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1.
海州香薷根细胞壁对铜的吸附固定机制研究   总被引:11,自引:1,他引:11  
海州香薷是铜耐性植物,细胞壁是其吸收积累铜的重要场所.本文利用细胞壁化学改性结合吸附动力学试验和红外光谱学研究了海州香薷根细胞壁及其组分对Cu2+的吸附动力学特征,以及它们吸附固定Cu2+的功能基团.吸附动力学试验表明,海州香薷根细胞壁对Cu2+吸附300 min后,吸附量已接近饱和水平,达到最大吸附量的90%左右;500 min时达到吸附饱和,饱和吸附量为5.85 mg·g-1.当细胞壁进行化学改性后,如氨水处理细胞壁使果胶变成低酯化的酰胺类果胶或者去除细胞壁中的纤维素,根细胞壁对铜的吸附量会显著降低.果胶和纤维素分别吸附了19.85%和25.48%的Cu2+,是细胞壁吸附固定Cu2+的两大主要组分.红外光谱研究也表明,在海州香薷根细胞壁吸附Cu2+的过程中,羟基、羧基和氨基是Cu2+的主要结合位点.其中,果胶为Cu2+的结合提供了羟基官能团,纤维素和半纤维素为Cu2+的结合提供了羧基官能团,而细胞壁蛋白提供了氨基官能团等结合位点.由此可见,根细胞壁及其各个组分对Cu2+具有较高的吸附固定能力,是海州香薷根系Cu耐性的重要机制.  相似文献   

2.
为筛选适合陇东黄土高原石油污染土壤修复植物,选取当地"适生"植物金盏菊(Calendula officinalis)联合微生物菌剂开展了为期5个月的原位修复实验.采用常规方法和PCR-DGGE技术分析了修复过程中土壤理化性质、酶活性及土壤微生物群落遗传多样性等15项土壤环境因子的动态变化情况及其对金盏菊生态修复的响应.结果表明,随着原位修复的进行,1土壤脲酶、多酚氧化酶、过氧化氢酶及脱氢酶活性均不同程度呈增加的趋势(p0.05).2土壤TPHs、p H、有机质、含盐率的变化情况不尽相同,但总体呈下降的趋势(p0.05);土壤碱解氮、速效磷及速效钾含量总体呈上升趋势(p0.05).3土壤微生物群落遗传多样性结果显示,Shannon-Wiener多样性指数和Pielou均匀度指数整体呈逐步增加的趋势.4PCA分析结果显示,土壤脲酶、脱氢酶及碱解氮等环境因子对金盏菊修复表现为促进作用,而有机质含量过高将不利于金盏菊的植物修复.金盏菊和微生物菌剂联合修复过程中,土壤多酚氧化酶、速效磷、脱氢酶及速效钾发挥主要作用,而土壤TPHs和含盐率过高则影响了联合修复效果.本研究旨在分析金盏菊用于陇东地区油污土壤的生态响应,结果有助于筛选出适合陇东黄土高原土壤类别-适生植物-土著降解菌群的组合,利用乡土物种的适生性降低修复成本,为陇东地区油污土壤生态修复提供新的技术方案和背景资料.  相似文献   

3.
利用磷脂脂肪酸(PLFAs)生物标记法分析野生型牵牛花(Pharbitis nil (Linn.) Choisy)根际土壤微生物群落结构,探讨牵牛花生长对石油烃污染土壤微生物群落与石油烃降解的影响.结果表明,供试土壤微生物群落中,先后出现了24种PLFAs,包括标记细菌的饱和脂肪酸(SAT)、革兰氏阳性菌(G+)的末端支链饱和脂肪酸(TBSAT)、革兰氏阴性菌(G-)的单不饱和脂肪酸(MONO)和环丙脂肪酸(CYCLO)、真菌的多不饱和脂肪酸(PUFA)和放线菌的中间型支链饱和脂肪酸(MBSAT)等六大类型.PLFAs的主成分分析(PCA)表明,牵牛花根际与对照组(未种牵牛花,CK)土壤微生物群落具有明显的差异,微生物多样性在春季增加83%、夏季增加140%、秋季增加50%;微生物的生物量在春季增加97.6%,夏季增加116.3%,秋季增加60.3%.牵牛花根际与对照组相比土壤中石油烃降解率明显提高,在春、夏、秋季分别提高了7.5%、34.2%和19.7%;并且,在牵牛花生长的不同季节石油烃的降解率有明显的差异,春季为22.3%,夏季为51.8%,秋季为38.0%.相关性分析表明,石油烃降解与土壤微生物总生物量具有中等程度的相关性(|r|=0.75);与G+细菌、甲烷氧化菌的生物量具有高度相关性,相关系数|r|>0.8;与G-的生物量具有中度相关性,相关系数为|r|=0.74;与真菌的生物量具有低度相关性,相关系数为|r|=0.36,与放线菌没有相关性,相关系数为|r|<0.30.  相似文献   

4.
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   

5.
典型气田土壤铁还原活性与微生物群落关系研究   总被引:1,自引:0,他引:1  
由微生物驱动的土壤铁还原过程在铁的生物地球化学循环中起到重要作用,该过程还可与土壤重金属的转化及石油烃类有机污染物的降解等过程相偶联.油气田土壤常具有潜在有机污染物风险,本研究以重庆涪陵页岩气田的土壤(潜在烃类有机物污染风险)为对象,测定土壤铁还原活性(Iron Reducing Potential,IRP),并利用Illumina Miseq测序解析其中的铁还原微生物类群,进而探讨IRP、土壤基本性质及微生物群落之间的关系.结果表明,该区域土壤铁还原菌群的优势菌门为厚壁菌门(Firmicutes)、变形菌门(Proteobacteria)和拟杆菌门(Bacteroidetes).与低IRP样品相比,高IRP样品中Pseudomonas、norank PeptococcaceaeLentimicrobium等菌属具有较高的相对丰度.基于各样品OTU (Operational Taxonomic Unit)组成的PCoA (Principal Co-ordinates Analysis)分析表明,高、中及低IRP样品中铁还原菌群落结构差异显著(R2=0.25,p<0.01),且一些分别属于Acetoanaerobium、Proteiniphilum、Petrimonas、TessaracoccusExiguobacterium菌属中的OTUs在高IRP样品中显著上调.结构方程模型表明,铁还原微生物的群落结构是直接决定土壤IRP的主要因子,土壤氨氮及有效磷均可通过影响微生物群落结构来间接影响IRP,且氨氮还可通过直接影响有效磷来间接影响土壤IRP.本研究揭示了影响典型页岩气田土壤铁还原活性的关键因子及微生物机制,为进一步深入研究铁还原条件下土壤有机污染物去除的微生物机制打下基础.  相似文献   

6.
Bacterial diversity was investigated in soil samples collected from 13 sites around the Great Wall Station, Fildes Peninsula, King George Island, Antarctica, using denaturing gradient gel electrophoresis (DGGE) of 16S rRNA genes. The classes α-, β-, and γ-Proteobacteria, as well as the phylum Actinobacteria, were found to be the dominant bacteria in the soils around the Great Wall Station. Although the selected samples were not contaminated by oil, a relationship between soil parameters, microbial biodiversity, and human impact was still seen. Sample sites in human impacted areas showed lower bacterial biodiversity (average H′= 2.65) when compared to nonimpacted sites (average H′= 3.05). There was no statistically significant correlation between soil bacterial diversity and total organic carbon (TOC), total nitrogen, or total phosphorus contents of the soil. Canonical correlation analysis showed that TOC content was the most important factor determining bacterial community profiles among the measured soil parameters. In conclusion, microbial biodiversity and community characteristics within relatively small scales (1.5 km) were determined as a function of local environment parameters and anthropogenic impact.  相似文献   

7.
A greenhouse pot experiment was conducted to investigate the in?uence of soil moisture content on plant growth and the rhizosphere microbial community structure of four plant species (white clover, alfalfa, sudan grass, tall fescue), grown individually or in a mixture. The soil moisture content was adjusted to 55% or 80% water holding capacity (WHC). The results indicated that the total plant biomass of one pot was lower at 55% WHC. At a given soil moisture, the total plant biomass of white clover and tall ...  相似文献   

8.
野鸭湖湿地芦苇根际微生物多样性与磷素形态关系   总被引:2,自引:0,他引:2  
滕泽栋  李敏  朱静  宋明阳 《环境科学》2017,38(11):4589-4597
以野鸭湖湿地芦苇(Phragmites communis)根际微生物为研究对象,采用化学连续提取法分析了芦苇根际/非根际土壤中各形态磷随植物生长(4、7、10月)的变化规律,同时基于细菌的16S rRNA高通量测序技术,分析了芦苇根际/非根际土壤微生物多样性,进一步采用CCA法分析了土壤样品中特定微生物与磷素形态转化关系.结果表明,无机磷含量的总体顺序大小为:钙磷(Ca-P)闭蓄态磷(Oc-P)铁磷(Fe-P)交换态磷(Ex-P)铝磷(Al-P),无机磷含量变化主要受芦苇生长状况影响,在芦苇旺盛期达到最低,且根际土壤中的总无机磷含量普遍低于非根际.有机磷含量分布为高稳定性有机磷(HR-OP)中稳定性有机磷(MR-OP)中活性有机磷(ML-OP)活性有机磷(L-OP),各组分含量均随芦苇生长先降低后升高.芦苇根际/非根际土壤微生物中的优势菌门均为变形菌门(Proteobacteria)、酸杆菌门(Acidobacteria)、绿弯菌门(Chloroflexi)、放线菌门(Actinobacteria),但在芦苇生长过程中,其根际和非根际微生物群落结构受季节影响变化显著,且根际和非根际的变化有所差异.同时发现了芽孢杆菌属(Bacillus)、肠杆菌属(Enterobacter)、假单胞菌属(Pseudomonas)、伯克霍尔德氏菌属(Burkholderia)、不动杆菌属(Acinetobacter)等可能是与磷形态转化有关的主要功能菌属,这些菌属能利用大部分的有机磷和无机磷,在湿地土壤磷素转化中起着关键作用.  相似文献   

9.
The ultimate purpose of phytoextraction is not only to remove heavy metals from soil but also to improve soil quality. Here, we evaluated how the joint effect of Streptomyces pactum (strain Act12) and inorganic (Hoagland's solution) and organic (humic acid and peat) nutrients affected the phytoextraction practice of cadmium (Cd) and zinc (Zn) by potherb mustard, and the microbial community composition within rhizosphere was also investigated. The results indicated that the nutrients exerted synergistically with Act12, all increasing the plant biomass and Cd/Zn uptakes. The inoculation of Act12 alone significantly increased dehydrogenase activity of rhizosphere soil (P < 0.05), while urease and alkaline phosphatase activities varied in different dosage of Act12. Combined application of microbial strain with nutrients increased enzymatic activities with the elevated dosage of Act12. 16S ribosomal RNA high-throughput sequencing analysis revealed that Act12 inoculation reduced the diversity of rhizosphere bacteria. The Act12 and nutrients did not change dominant phyla i.e., Proteobacteria, Bacteroidetes, Gemmatimonadetes, Actinobacteria and Acidobacteria, but their relative abundance differed among the treatments with: Peat > Act12 > Humic acid > Hoagland's solution. Comparatively, Sphingomonas replaced Thiobacillus as dominant genus after Act12 application. The increase in the Sphingomonas and Flavisolibacter abundances under Act12 and nutrients treatments gave rise to growth-promoting effect on plant. Our results revealed the important role for rhizosphere microbiota in mediating soil biochemical traits and plant growth, and our approach charted a path toward the development of Act12 combined with soil nutrients to enhance soil quality and phytoextraction efficiency in Cd/Zn-contaminated soils.  相似文献   

10.
The plant root-associated microbiomes, including both the rhizosphere and the root endosphere microbial community, are considered as a critical extension of the plant genome. Comparing to the well-studied rhizosphere microbiome, the understanding of the root endophytic microbiome is still in its infancy. Miscanthus sinensis is a pioneering plant that could thrive on metal contaminated lands and holds the potential for phytoremediation applications. Characterizing its root-associated microbiome, especially the root endophytic microbiome, could provide pivotal knowledge for phytoremediation of mine tailings. In the current study, M. sinensis residing in two Pb/Zn tailings and one uncontaminated site were collected. The results demonstrated that the metal contaminant fractions exposed strong impacts on the microbial community structures. Their influences on the microbial community, however, gradually decreases from the bulk soil through the rhizosphere soil and finally to the endosphere, which resulting in distinct root endophytic microbial community structures compared to both the bulk and rhizosphere soil. Diverse members affiliated with the order Rhizobiales was identified as the core microbiome residing in the root of M. sinensis. In addition, enrichment of plant-growth promoting functions within the root endosphere were predicted, suggesting the root endophytes may provide critical services to the host plant. The current study provides new insights into taxonomy and potential functions of the root-associated microbiomes of the pioneer plant, M. sinensis, which may facilitate future phytoremediation practices.  相似文献   

11.
Nitrogen deposition has dramatically altered biodiversity and ecosystem functioning on the earth; however, its effects on soil bacterial community and the underlying mechanisms of these effects have not been thoroughly examined. Changes in ecosystems caused by nitrogen deposition have traditionally been attributed to increased nitrogen content. In fact, nitrogen deposition not only leads to increased soil total N content, but also changes in the NH4+-N content, NO3--N content and pH, as well as changes in the heterogeneity of the four indexes. The soil indexes for these four factors, their heterogeneity and even the plant community might be routes through which nitrogen deposition alters the bacterial community. Here, we describe a 6-year nitrogen addition experiment conducted in a typical steppe ecosystem to investigate the ecological mechanism by which nitrogen deposition alters bacterial abundance, diversity and composition. We found that various characteristics of the bacterial community were explained by different environmental factors. Nitrogen deposition decreased bacterial abundance that is positively related to soil pH value. In addition, nitrogen addition decreased bacterial diversity, which is negatively related to soil total N content and positively related to soil NO3--N heterogeneity. Finally, nitrogen addition altered bacterial composition that is significantly related to soil NH4+-N content. Although nitrogen deposition significantly altered plant biomass, diversity and composition, these characteristics of plant community did not have a significant impact on processes of nitrogen deposition that led to alterations in bacterial abundance, diversity and composition. Therefore, more sensitive molecular technologies should be adopted to detect the subtle shifts of microbial community structure induced by the changes of plant community upon nitrogen deposition.  相似文献   

12.
磺胺甲恶唑对赤子爱胜蚓肠道微生物群落的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
肠道菌群已被证实有助于宿主的健康和代谢功能,但环境污染物对动物肠道微生物的影响却很少报道.因此,本研究将赤子爱胜蚓(Eisenia fetida)暴露于抗生素(磺胺甲恶唑)污染土壤28 d后,基于16S rRNA高通量测序技术分析了蚯蚓肠道微生物群落组成,并探讨了抗生素污染对蚯蚓肠道菌群结构的影响.结果表明,土壤中磺胺甲恶唑对蚯蚓的存活率和生长无明显影响,但可以引起蚯蚓肠道微生物群落的紊乱.磺胺甲恶唑的添加能够使蚯蚓肠道微生物群落多样性水平降低,并引起肠道内支杆菌属(Mycobacterium)和Luteolibacter的丰度显著降低,也能显著增加肠道内拜纳蒙纳斯属(Balneimonas)和疣微菌科(Verrucomicrobiaceae)的丰度,而芽胞杆菌属(Bacillus)等优势菌的丰度在肠道内较为稳定.同时,赤子爱胜蚓肠道微生物群落主要以放线菌门(Actinobacteria)、变形菌门(Proteobacteria)和厚壁菌门(Firmicutes)为主,并与周围土壤菌群组成存在显著差异.此外,蚯蚓肠道细菌群落多样性低于周围土壤细菌群落多样性,这可能是由于蚯蚓肠道自身微环境和共选择造成的.这些结果有助于更好地理解抗生素污染在土壤动物肠道微生态系统中的风险传播.  相似文献   

13.
李毳  景炬辉  刘晋仙  柴宝峰 《环境科学》2018,39(4):1804-1812
随机过程和确定性过程对群落动态的影响机制及重要性是群落生态学研究的中心课题,也是目前群落生态学最具争议的问题.微生物群落在生态系统物质循环和能量流动过程中发挥着重要作用,对其结构动态的研究不仅为阐明群落构建机制提供重要的数据支持,而且为预测环境胁迫条件下微生物群落结构的动态提供理论依据.本研究通过Illumina MiSeq测序的方法,分析了中条山十八河尾矿库坝面不同恢复阶段细菌和真菌群落结构特征.结果表明,研究区尾矿坝不同恢复年限土壤理化性质发生梯度变化,植物群落结构呈现一定的演替趋势,植物群落多样性与土壤养分显著相关,而与土壤重金属含量无相关性.不同恢复年限的土壤微生物群落结构具有显著差异,其中优势细菌主要有变形菌门(Proteobacteria)、放线菌门(Actinobacteria)、厚壁菌门(Firmicutes)、酸杆菌门(Acidobacteria);优势真菌主要有子囊菌门(Ascomycota)、担子菌门(Basidiomycota)、接合菌门(Zygomycota).微生物群落组成主要受到土壤养分和重金属含量的影响,而植物多样性对微生物群落结构的影响不明显,表明在局域小尺度环境胁迫条件下,土壤环境因子是微生物群落结构动态变化的主要驱动力.  相似文献   

14.
从自然环境中分离到的可降解农药的土著微生物,因其对环境的友好性及原位修复的可行性,受到了高度关注.为从土壤中筛选精喹禾灵降解菌株,首先利用PCR-DGGE技术分析了除草剂精喹禾灵胁迫下土壤细菌群落结构及多样性的变化.结果表明,添加精喹禾灵后,土壤细菌群落结构发生了明显的改变.精喹禾灵使细菌多样性呈现出增加-减少-增加的变化趋势,其中第9 d变化最大,后期趋于稳定.根据DGGE图谱条带的测序结果推断,Pseudomonas、Massilia、Burkholderia等属中的细菌对精喹禾灵具有耐受性或降解潜力,这些微生物类群可作为减少农药残留的土著微生物资源进行分离筛选.根据条带的测序结果,合成了地高辛(Digoxigenin)标记的探针,并进行了菌落原位杂交,筛选到了3株具有降解潜力的菌株,其中L1可以利用精喹禾灵作为唯一碳源生长,经16S rRNA基因鉴定该菌株属于假单胞菌属(Pseudomonas sp.).利用高效液相色谱法测定了菌株L1在无机盐培养基中降解精喹禾灵的效果.结果表明,培养7 d后,精喹禾灵的含量减少了近50%,且随着精喹禾灵含量的降低,L1菌体数量增加,证实了菌株L1具有降解精喹禾灵的能力.这一结果为今后研究菌株L1降解精喹禾灵的机制、功能基因等奠定了基础.  相似文献   

15.
The nature of microbial communities and their relation to enzyme activities in desert soils is a neglected area of investigation. To address this, the bacterial diversity and distribution and soil physico-chemical factors were investigated in the soil crust, the soil beneath the crust and rhizosphere soil at the southeast edge of the Tengger Desert, using the denaturing gradient gel electrophoresis of 16S rRNA genes amplified by the polymerase chain reaction. Phylogenetic analysis of the sequenced DGGE bands revealed a great diversity of bacteria. The Proteobacteria, consisting of the α, β, and γ subdivisions, were clearly the dominant group at all depths and in rhizosphere soil. Analysis of the enzyme activities indicated that the rhizosphere soil of Caragana korshinskii exhibited the highest protease and polyphenol oxidase activities, and in the soil crust there were increased activities of catalase, urease, dehydrogenase and sucrase. The bacterial community abundance closely correlated with soil enzyme activities in different soils. The presence of Cyanobacteria correlated with significant increases in protease, catalase and sucrase in the soil crust, and increased urease in the rhizosphere soil of Artemisia ordosica. The occurrence of Acidobacteria was associated with significant increases in urease, dehydrogenase, and sucrase in the rhizosphere soil of C. korshinski. The presence of γ-Proteobacteria correlated with a significant increase in polyphenol oxidase in the rhizosphere soil of A. ordosica. The study indicated a close relationship between the soil bacterial community and soil enzymes, suggesting the necessity of further investigations into bacterial function in this desert ecosystem.  相似文献   

16.
面向我国村镇垃圾存量治理的需求,非正规垃圾填埋场的治理是关键.但目前对富含氨氮的垃圾堆场重金属有机污染物复合污染土壤植物修复效率的研究尚少见报道.选取耐性植物紫花苜蓿,通过盆栽试验研究不同施N水平处理(0、10和50 mg ·kg-1)对Cd-PAHs复合污染土壤植物生长、污染物的去除及土壤细菌群落结构的影响,以此评估N在植物修复垃圾堆场污染土壤过程中的作用.结果表明,高污染条件下[ω(Cd)为10 mg ·kg-1ω(PAHs)为400 mg ·kg-1],苜蓿生物量随施N水平的提高而增加,分别为不加N处理的6.0和6.3倍;低污染条件下[ω(Cd)为1 mg ·kg-1ω(PAHs)为100 mg ·kg-1],低N水平处理能促进苜蓿的生长,但差异不显著,而高N水平处理显著抑制其生长.植物修复中,苜蓿对低污染组中Cd的修复效率在5.58%~7.49%,N的添加显著提高高污染组中苜蓿修复效率,由0.95%提高至3.02%;与菲(Phe)相比,N对土壤中芘(Pyr)去除的促进作用更明显.此外,苜蓿可促进土壤中Phe和Pyr的去除,其中通过促进微生物对PAHs的降解作用占主导地位,而植物吸收作用的贡献小于0.21%.基于Bray-Curtis距离的冗余分析(db-RDA)显示PAHs和Cd是影响土壤微生物群落结构的主要因素,高N水平处理对单一Cd污染和高污染组中细菌群落分布影响更大,促进具有生物修复作用的菌属成为土壤优势细菌群落,如节杆菌属(Arthrobacter)、细杆菌属(Microbacterium)和新鞘脂菌属(Novosphingobium)等.研究结果可为我国垃圾堆场和非正规填埋场污染土壤生态修复提供理论依据.  相似文献   

17.
Dry–rewetting(DW) disturbance frequently occurs in soils due to rainfall and irrigation, and the frequency of DW cycles might exert significant influences on soil microbial communities and their mediated functions. However, how microorganisms respond to DW alternations in soils with a history of heavy metal pollution remains largely unknown.Here, soil laboratory microcosms were constructed to explore the impacts of ten DW cycles on the soil microbial communities in two contrasting soils(fluvo-aquic soil and red soil)under three copper concentrations(zero, medium and high). Results showed that the fluctuations of substrate induced respiration(SIR) decreased with repeated cycles of DW alternation. Furthermore, the resistance values of substrate induced respiration(RS-SIR)were highest in non-copper-stressed(zero) soils. Structural equation model(SEM) analysis ascertained that the shifts of bacterial communities determined the changes of RS-SIR in both soils. The rate of bacterial community variance was significantly lower in noncopper-stressed soil compared to the other two copper-stressed(medium and high) soils,which might lead to the higher RS-SIR in the fluvo-aquic soil. As for the red soil, the substantial increase of the dominant group WPS-2 after DW disturbance might result in the low RS-SIR in the high copper-stressed soil. Moreover, in both soils, the bacterial diversity was highest in non-copper-stressed soils. Our results revealed that initial copper stress could decrease the resistance of soil microbial community structure and function to subsequent DW disturbance.  相似文献   

18.
王露莹  孙慧珍  杨雪 《环境科学》2022,43(4):2182-2191
通过分析松花江典型植被(芦苇、白杨、松江柳和修氏苔草)根际土壤细菌群落结构与功能的差异,辨识不同类型植被修复受损滨岸带生境的潜力,为松花江受损滨岸带生境修复和保护提供理论依据.使用Illumina MiSeq PE300二代高通量测序平台对松花江下游滨岸带的4种典型植被根际土壤细菌16S rRNA进行测序,分析不同植被...  相似文献   

19.
As one typical cationic disinfectant, quaternary ammonium compounds (QACs) were approved for surface disinfection in the coronavirus disease 2019 pandemic and then unintentionally or intentionally released into the surrounding environment. Concerningly, it is still unclear how the soil microbial community succession happens and the nitrogen (N) cycling processes alter when exposed to QACs. In this study, one common QAC (benzalkonium chloride (BAC) was selected as the target contaminant, and its effects on the temporal changes in soil microbial community structure and nitrogen transformation processes were determined by qPCR and 16S rRNA sequencing-based methods. The results showed that the aerobic microbial degradation of BAC in the two different soils followed first-order kinetics with a half-life (4.92 vs. 17.33 days) highly dependent on the properties of the soil. BAC activated the abundance of N fixation gene (nifH) and nitrification genes (AOA and AOB) in the soil and inhibited that of denitrification gene (narG). BAC exposure resulted in the decrease of the alpha diversity of soil microbial community and the enrichment of Crenarchaeota and Proteobacteria. This study demonstrates that BAC degradation is accompanied by changes in soil microbial community structure and N transformation capacity.  相似文献   

20.
刘月  杨树青  张万锋  娄帅 《环境科学》2023,44(8):4585-4598
微生物菌肥改良盐渍土具有高效、绿色环保等优势,同时施加微生物菌肥是安全利用微咸水的有效方式.试验基于河套灌区中度盐渍土,以枸杞为指示植物,在微咸水灌溉条件下设置施加不同微生物菌肥量F1(4 500 kg·km-2)、 F2(7 500 kg·km-2)、 F3(10 500 kg·km-2)和无菌肥(CK)这4个处理,研究枸杞4个关键生育期(开花期、果实膨大期、盛果期和落叶期)不同微生物菌肥施用量对土壤盐基离子、水分、 pH值、养分和细菌群落的影响.结果表明,相较CK, F1仅显著降低了前2个生育期Na+含量(P<0.05),而F2和F3均显著降低全生育期Na+含量(P<0.05),平均降低33.66%和57.98%; F3显著提高了全生育期的土壤含水率(MC)、有机质(OM)、碱解氮(AN)和速效磷(AP)含量(P<0.05).枸杞生育旺盛期,F3的Shannon指数较CK提高了4.41%;土壤优势菌门为变形菌门、拟杆菌门和放线菌门,优势菌属为鞘脂单胞菌属和...  相似文献   

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