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1.
在测定土壤微生物、土壤酶活性基础上,应用主成分因子分析法建立了不同退耕还林模式下的土壤生物学性质评价体系。结果表明,土壤放线菌、真菌数量与转化酶、脲酶、纤维素酶、过氧化氢酶活性之间的相关性达到了极显著或显著水平优势微生物中的微球菌与转化酶,芽孢杆菌与纤维素酶,木霉和游动放线菌与过氧化氢酶,酵母菌与脲酶呈显著正相关关系放线菌、真菌及其微生物优势类群多样性指标在评价土壤生物学肥力质量时具有十分重要的作用4种土壤酶活性是土壤生物学肥力质量评价的重要指标而细菌、酵母等生物量较小的微生物对土壤生态肥力评价的贡献较小。用土壤综合肥力指标值(IFI)进一步评价各样地的土壤生物学肥力质量的顺序依次为:苦竹林表层>桦木林表层>农耕地表层>农耕地亚表层>农耕地深层>桦木和苦竹林亚表层>桦木林深层>苦竹林深层。苦竹对退耕地的生态改善效果,如水土保持、水源涵养和土壤生态肥力的增加等方面要优于桦木。  相似文献   

2.
天津滨海盐碱土地区城市绿地土壤微生物特性研究   总被引:8,自引:2,他引:8  
对天津滨海盐碱土地区城市绿地土壤微生物特性研究表明不同绿地植物配置模式下0~40cm土壤微生物数量差异极显著,防护林>灌+草>乔木>乔+草>草坪>滨海盐土,0~20cm土层微生物数量是20cm~40cm的3~4倍。在细菌、放线菌和真菌三大类群中,细菌占绝对优势,其次是放线菌和真菌。滨海盐土微生物的季节变化不大,防护林土壤中微生物总数最多时出现在秋季,乔木、乔+草、灌+草、草坪绿地土壤中微生物数量最多时出现在夏季或秋季。细菌、放线菌数量与土壤全盐含量呈显著负相关,细菌的数量与土壤有机质含量呈极显著相关,真菌数量与土壤养分相关不显著.芽孢杆菌的11个种在不同土壤条件和植物配置模式下的生态分布是不同的,最常见的是蜡质芽孢杆菌、拟霉芽孢杆菌、枯草芽孢杆菌、地衣芽孢杆菌和蜂房芽孢杆菌,放线菌主要是链霉属,包括链霉菌属的10大类群,分布最广的类群是灰褐类群、金色类群和青色类群,真菌分布有11个属。在不同植物配置下芽孢杆菌、放线菌和真菌的组成、优势种的组合也存在显著差异。  相似文献   

3.
本文对不同施肥措施下麦田土壤微生物数量及种类的变化进行了测定和分析。结果表明 :有机肥与N、P、K肥的合理配施 ,肥效持久 ,能促进微生物生长繁殖 ,细菌、放线菌、真菌、固氮菌、纤维素分解菌数量均能相对长期保持较高水平 ;可显著增强纤维素分解强度 ,促进土壤有机质的分解 ,有利于培肥土壤。微生物种类鉴定表明 :细菌的数量以芽孢杆菌为主 ,球菌较少 ;放线菌主要为链霉菌属的灰褐色类群 ;真菌主要为腐霉属、木霉属、葡萄孢属 ;固氮菌为圆褐固氮菌 ;纤维素分解菌以食纤维细菌、链霉菌属的白孢类群和葡萄穗霉属、腐霉属等真菌最常见  相似文献   

4.
两种不同退耕还林模式下的土壤微生物特性研究   总被引:14,自引:2,他引:14  
刘子雄  朱天辉  张健 《水土保持学报》2006,20(3):132-135,149
在四川省洪雅县两种主要退耕还林模式的桦木(Betula luminifera)林地、苦竹(Pleioblastus amarus)林地和农耕地(对照)中,系统研究了土壤中3大类微生物数量组成、季节性动态变化、垂直分布特征以及两种林木的根际效应。主要研究结果为:①在土壤微生物3大类区系组成中,细菌数量占绝对优势(95%以上),放线菌数量次之,真菌数量最少;②土壤3大类微生物数量及微生物总数的季节变化趋势在两种退耕还林地中基本相似,而农耕地与两退耕地之间差异较大;⑧微生物在土壤剖面中的分布趋势是表层(0~15cm)〉亚表层(15~30cm)〉深层(30cm以下),尤其是个体生物量较大的真菌、放线菌数量的这种变化趋势明显,且苦竹林模式表层微生物数量高于同层次的桦木和农耕地;④在桦木和苦竹林地中,3大类微生物各季的平均R/S值都在1~2之间,即两林木都具有较强的根际正效应;⑤从微生物学角度评价两退耕还林地的生态效益是:苦竹林模式优于桦木林模式。  相似文献   

5.
不同施肥处理对西藏山南地区麦田土壤微生物变化的影响   总被引:4,自引:0,他引:4  
本文对不同施肥措施下麦田土壤微生物数量及种类的变化进行了测定和分析。结果表明:有机肥与N、P、K肥的合理配施,肥效持久,能促进微生物生长繁殖,细菌、放线菌、真菌、固氮菌、纤维素分解菌数量均能相对长期保持较高水平;可显著增强纤维素分解强度,促进土壤有机质的分解,有利于培肥土壤。微生物种类鉴定表明:细菌的数量以芽孢杆菌为主,球菌较少;放线菌主要为链霉菌属的灰褐色类群;真菌主要为腐霉属、木霉属、葡萄孢属;固氮菌为圆褐固氮菌;纤维素分解菌以食纤维细菌、链霉菌属的白孢类群和葡萄穗霉属、腐霉属等真菌最常见。  相似文献   

6.
采用稀释涂布平板、分离培养和16S r DNA序列分析法对我国甘肃白银地区半干旱荒漠草原土壤可培养细菌、放线菌、真菌数量及群落分布特征进行了分析,比较了荒漠草原和耕地土壤微生物多样性。发现荒漠草原土壤可培养细菌、放线菌、真菌数量分别为1.23×106、0.19×106、0.18×106cfu·g-1,耕地三类微生物数量分别是3.03×106、0.53×106、0.05×106cfu·g-1。荒漠草原可培养细菌、放线菌数量明显低于耕地,而真菌数量高于耕地。从荒漠草原分离出14株细菌,分别属于γ-变形菌纲(γ-Proteobacteria)噬冷杆菌属(Psychrobacter),放线菌门(Actinobacteria)皮球菌属(Kytococcus),厚壁菌门(Firmicutes)芽孢杆菌属(Bacillus)、亮氨酸芽孢杆菌属(Lysinibacillus)、土壤芽孢杆菌属(Solibacillus)、气球菌属(Aerococcus),优势菌为芽孢杆菌属和噬冷杆菌属。耕地分离出可培养细菌19株,分别属于ɑ-变形菌纲(ɑ-Proteobacteri)根瘤菌属(Rhizobium)、中华根瘤菌属(Sinorhizobium),γ-变形菌纲(γ-Proteobacteria)假单胞菌属(Pseudomonas),厚壁菌门(Firmicutes)芽孢杆菌属(Bacillus),放线菌门(Actinobacteria)微杆菌属(Microbacterium)、节杆菌属(Arthrobacter)、微球菌属(Micrococcus)、考克氏菌属(Kocuria),以放线菌门细菌为主(占57.9%)。从荒漠草原分离放线菌共8株,分别属于链霉菌属(Atreptomyces)、小单孢菌属(Micromonspora)、间孢囊菌属(Intrasporangium),而耕地主要为链霉菌属(Atreptomyces)、小单孢菌属(Micromonspora)。荒漠草原真菌主要是交链孢霉属(Alternaria)、芽枝霉属(Cladosporium),耕地土壤真菌包括青霉属(Penicillium)、交链孢霉属(Alternaria)、曲霉属(Aspergillus)、毛霉属(Mucor)、链孢霉属(Coniothecium)。试验结果表明,荒漠草原与耕地土壤微生物都具有较丰富的多样性,但微生物群落结构存在一定差异,同一区域不同深度土壤中微生物数量和种类也存在差异,耕地土壤微生物多样性明显高于荒漠草原。  相似文献   

7.
生物质炭介导生防微生物抑制辣椒疫霉的作用   总被引:1,自引:0,他引:1  
生物质炭可有效防控土传病害,筛选并鉴定出生物质炭介导下的生防微生物,可为研究生物质炭防病机理和强化生物质炭防病效果提供理论依据。本研究首先进行秸秆生物质炭防控辣椒疫病盆栽试验,利用定量PCR和平板计数明确生物质炭在防控辣椒疫病时可富集的已知生防微生物,再通过选择性培养基初筛和定殖复筛筛选出生物质炭可富集的潜在生防微生物菌株,最后研究各菌株在土壤中对辣椒疫霉的抑制作用。结果表明,秸秆生物质炭使根际辣椒疫霉数量显著降低95.1%、辣椒疫病发生率显著降低91.1%,并使具有生防功能的木霉菌、青霉菌、曲霉菌、芽孢杆菌、假单胞菌和鞘氨醇单胞菌数量显著增加2.22倍、4.09倍、3.89倍、2.45倍、1.45倍和1.30倍。通过平板初筛得到可能被生物质炭富集的22株潜在生防菌株。定殖复筛剔除部分假性生物质炭介导菌株,获得可明确被生物质炭富集的2株木霉菌、3株青霉菌、2株曲霉菌、3株芽孢杆菌、3株假单胞菌、3株链霉菌和2株鞘氨醇单胞菌。木霉菌(TR1和TR3)、青霉菌(PE1)、曲霉菌(AS1和AS2)、芽孢杆菌(BA1、BA2和BA3)、假单胞菌(PS1和PS3)、链霉菌(ST1、ST4和ST5)13个菌株可显著削减土壤辣椒疫霉数量。其中,所有木霉菌和曲霉菌菌株(TR1、TR3、AS1和AS2)及芽孢杆菌(BA1和BA2)、假单胞菌(PS1和PS3)和链霉菌(ST1)9个菌株与生物质炭具有显著的协同抑制辣椒疫霉效果。因此,防控辣椒疫病时,木霉菌、曲霉菌、芽孢杆菌、假单胞菌和链霉菌是生物质炭介导下的主要防病微生物。  相似文献   

8.
生防链霉菌配施棉秆炭对连作棉田土壤微生物区系的影响   总被引:1,自引:1,他引:0  
棉花是重要的经济作物,长期连作能引起棉花土壤微生态的失衡、土传病害加重、进而导致产量和品质的下降,影响棉花产业的健康发展。本文以连作棉田土壤为研究对象,进行室内培养试验,在施用生防放线菌黄三素链霉菌(Streptomyces flavotricini)的基础上添加不同量的棉秆炭[0 g·kg~(-1)(CK)、25.0 g·kg~(-1)、50.0 g·kg~(-1)、100.0 g·kg~(-1)],采用微生物计数和16S rDNA基因序列分析的方法,研究两者配施对连作棉田土壤中生防菌数量、微生物数量和种类的影响,为棉花黄萎病的生物防治提供新的思路。研究结果表明:(1)生防放线菌配施棉秆炭对连作棉田土壤中微生物区系有显著的影响。与单施生防放线菌菌剂的处理相比,两者配施显著增加了土壤中细菌、放线菌和真菌数量,其中配施25.0 g·kg-1棉秆炭处理使土壤中细菌/真菌数量比(B/F)、放线菌/真菌数量比(A/F)分别增加了5 271.2%和30.8%(P0.05)。(2)土壤中生防放线菌数量随着棉秆炭施用量增加而显著增加,配施100.0 g·kg~(-1)棉秆炭处理显著增加了2 672.8%(P0.05)。棉秆炭具有作为生防放线菌良好载体的潜力。(3)生防放线菌配施棉秆炭也改变了土壤中优势微生物的数量和比例,尤其提高了细菌中芽孢杆菌的数量和所占的比例;100.0 g·kg~(-1)棉秆炭与菌剂配施使土壤中链霉菌的数量及比例显著高于对照,但降低了小单孢菌数量;增加了真菌中米曲梅、黑曲霉和木霉的数量,但使其所占比例降低。由此可以看出,生防放线菌配施棉秆炭能提高连作棉田土壤中生防放线菌的数量,增强生防菌制剂的防病促生作用,改善连作棉田土壤微生物群落结构,在防控棉花连作障碍上具有较大的应用潜力。  相似文献   

9.
黄河三角洲刺槐根际与非根际细菌结构及多样性   总被引:4,自引:0,他引:4  
为精确分析黄河三角洲刺槐根际与非根际土壤细菌群落定殖情况,本研究采用高通量测序方法对刺槐根际与非根际土壤细菌结构及多样性进行了研究。研究表明,根际土壤细菌共有36门214属,非根际土壤细菌共有33门153属。变形菌门(Proteobacteria)、放线菌门(Actinobacteria)、酸杆菌门(Acidobacteria)细菌丰度超过15%,是根际与非根际土壤中的优势菌落。根际与非根际土壤中酸杆菌门、硝化螺旋菌门(Nitrospirae)丰度差异显著。根际土壤中红游动菌属(Rhodoplanes)、溶杆菌属(Lysobacter)、热单胞菌属(Thermomonas)、链霉菌属(Streptomyces)及非根际土壤中红游动菌属、溶杆菌属、链霉菌属、Kaistobacter细菌丰度超过4%。根际土壤中固氮菌丰度显著高于非根际土壤,解磷、解钾细菌丰度差异不显著。根际与非根际土壤细菌Chao丰富度分别为2 054、2 376,差异显著。根际与非根际土壤细菌之间的权重(Weighted Unifrac)距离在0.12~0.25之间。综上所述,黄河三角洲刺槐根际与非根际土壤细菌结构具有一定差异,多样性差异显著。  相似文献   

10.
不同年龄麻疯树林地土壤微生物多样性研究   总被引:1,自引:0,他引:1  
殷瑶  谷勇  熊智  陈喜英  齐泮伦  吴昊 《土壤通报》2011,(6):1350-1354
为了探明麻疯树林地土壤微生物类群的生态分布情况,研究了1~10年1,1~20年,21~30年的不同年龄麻疯树林地土壤细菌、真菌及放线菌的数量和类群组成。结果表明:3种林地土壤微生物的数量和种类组成有明显差异,随着林龄的增加微生物数量和种类呈递减趋势;不同土层的微生物数量变化也有所不同,但3种林地都有一个共同特点,即26~30 cm范围内的微生物总数最少;细菌在不同年龄麻疯树林地的各个土层中均有分布,数量明显高于放线菌和真菌;在林地内共分离出土壤真菌20属,其中,假丝酵母属为3个不同年龄麻疯树林地土壤中的优势菌属。  相似文献   

11.
《Applied soil ecology》2000,14(1):55-62
An experiment was conducted under laboratory conditions to investigate the effect of four insecticides, viz. HCH, phorate, carbofuran and fenvalerate at their field application rates (7.5, 1.5, 1.0 and 0.35 kg a.i. ha−1, respectively), on the growth and development of bacteria, actinomycetes and fungi as well as their role in the transformations and availability of some plant nutrients in laterite soil (Typic Orchragualf). All the insecticides in general, and HCH and phorate in particular, significantly increased the population of microorganisms in soil. The most predominant genera of microorganisms, such as Bacillus, Micrococcus and Aspergillus were not affected by most of the insecticides. However, some of the insecticides stimulated the growth and development of Bacillus, Proteus, Corynebacterium, Streptomyces, Fusarium, Trichoderma and Rhizopus. On the other hand, some insecticide exerted deleterious effect on the proportions of Pseudomonas, Staphylococcus, Nocardia, Micromonospora, Aspergillus and Rhizopus. Incorporation of insecticides also significantly stimulated the mineralization and availability of organic C, N and P in soil. Among the tested substances, the stimulations were more pronounced with HCH followed by phorate and fenvalerate.  相似文献   

12.
桂西北光皮桦人工林水源涵养功能   总被引:1,自引:1,他引:1  
为了研究广西西北部不同林龄光皮桦人工林的水源涵养功能,选择具有代表性的11,16年生光皮桦人工林、16年生杉木林,从林冠层、枯枝落叶层和土壤层3个层次及综合性的水源涵养能力进行了定量分析。结果表明:(1)11,16年生光皮桦人工林林冠层、灌木层、草本层持水量范围分别为12.54~21.06,2.15~3.05,1.27~1.52 t/hm~2,凋落物总储量为4.54~7.42 t/hm~2,最大持水量为12.55~16.00 t/hm~2,16年生均显著大于11年生(P0.05),凋落物吸水速率与浸水时间存在良好的线性关系(R~20.86,P0.05)。(2)土壤的孔隙状况表现为16年生光皮桦林11年生光皮桦林,均大于对照的16年生杉木林,0—20 cm显著大于20—40,40—80 cm土层。(3)11年生光皮桦土壤最大持水量、毛管持水量、非毛管持水量的变化范围分别为28.97%~60.55%,25.35%~47.21%,3.71%~13.34%,16年生的为29.06%~63.45%,25.63%~48.70%,3.34%~14.75%,均随着土层的加深而减少;11,16年生光皮桦林0—80 cm土壤层自然含水量范围分别为27.46~30.16,28.12~30.22 g/cm~3;总蓄水量分别为3 813.4,3 732.2 t/hm~2,均大于16年生杉木林(3 659.2 t/hm~2)。总体上,林龄较大的光皮桦人工林表现出较强的水源涵养功能,且优于同林龄的杉木人工林。研究结果可为该地区光皮桦人工林的经营管理提供科学依据。  相似文献   

13.
Characteristic microfloras have been found to exist corresponding to the soil types. In cultivated soil, corynebacteria have been shown to be one of the dominant groups, and In grassland soil has been characterized by pseudomonads (1–3). In contrast, pine forest soil has been shown to contain Bacillus as a dominant genus (4).  相似文献   

14.
Fusarium wilt, caused by Fusarium oxysporum f. sp. cucumerinum J. H. Owen, results in considerable yield losses for cucumber plants. A bio-organic fertilizer (BIO), which was a combination of manure composts with antagonistic microorganisms, and an organic fertilizer (OF) were evaluated for their efficiencies in controlling Fusarium wilt. Application of the BIO suppressed the disease incidence by 83% and reduced yield losses threefold compared with the application of OF. Analysis of microbial communities in rhizosphere soils by high-throughput pyrosequencing showed that more complex community structures were present in BIO than in OF treated soils. The dominant taxonomic phyla found in both samples were Proteobacteria, Firmicutes, Actinobacteria and Acidobacteria among bacteria and Ascomycota among fungi. Abundance of beneficial bacteria or fungi, such as Trichoderma, Hypoxylon, Tritirachium, Paenibacillus, Bacillus, Haliangium and Streptomyces, increased compared to the OF treatment, whereas the soil-borne pathogen, Fusarium, was markedly decreased. Overall, the results of this study demonstrate that the application of the BIO was a useful and effective approach to suppress Fusarium wilt and that the high-throughput 454 pyrosequencing was a suitable method for the characterization of microbial communities of rhizosphere soil of cucumber.  相似文献   

15.
A shadehouse pot trial was conducted to study the efficiency of single and dual inoculations with selected Trichoderma and Bacillus isolates on performance of dry bean plants (Phaseolus vulgaris L.) grown in composted pine bark (CPB) potting medium. All the plant treatments inoculated with Trichoderma spp. and/or Bacillus spp. had higher photosynthetic efficiency (Fv/Fm values). Of the treatments, only B. subtilis B69 showed a significant increase (P = 0.02) in Fv/Fm values over the growth period. The Trichoderma and Bacillus treated plants showed increase in dry shoot biomass. The greatest degree of nodulation was observed in Trichoderma and/or Bacillus treated plants. Increase in nitrogen concentrations were observed in leaves of plants inoculated with Trichoderma and Bacillus isolates. Only T. atroviride SY3A significantly increased phosphorus concentrations in leaves. These results depict and highlight the role these organisms can play in plant root-plant growth promoting rhizobacteria or plant growth promoting fungi (PGPR/PGPF) interaction in a nutrient-poor growth medium.  相似文献   

16.
Microbial morphology fundamentally constrains how species interact with their environment, and hence ultimately affects their niche. However, the methodology of functional microbes in the soil ecosystem is still poorly studied since it is difficult to capture and identify the active monospecific community from the complicated environment and enormous number of microbial species in soils. To comprehensively reveal the morphology of active microbes in soil ecosystem, magnetic nanoparticle-mediated isolation (MMI) and single-cell image recognition (SCIR) were employed to study soil active Bacillus community, which functionally boosted the soil fertility in organic fertilisation compared to mineral fertilisation and unfertilised control treatments in our previous study. The results showed that MMI and SCIR can efficiently isolate active Bacillus from soil particles and other microorganisms. High throughput sequencing showed that the captured Bacillus showed similar community structure in different long-term fertilisation soils, while SCIR revealed that the active Bacillus was greater in number and larger in size in organic fertilisation treatment compared to mineral fertilisation and unfertilised control treatments. Our study demonstrates that the combination of MMI and SCIR is a potentially powerful tool to capture and identify the morphology of active and functional microbes in the soil ecosystem.  相似文献   

17.
Liming is a known forest management procedure used to amend nutrient-poor soils such as soils of acidic forests to rectify cation deficiencies and to restore soil pH. However, although this procedure is well known for its beneficial effect on the forest trees, its relative impact on the functional and taxonomic diversity of the soil bacterial communities has been poorly investigated. In this study, we characterized the ability of the soil bacteria to weather soil minerals and to hydrolyze chitin. A collection of 80 bacterial strains was isolated from the Scleroderma citrinum ectomycorrhizosphere and the adjacent bulk soil in two stands of mature beeches (Fagus sylvatica) developed on very acidic soil and presenting two levels of calcium (Ca) availability: a control plot as well as a plot amended with Ca in 1973. All the bacterial isolates were identified by partial 16S rRNA gene sequence analysis as members of the genera Burkholderia, Bacillus, Dyella, Kitasatospora, Micrococcus, Paenibacillus, Pseudomonas, and Rhodanobacter. Using a microplate assay for quantifying the production of protons and the quantity of iron released from biotite, we demonstrated that the bacterial strains from the amended plot harbored a significant higher mineral weathering potential that the ones isolated from the control plot. Notably, the weathering efficacy of the ectomycorrhizosphere bacterial isolates was significantly greater than that of the bulk soil isolates in the control treatment but not in the amended plot. These data reveal that forest management, here mineral amendment, can strongly affect the structure of bacterial communities even over the long term.  相似文献   

18.
Summary The decomposition of coniferous sawdust and bark with added N and P was studied in relation to its capacity to serve as a substrate for plant growth. With sawdust as a substrate, there was more microbial biomass, greater CO2 evolution, more ammonification and more actinomycetes but less nitrification and less fungi compared with bark. All groups and activities were greater in sawdust and bark compared with soil used as the substrate. Inoculation with cellulolytic strains of Bacillus sp. Cephalosporium sp. and Streptomyces sp. sometimes increased these activities but only marginally. The derived sawdust and bark composts increased the yields of tomato compared with soil to which the same nutrients had been added.  相似文献   

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