤微生物的物种丰富度指数和优势度指数.主成分分析结果表明蚕豆青秆对旱地土壤微生物群落结构影响最大,油菜青秆和小麦秸秆对水田土壤微生物群落结构影响最大.  相似文献   

8.
为研究不同有机碳水平下坡面土壤侵蚀对微生物群落功能多样性的影响,以黄土区典型侵蚀坡面为对象,通过Biolog-Eco方法测定了高、低2个有机碳水平坡面沉积区、侵蚀区和对照区3个不同部位的土壤微生物活性、碳源利用能力和微生物群落功能多样性.结果表明:1)高碳水平下3个部位的微生物活性和碳源利用能力均显著高于低碳水平;2)在不同侵蚀部位上,沉积区微生物活性高于侵蚀区,在低碳水平下,沉积区微生物碳源利用能力显著大于侵蚀区(P<0.05),但在高碳水平下沉积区与侵蚀区无显著差异;3)在6类碳源中,微生物对氨基酸类、酯类的利用率最高,对醇类、胺类的利用率较低,从31种碳源中提取的主成分1和主成分2分别可解释变量方差的53.8%和11.9%,对主成分1起分异作用的主要是氨基酸类和酯类碳源;对主成分2起分异作用的主要为糖类和酸类碳源.4)高碳水平下3个部位微生物群落的Shannon指数、丰富度指数和McIntosh指数均显著大于低碳水平(P<0.05),但不同部位间的土壤微生物群落多样性指数并无明显差异.侵蚀对微生物群落功能多样性的影响主要表现在有机碳水平决定的微生物活性差别上,不同部位微生物的碳源利用能力在有机碳水平较低时差异显著,有机碳水平较高时则没有明显差别.  相似文献   

9.
唐涛涛  李江  吴永贵  杨钊  陈瑀 《环境科学研究》2019,32(11):1936-1944
为促进污水处理厂污泥及农作物秸秆的资源化利用,探讨不同类型秸秆(玉米、小麦、水稻)对污泥厌氧消化特性、产气效果及细菌群落结构的影响,在中温〔(35±1)℃〕下,研究了污泥与秸秆按不同质量比(1:0、1:0.5、1:1、1:1.5)联合厌氧消化对污泥C/N(碳氮比)和厌氧消化环境中pH、ρ(NH4+-N)、ρ(VFAs)(VFAs为挥发性脂肪酸)、日均沼气产量及φ(CH4)、细菌群落的特征变化,以未添加秸秆的污泥厌氧消化为CK(对照).结果表明:不同类型秸秆的添加对厌氧消化体系的pH、ρ(NH4+-N)、ρ(VFAs)均产生显著影响,秸秆的加入明显提高了厌氧消化体系的产气量.联合厌氧消化可通过优化厌氧消化底物的C/N,从而增加ρ(VFAs)和φ(CH4).其中,污泥与玉米秸秆质量比为1:1.5时对厌氧消化的促进作用最为显著;其沼气日产量为2 303.08 mL,比CK(536.15 mL)提高了3倍以上,而沼气中φ(CH4)最高为54.49%,比CK(37.07%)提高46.99%.此外,不同类型秸秆的添加也可通过改变细菌群落结构从而促进秸秆降解,增加ρ(VFAs)和提高沼气产量,特别是添加秸秆后,Bacteroidetes会逐渐取代Proteobacteria成为主要的产酸菌种,从而导致ρ(VFAs)增加.研究显示,污泥与秸秆联合厌氧消化可改善污泥营养结构,改变细菌群落结构,提高沼气产量.   相似文献   

10.
靳友彬  胡云  孙进  龚仁敏 《环境科学学报》2006,26(12):1987-1993
为促进工业废水处理并降低废水处理费用,研究了柠檬酸热化学酯化法改性稻草制备可生物降解阳离子吸附剂的方法.实验比较了天然和改性稻草去除溶液中阳离子染料(亚甲蓝)的能力,研究了不同实验参数(pH值、吸附剂量、染料浓度、离子强度、吸附时间)对亚甲蓝吸附效果的影响在pH为2~10范围内,天然稻草去除亚甲蓝的能力随pH值的增加而增加,而改性稻草在pH≥3时对染料的去除率达到最大.改性稻草用量大于1.5g·L-1时几乎能完全去除浓度为250mg·L-1亚甲蓝溶液中的染料.改性稻草用量为2.0g·L-1对浓度为50~450mg·L-1的亚甲蓝溶液去除率保持在98%以上.增加溶液的离子强度会导致亚甲蓝去除率降低.染料吸附等温线符合Langmuir模式.吸附过程符合准一级反应动力学方程.酯化改性使染料的吸附剂粒子内扩散速率常数(kid)大大增加.研究结果表明,改性稻草是良好的亚甲蓝吸附剂.  相似文献   

11.
为探究毛竹林改种香榧后以及香榧种植年限的增加对土壤微生物群落结构特征的影响,并研究其与土壤肥力因子的关系,运用高通量测序技术,研究毛竹林、香榧5a、香榧+山稻5a、香榧10a和香榧30a 土地利用方式下土壤微生物群落组成及多样性的变化.结果表明土地利用改变后,土壤中细菌群落的Shannon指数和Chao l指数显著增加...  相似文献   

12.
Vertical diversity of sediment bacterial communities in 2 different trophic states (macrophyte-dominated and algae-dominated) of the large shallow eutrophic Lake Taihu, China, were investigated using denaturing gradient gel electrophoresis (DGGE) and 16S rRNA sequence analysis. Clustering analysis of DGGE profiles showed that different clusters were recognized in different depths of sediment cores in the 2 lake trophic states. Analyses of the bacterial diversity, as estimated by the Shannon index (H'), showed that different sediment layers of the macrophyte-dominated state had higher diversity than the algae-dominated state. In addition, bacterial diversity of the sediment in the macrophyte-dominated state changed abruptly throughout the layers, but bacterial diversity of the algae-dominated state decreased gradually with sediment depth. Phylogenetic analysis showed that Proteobacteria was the most abundant phylum in the middle sediment of the 2 lake trophic states. In the macrophyte-dominated state, clone sequences related to Betaproteobacteria (50.0%) were the most abundant, followed by Epsilonproteobacteria (21.1%), Acidobacteria (7.9%), Deltaproteobacteria (7.9%), Chloroflexi (7.9%), and Bacteroidetes (5.3%); whereas in the algae-dominated state, sequences affiliated with Betaproteobacteria (84.4%) were predominant, followed by Deltaproteobacteria (12.5%) and Acidobacteria (3.1%). Canonical correspondence analysis showed that organic matter and pH play key roles in driving the vertical changes of bacterial community composition.  相似文献   

13.
Soil microbes play a major role in ecological processes and are closely associated with the aboveground plant community.In order to understand the effects of vegetation type on the characteristics of soil microbial communities,the soil microbial communities were assessed by plate counts,phospholipid fatty acid (PLFA) and Biolog microplate techniques in five plant communities,i.e.,soybean field (SF),artificial turf (AT),artificial shrub (AS),natural shrub (NS),and maize field (MF) in Jinan,Shandong Province,North China.The results showed that plant diversity had little discernible effect on microbial biomass but a positive impact on the evenness of utilized substrates in Biolog microplate.Legumes could significantly enhance the number of cultural microorganisms,microbial biomass,and community catabolic diversity.Except for SF dominated by legumes,the biomass of fungi and the catabolic diversity of microbial community were higher in less disturbed soil beneath NS than in frequently disturbed soils beneath the other vegetation types.These results confirmed that high number of plant species,legumes,and natural vegetation types tend to support soil microbial communities with higher function.The present study also found a significant correlation between the number of cultured bacteria and catabolic diversity of the bacterial community.Different research methods led to varied results in this study.The combination of several approaches is recommended for accurately describing the characteristics of microbial communities in many respects.  相似文献   

14.
The characterization of microbial communities of different depth sediment samples was examined by a culture-independent method and compared with physicochemical parameters, those are organic matter (OM), total nitrogen (TN), total phosphorus (TP), pH and redox potential (Eh). Total genomic DNA was extracted from samples derived from different depths. After they were amplified with the GC-341 f/907r primer sets of partial bacterial 16S rRNA genes, the products were separated by denaturing gradient gel electrophoresis (DGGE). The profile of DGGE fingerprints of different depth sediment samples revealed that the community structure remained relatively stable along the entire 45 cm sediment core, however, principal-component analysis of DGGE patterns revealed that at greater sediment depths, successional shifts in community structure were evident. The principle coordinates analysis suggested that the bacterial communities along the sediment core could be separated into two groups, which were located 0-20 cm and 21-45 cm, respectively. The sequencing dominant bands demonstrated that the major phylogenetic groups identified by DGGE belonged to Bacillus, Bacterium, Brevibacillus, Exiguobacterium, γ-Proteobacterium, Acinetobacter sp. and some uncultured or unidentified bacteria. The results indicated the existence of highly diverse bacterial community in the lake sediment core.  相似文献   

15.
复合菌系BYND-8的种群组成及其对沼气产量的影响   总被引:2,自引:0,他引:2  
为了明确1组在中温下(30℃)高效分解木质纤维素的复合菌系的菌群组成.研究复合菌系预处理秸秆对沼气发酵的影响,利用平板分离法和变性梯度凝胶电泳(DGGE)法研究了中温木质纤维素降解复合菌系BYND-8的菌种组成多样性,通过添加该复合系菌液到以牛粪为原料的沼气发酵体系,研究了添加秸秆降解液对沼气产量的影响.利用平板法分离...  相似文献   

16.
The effects of Cd^2+ and Cu^2+ at 300 mg/L on anaerobic microbial communities that degrade 2-cholorophenol (2-CP) were examined. Based on the polymerase chain reaction (PCR) of 16S rDNA, bacterial community diversity and archaeal community structure were analyzed with denaturing gradient gel electrophoresis (DGGE) and cloning, respectively. Degradation capabilities of the anaerobic microbial community were drastically abated and the degradation efficiency of 2-CP was reduced to 60% after shock by Cu^2+ and Cd^2+, respectively. The bacterial community structure was disturbed and the biodiversity was reduced after shock by Cu^2+ and Cd^2+ for 3 d. Some new metal-resistant microbes which could cope with the new condition appeared. The sequence analysis showed that there existed common Archaea species in control sludge and systems when treated with Cu^2+ and Cd^2+, such as Methanothrix soehngenii, Methanosaeta concilii, uncultured euryarchaeote, and so on. Both the abundance and diversity of archaeal species were altered with addition of Cd^2+ and Cu^2+ at high concentration. Although the abundance of the predominant archaeal species decreased with Cd^2+ and Cu^2+ addition for 3 d, they recovered to some extent after 10 d. The diversity of archaeal species was remarkably reduced after recovery for 10 d and the shift in archaeal composition seemed to be irreversible. The 2-CP-degradation anaerobic system was more sensitive to Cu^2+ than Cd^2+.  相似文献   

17.
改良剂对土壤铜镉有效性和微生物群落结构的影响   总被引:10,自引:0,他引:10  
以一次性添加木炭、石灰和磷灰石稳定化修复4年后的土壤为研究对象,探讨了土壤中铜镉有效性和土壤微生物群落结构的变化.结果表明,3种改良剂的添加提高了土壤pH值,降低了土壤交换性酸和交换性铝的含量,使铜镉由活性态向非活性态和潜在活性态转化,其中磷灰石和石灰的处理效果优于木炭处理; Biolog测试发现,培养192h,木炭、石灰和磷灰石处理土壤AWCD值(0.61、0.76和0.70)分别是对照的1.33、1.65和1.52倍;且Shannon和McIntosh指数均较对照有所提高,表现为:石灰 > 磷灰石 > 木炭,表明改良剂处理后增加了土壤微生物对碳源的利用能力,提高了其功能多样性.PCR-DGGE分析结果显示,改良剂处理后土壤细菌优势群的数量显著增加,木炭、石灰和磷灰石处理Shannon指数分别比对照提高了0.22、0.39和0.24.相关性分析表明,土壤酸度和重金属有效性是影响稳定化修复重金属污染土壤细菌结构多样性差异的主要因素.  相似文献   

18.
铁矿区重金属污染对土壤微生物群落变化的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
邢奕  司艳晓  洪晨  李洋 《环境科学研究》2013,26(11):1201-1211
以密云水库上游某铁矿区为研究对象,采用荧光定量PCR研究了矿区内不同采样点土壤中细菌、真菌、放线菌基因数量的变化,并结合土壤的理化性质与重金属污染情况进行了相关分析. 结果表明,研究区微生物的基因数量与该地区的w(AP)(AP为有效磷)均呈显著正相关(P<0.05);细菌、放线菌的基因数量与该地区的内梅罗污染指数呈显著负相关〔二者R分别为-0.756(P<0.01)和-0.614(P<0.05)〕,而真菌的基因数量与内梅罗污染指数无显著相关性. 采用PCR-DGGE研究了细菌、真菌、放线菌的群落结构变化,冗余度分析结果表明,内梅罗污染指数对细菌、放线菌的种群分布影响较大(P<0.05),对真菌的影响则较小. 细菌、放线菌的种群多样性水平随着污染程度升高呈先升后降的趋势. 微生物数量和结构的变化都表明,不同类群的微生物对重金属敏感程度为真菌抗性最强,放线菌和细菌次之. Cd和Cu污染抑制了土壤中微生物的数量和群落多样性,而轻度Cr、Pb和Zn污染则促进了群落数量的增加和群落结构多样性的丰富.   相似文献   

19.
The process of the rice straw degradation in the fermentor with aeration at 290 ml/h was studied. The results of dissolved oxygen (DO) indicated that the optimum DO during cellulose degradation by microbial community MC1 ranged from 0.01 to 0.12 mg/L. The change model ofpH values was as follows: irrespective of the initial pH of the medium, pH values decreased rapidly to approximate 6.0 after being inoculated within 48 h when cellulose was strongly degraded, and then increased slowly to 8.0--9.0 until cellulose was degraded completely. During the degradation process, 15 kinds of organic compounds were checked out by GC-MS. Most of them were organic acids. Quantity analysis was carried out, and the maximum content compound was ethyl acetate which reached 13.56 g/L on the day 4. The cellulose degradation quantity and ratio analyses showed that less quantity (under batch fermentation conditions) and longer interval (under semi-fermentation conditions) of rice straw added to fermentation system were contributed to matching the change model of pH, and increasing the quantity and ratio of rice straw degradation during cellulose degrading process. The highest degradation ratio was observed under the condition office straw added one time every five days (under semi-fermentation conditions).  相似文献   

20.
不同植被群落表层土壤中细菌群落多样性   总被引:4,自引:0,他引:4  
对3种不同植被群落(海桐、雪松、桂花)表层土壤中的pH、w(TOC)、w(TN)和w(TP)进行了测定,采用DGGE(变性梯度凝胶电泳)方法对各植被群落表层土壤细菌的16S rDNA V3~V6可变区扩增片段进行了分析,利用分析得到的图谱数据与表层土壤中的pH、w(TOC)、w(TN)和w(TP)进行了群落-理化因子相关性分析以及CCA(典范对应分析). 结果表明,不同植被群落表层土壤的pH和养分含量不同,其中w(TOC)和w(TN)的差异显著(P<0.05),而pH和w(TP)的差异不显著(P>0.05). DGGE图谱分析结果揭示,不同植被群落表层土壤的细菌群落结构明显不同. 聚类分析显示,海桐和雪松的细菌群落组成和结构最为相似(82%),而它们与桂花样地的相似性(55%)相对较低,桂花样地的Shannon-Wiener指数最高且与其他2个样地差异显著,雪松样地的均匀度指数最高. 相关性分析和CCA结果进一步表明,w(TOC)和w(TN)是表层土壤细菌群落结构和多样性的显著影响因素,并且植被群落可能通过其根系分泌物产生间接影响.   相似文献   

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