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1.
张平究  李恋卿  潘根兴  张俊伟 《生态学报》2004,24(12):2818-2824
农业管理措施影响下土壤微生物群落结构的变化是农业土壤质量研究的前沿问题。运用化学分析方法和 PCR- DGGE技术从土壤微生物碳氮量及基因多样性角度研究了长期不同施肥措施下太湖地区代表性水稻土 -黄泥土的表土微生物活性与分子多样性的变化。结果表明 ,施用化肥以及化肥和有机肥配施在提高土壤有机碳含量的同时 ,不仅提高了水稻土的微生物碳氮量 ,而且改变了微生物的群落结构 ;与长期单施化肥相比 ,长期化肥配施有机肥不仅显著提高了土壤微生物碳氮量 ,而且提高了土壤微生物的分子多样性 ;就土壤的微生物分子群落相似性来说 ,单施化肥下与未施肥下相近 ,而化肥配施秸秆下与化肥配施猪粪下接近 ,说明土壤的有机培肥对土壤微生物群落结构有重要影响。长期单施化肥下水稻产量的年际波动性显著大于化肥配施有机肥下 ,这进一步佐证了化肥配施有机肥显著促进了水稻土的生态系统初级生产力与较高的土壤生态系统稳定性。应用PCR- DGGE技术所揭示的微生物分子群落结构特点可以指示水稻土 10 a尺度的不同农业管理措施下的土壤质量变化  相似文献   

2.
为揭示集约经营对毛竹林土壤固氮细菌群落特征的影响,采用变性梯度凝胶电泳(DGGE)和荧光定量PCR技术,分析集约经营0(CK)、10、15、20、25年毛竹林土壤固氮菌群落结构和丰度的变化规律,并探讨了影响土壤固氮菌群落的主要环境因素.结果表明: 毛竹林集约经营导致土壤pH下降而速效养分积累;集约经营初期(10年)和后期(25年)土壤固氮细菌的群落结构与对照相似,而中期的15年和20年则与对照差异较大.固氮菌多样性指数和丰度均呈现先减少后增加的趋势,经营15年时达到最小值;土壤固氮细菌表现出对集约经营干扰的抵抗和恢复反应.冗余分析表明,土壤速效钾、水解氮、硝态氮和铵态氮的含量与固氮菌群落结构的变化有较强的相关性,表明集约经营措施导致了土壤固氮细菌短期的变化,但长期而言,不会对土壤固氮细菌产生不良影响.  相似文献   

3.
长期施肥对黄土旱塬农田土壤微生物丰度的影响   总被引:3,自引:0,他引:3  
以长武黄土高原农业生态试验站的长期定位试验为平台,通过荧光实时定量PCR (real-time PCR) 技术,研究不同施肥制度下的黄土旱塬农田土壤微生物群落丰度,揭示长期不同施肥制度对土壤微生物群落的影响规律.结果表明: 单施化肥处理细菌数量较CK裸地增加21%,古菌增加32%;化肥配施有机肥处理细菌数量增加37%,古菌数量增加36%.化肥配施有机肥处理显著增加了土壤细菌和古菌的丰度.30年长期施氮肥处理导致氨氧化细菌(AOB)的增幅达7.13倍,而氨氧化古菌(AOA)的增幅仅为0.2倍.AOB对施肥的响应程度较高,尤其是对氮肥具有较高的敏感性.与单施氮肥和氮肥混施有机肥处理相比,施磷肥处理显著增加了固氮酶铁蛋白和甲烷氧化菌含量,撂荒地的固氮酶铁蛋白、亚硝酸还原酶和甲烷氧化菌含量显著高于耕作土壤.结合土壤基本理化性质的相关性分析结果,pH、全氮和有机碳含量是影响土壤微生物群落丰度的重要因子.总之,长期施肥显著改变了黄土旱塬农田土壤各微生物丰度,不同施肥模式、耕作方式对微生物群落丰度具有显著影响.  相似文献   

4.
赵辉  周运超 《生态学报》2020,40(17):6189-6201
生物固氮是马尾松林地土壤氮素的重要来源,固氮微生物群落组成和数量的变化对土壤氮素供应和地力维持起重要作用。采用池栽试验,应用荧光定量PCR(聚合酶链式反应,Polymerase Chain Reaction)技术,借助Illumina Miseq高通量测序平台,以nifH基因为标靶,研究四类母岩(变余砂岩、长石石英砂岩、石英砂岩和玄武岩)发育马尾松土壤固氮菌群落结构和丰度的差异及其与土壤化学性质之间的关系。结果表明:(1)玄武岩土壤的有机碳、全氮、碱解氮、微生物量氮、马尾松株高和地径均显著高于其他母岩(P < 0.05)。(2)四类母岩土壤nifH基因丰度差异显著,玄武岩土壤nifH基因丰度分别是变余砂岩、石英砂岩和长石石英砂岩的3.75倍、7.89倍和4.41倍。(3)四类母岩土壤固氮菌群落α多样性指数(丰富度和多样性)差异显著,且玄武岩显著高于其他母岩。四类母岩发育土壤共获得有效序列159231条,分属于6个门、14个纲、41个目、69个科和122个属。门水平上,变形菌门和蓝藻门为主要优势类群。属水平上,慢生根瘤菌属、眉藻属、根瘤菌属和固氮螺菌属为主要优势属。玄武岩土壤变形菌门、慢生根瘤菌属、根瘤菌属和固氮螺菌属相对丰度显著高于其他母岩。层次聚类和非度量多维尺度(NMDS)分析结果表明,石英砂岩和长石石英砂岩土壤固氮菌群落结构相似,玄武岩与其他母岩固氮菌群落结构差异较大。(4)土壤有机碳、全氮、碱解氮和微生物量氮是固氮菌丰度、α多样性及群落结构的主要影响因子。综上,玄武岩土壤肥力高,提高了土壤固氮菌数量和群落多样性,有利于马尾松生长。研究从微生物学角度为马尾松适地造林和氮素调控提供了科学依据。  相似文献   

5.
为了解磷细菌肥对复垦土壤微生物群落结构变化特征和磷有效性的影响,本研究以连续配施磷细菌肥5年的定位试验为背景,利用16S rDNA基因序列测序方法对土壤细菌群落多样性进行分析,探讨土壤细菌群落与土壤Olsen-P、碱性磷酸酶的关系.试验共设对照、单施化肥、有机肥、有机肥化肥、化肥磷细菌肥、有机肥磷细菌肥和有机肥化肥磷细菌肥7个处理.结果表明: 复垦土壤中放线菌门和变形菌门菌群的相对丰度最大,分别为21.6%~32.2%和13.8%~28.9%.有机肥化肥磷细菌肥处理的OTU数和Chao1指数分别为809和26190,均属最高.磷细菌肥处理能提高土壤中放线菌门和变形菌门菌群的相对丰度,降低土壤中酸杆菌门、热袍菌门和硝化螺旋菌门菌群的相对丰度,对诺卡氏菌属、屈挠杆菌属有一定的促进作用.有机肥化肥磷细菌肥处理能够提高复垦土壤Olsen-P及碱性磷酸酶活性.复垦土壤变形菌门与Olsen-P、碱性磷酸酶的相关系数最高(0.900、0.955),在一定程度上可以作为土壤磷有效性的灵敏性指标.  相似文献   

6.
长期施肥对红壤微生物生物量碳氮和微生物碳源利用的影响   总被引:28,自引:2,他引:26  
采集湖南省祁阳县红壤长期定位施肥19年的土壤样品,分析长期不同施肥红壤的微生物生物量碳、氮和微生物碳源利用率,以揭示长期施肥对红壤微生物学性状的影响.结果表明:施肥19年后,有机肥单施或与化肥配合施用均显著提高土壤微生物生物量碳、氮和微生物碳源利用率.单施有机肥的土壤微生物生物量碳、氮含量分别为231和81 mg·kg-1,化肥有机肥配施分别为148和73 mg·kg-1,均显著高于化肥配施秸秆、不施肥和单施化肥;施用有机肥和化肥配施秸秆的土壤微生物生物量氮占全氮的比例平均为6.0%,显著高于单施化肥和不施肥.Biolog-ECO分析中,平均吸光值(AWCD)的大小为:化肥有机肥配施、单施有机肥>对照>单施化肥、化肥配施秸秆.单施有机肥或与化肥有机肥配施增加了红壤微生物对碳水化合物、羧酸、氨基酸、聚合物、酚类和胺类的碳源利用率;化肥配施有机肥的红壤微生物对聚合物类碳源利用率最高,化肥配施秸秆的红壤微生物对碳水化合物类碳源的利用率最高.表明施用有机肥能显著提高红壤的微生物生物量碳、氮和微生物碳源利用率,提高红壤肥力,保持作物高产.  相似文献   

7.
为揭示土壤真菌群落对免耕、覆盖及有机肥施用的响应机制,在宁夏南部山区冬小麦农田连续3年采用免耕覆盖+施有机肥(NF)、免耕覆盖+不施有机肥(NC)、传统耕作不覆盖+施有机肥(TF)和传统耕作不覆盖+不施有机肥(TC)4个处理,依托Illumina MiSeq 高通量测序平台,研究了土壤真菌群落组成、多样性及其与土壤环境因子间的关系。结果表明: 4个处理共获得3490个可操作分类单元(OTUs),其中含有一些未知真菌。在已知的真菌群落中,子囊菌门和担子菌门为优势菌门,其相对丰度占总丰度的82.1%~94.2%,且TF处理下子囊菌门座囊菌纲的相对丰度最高,NF处理下担子菌门银耳菌纲的相对丰度最高。4个处理真菌群落多样性指数(Shannon和Simpson指数)依次为NC>TC>NF>TF。多元分析结果表明,微生物生物量碳是影响担子菌门和接合菌门相对丰度的主要因素,而土壤全磷、速效钾和速效磷含量高低是驱动子囊菌门真菌相对丰度变化的关键因素。在宁夏南部山区推广以免耕覆盖并施用有机肥的保护性耕作措施有利于提高土壤真菌群落多样性。  相似文献   

8.
不同施肥方式对酸性茶园土壤真菌群落的影响   总被引:12,自引:0,他引:12  
为揭示不同施肥方式对茶园土壤真菌群落结构的影响,依托定位施肥试验,采集对照(CK)、纯化肥(N300)、有机肥配施(OM30) 3个处理的0—10 cm和10—20 cm两层土壤,通过高通量测序技术,分析不同施肥处理下,茶园土壤真菌群落结构特征及其与土壤理化性质的关系。结果表明0—10 cm土层中真菌Alpha多样性显著高于10—20 cm土层(P0.05);在同一土层中,Alpha多样性变化趋势为CK N300 OM30。子囊菌门、担子菌门、接合菌门是试验茶园土壤中三大优势真菌门类,Sordariomycetes纲,Tremellomycetes纲和Mortierellomycotina纲分别是子囊菌门、担子菌门和接合菌门下的优势种群。子囊菌门和担子菌门在0—10 cm土层中相对丰度较高,而接合菌门则在10—20 cm土层中具有较高丰度(P0.05)。施肥处理提高了土壤中接合菌门的相对丰度,降低了子囊菌门的相对丰度。不同深度土壤中真菌群落结构差异主要受土壤理化性质变化驱动,冗余分析和Monte Carlo置换检验结果显示,土壤有机碳、全氮、碳氮比、全钾、速效钾含量对土壤真菌群落结构影响显著(P0.05),而试验茶园土壤的pH变化对同一土层中真菌群落结构的影响并不显著(P0.05)。  相似文献   

9.
冬小麦免耕覆盖与生物有机肥施用对土壤细菌群落的影响   总被引:1,自引:0,他引:1  
王小玲  马琨  伏云珍  安嫄嫄  汪志琴 《生态学报》2020,40(19):7030-7043
为揭示保护性耕作措施对土壤细菌群落结构及多样性的影响规律,选取免耕覆盖+施生物有机肥(NF)、免耕覆盖+不施生物有机肥(NC)、传统耕作不覆盖+施生物有机肥(TF)和传统耕作不覆盖+不施生物有机肥(TC)4个处理,以农田土壤生态系统为研究对象,利用16S rDNA基因Illumina MiSeq高通量测序技术,研究了冬小麦免耕覆盖与生物有机肥施用对土壤细菌群落结构及多样性的影响。结果表明:1)与TC处理相比,NF处理显著降低了土壤pH (P=0.03*),增加了土壤全氮(P=0.002**)、总碳含量(P=0.0001**,P=0.007**),影响了土壤碳/氮比分配(P=0.003**)。2)从16个土壤样本中共获得细菌27门、86纲、125目、213科和315属,其中放线菌门(Actinobacteria)、酸杆菌门(Acidobacteria)、绿弯菌门(Chloroflexi)和变形菌门(Proteobacteria)为优势菌门,其相对丰度约占总丰度的82.40%。3)与传统耕作施生物有机肥处理相比,免耕覆盖施生物有机肥增加了土壤细菌的多样性指数(Simpson指数和Shannon指数),降低了ACE丰富度指数。4)NMDS及多元分析结果表明:土壤细菌群落丰富度指数、多样性指数均与土壤pH、速效磷和土壤碳/氮比成正相关,与土壤微生物生物量碳(SMBC)和土壤总碳成负相关;其中,土壤pH和SMBC分别是影响酸杆菌门和放线菌门的主要驱动因子。施生物有机肥和耕作措施两种因素均对土壤细菌群落结构组成产生了影响,但以施用生物有机肥对土壤细菌群落多样性的影响较明显;此外,施用生物有机肥在传统耕作和免耕覆盖两种情况下均增加了冬小麦产量,但以传统耕作施生物有机肥处理最明显。因此,传统耕作配施生物有机肥是宁夏南部山区改善土壤理化性质、增加土壤细菌群落丰富度和多样性的重要途径。  相似文献   

10.
施用有机肥对侵蚀黑土玉米苗期根内生细菌多样性的影响   总被引:1,自引:1,他引:0  
为了解根内生细菌群落结构在土壤侵蚀条件下的变化,明确有机肥施用对其多样性的影响,本研究采用LNA-PCR和454高通量测序技术相结合的方法对土壤表层剥离30 cm和施用有机肥处理的玉米苗期根内生细菌群落结构进行研究,以表层土没有剥离和单施化肥处理为对照.试验共获得37820条16S rDNA有效序列,主要分布在4个门35个纲214个属和782个OTU,其中,变形菌门、厚壁菌门、放线菌门和拟杆菌门为优势菌门,但不同样品各菌门分布比例存在差异.土壤侵蚀降低了玉米苗期根内生细菌群落多样性,但增施有机肥可以增加根内生细菌群落多样性,这种作用以表层土剥离30 cm处理表现得更为突出.  相似文献   

11.

Microbes play key roles in diverse biogeochemical processes including nutrient cycling. However, responses of soil microbial community and functional genes to long-term integrated fertilization (chemical combined with organic fertilization) remain unclear. Here, we used pyrosequencing and a microarray-based GeoChip to explore the shifts of microbial community and functional genes in a paddy soil which received over 21-year fertilization with various regimes, including control (no fertilizer), rice straw (R), rice straw plus chemical fertilizer nitrogen (NR), N and phosphorus (NPR), NP and potassium (NPKR), and reduced rice straw plus reduced NPK (L-NPKR). Significant shifts of the overall soil bacterial composition only occurred in the NPKR and L-NPKR treatments, with enrichment of certain groups including Bradyrhizobiaceae and Rhodospirillaceae families that benefit higher productivity. All fertilization treatments significantly altered the soil microbial functional structure with increased diversity and abundances of genes for carbon and nitrogen cycling, in which NPKR and L-NPKR exhibited the strongest effect, while R exhibited the least. Functional gene structure and abundance were significantly correlated with corresponding soil enzymatic activities and rice yield, respectively, suggesting that the structural shift of the microbial functional community under fertilization might promote soil nutrient turnover and thereby affect yield. Overall, this study indicates that the combined application of rice straw and balanced chemical fertilizers was more pronounced in shifting the bacterial composition and improving the functional diversity toward higher productivity, providing a microbial point of view on applying a cost-effective integrated fertilization regime with rice straw plus reduced chemical fertilizers for sustainable nutrient management.

  相似文献   

12.
【目的】不合理施肥所引发的土壤环境问题逐渐成为制约我国农业可持续发展的重要因素之一,土壤真菌作为一类重要的土壤微生物,研究长期施肥对土壤真菌多样性及群落分布格局,探讨其理化因子对真菌群落结构的影响具有一定意义。【方法】本研究以东北黑土玉米田长期定位施肥试验(1984–2017)为基础,通过常规分析和Illumina Mi Seq高通量测序技术,分析长期施肥对黑土玉米田土壤养分含量和真菌群落结构变化的影响。【结果】长期施用氮肥明显降低土壤p H,却增加了玉米产量,秸秆与化肥配施可以增加土壤有机质和全氮的含量。稀释曲线结果表明长期施肥降低了土壤真菌序列的丰度和均匀度,并且在秸秆与化肥配施中序列数最低;在优势菌群中,共检测出5个已知真菌门,分别是子囊菌门(Ascomycota)、担子菌门(Basidiomycota)、接合菌门(Zygomycota)、球囊菌门(Glomeromycota)和壶菌门(Chytridiomycota),子囊菌门占总序列平均值的57.0%,并且在氮磷钾配施高量秸秆有机肥(NPK+S0.5)的土壤中,子囊菌门丰度高达70.35%。在土壤真菌属水平的物种丰度分析中,共检测出109个已知真菌属,Humicola、Fusarium、Verticillium、Mortierella这4个菌属为优势菌属;Chaetomium、Trichocladium、Podospora、Preussia 4个菌属在秸秆与化肥配施处理中丰度较高,并同属一个分支聚类。从多样性指数分析得出,秸秆与化肥配施可以增加物种丰度和群落多样性;从热图分析可知,施用氮肥和不施用氮肥处理间真菌群落组成存在明显差异。RDA分析中,土壤理化性质影响着土壤真菌群落结构,尤其是土壤的p H、全量氮磷钾(T-N、T-P、T-K)、有效磷钾(A-P、A-K)和铵态氮(NH4+-N)浓度是重要环境因素。【结论】因此,施用氮肥虽然增加了产量,但也造成土壤酸化,真菌数量增加,其丰富度和多样性明显降低。而秸秆与化肥配施可以维持土壤健康生态环境和真菌群落多样性。  相似文献   

13.
The influences of different fertilizer treatments on spore community structure and diversity of arbuscular mycorrhizal (AM) fungi (AMF) were investigated in a long-term fertilization experiment with seven treatments: organic manure (OM), half organic manure N plus half fertilizer N (1/2 OMN), fertilizer NPK, fertilizer NP, fertilizer NK, fertilizer PK, and the control (without fertilization). Fertilization generally increased the nutrient contained in the fertilizer and treatments with NPK and 1/2 OMN produced the highest crop yields. Thirty-five species of AMF within 6 genera, including 8 previously undescribed species, were recovered. Similarly in all seven treatments, the most abundant genus was Glomus, and followed by Acaulospora. All the fertilization treatments changed AM species composition, and NK treatment had the slightest influence. Fertilization with fertilizers NP, PK and NPK markedly increased AM fungal spore density, while 1/2 OMN, OM and NK treatments showed no significant influences. All the fertilizer treatments, especially OM, significantly decreased species richness and species diversity (Shannon-Weiner index). There were no significant correlations between AM fungal parameters (spore density, species richness and species diversity) and soil properties. The findings indicate that long-term fertilization all can change AM fungal community structure and decrease species diversity, while balanced fertilization with NPK or 1/2 OMN is the most suitable fertilization regime if taking both crop yields and AM species diversity into account.  相似文献   

14.
Long‐term elevated nitrogen (N) input from anthropogenic sources may cause soil acidification and decrease crop yield, yet the response of the belowground microbial community to long‐term N input alone or in combination with phosphorus (P) and potassium (K) is poorly understood. We explored the effect of long‐term N and NPK fertilization on soil bacterial diversity and community composition using meta‐analysis of a global dataset. Nitrogen fertilization decreased soil pH, and increased soil organic carbon (C) and available N contents. Bacterial taxonomic diversity was decreased by N fertilization alone, but was increased by NPK fertilization. The effect of N fertilization on bacterial diversity varied with soil texture and water management, but was independent of crop type or N application rate. Changes in bacterial diversity were positively related to both soil pH and organic C content under N fertilization alone, but only to soil organic C under NPK fertilization. Microbial biomass C decreased with decreasing bacterial diversity under long‐term N fertilization. Nitrogen fertilization increased the relative abundance of Proteobacteria and Actinobacteria, but reduced the abundance of Acidobacteria, consistent with the general life history strategy theory for bacteria. The positive correlation between N application rate and the relative abundance of Actinobacteria indicates that increased N availability favored the growth of Actinobacteria. This first global analysis of long‐term N and NPK fertilization that differentially affects bacterial diversity and community composition provides a reference for nutrient management strategies for maintaining belowground microbial diversity in agro‐ecosystems worldwide.  相似文献   

15.
长期定位施肥对保护地土壤腐殖质结合形态的影响   总被引:13,自引:0,他引:13  
以长期定位施肥蔬菜保护地土壤为材料,研究了不同施肥处理土壤中结合态腐殖质含量及其相关性变化.结果表明,有机肥与无机肥配施松结态腐殖质含量高于单施无机肥的相应处理,但相对含量呈现相反趋势;稳结态腐殖质相对较稳定,没有明显变化;紧结态腐殖质绝对含量及百分含量都明显高于单施无机肥处理,其中以配施有机肥与氮磷钾肥最高,为11.53 g·kg-1;长期定位施用有机肥后保护地土壤松/紧比值呈降低趋势, 其中有机肥与氮磷钾肥配施处理的松紧比值最低,为1.10.  相似文献   

16.
绿肥配施氮肥对岩溶区稻田土壤微生物群落的影响   总被引:1,自引:0,他引:1  
绿肥参与耕作改制是土壤培肥及作物增产的有效措施,对土壤微生物群落结构及多样性的影响至关重要。【目的】研究绿肥配施氮肥对岩溶区稻田土壤微生物群落结构的影响,阐明微生物、土壤生态环境因子及作物产量的相互关系,为岩溶稻区绿肥替代氮肥提供理论依据和数据支撑。【方法】以典型岩溶稻田土壤为研究对象,设置冬闲+不施氮肥(CK)、冬闲+氮肥(N)、绿肥+不施氮肥(M)、绿肥+氮肥(MN) 4个处理,通过3年田间定位试验,对土壤微生物进行高通量测序,解析不同施肥处理对细菌和真菌群落的影响。【结果】与CK相比,MN处理显著提高了早稻产量,提升了土壤有机质、全氮、碱解氮和速效钾含量,降低了速效磷含量。MN处理显著提高细菌群落丰富度及多样性,而真菌群落丰富度和多样性在MN处理有降低趋势。岩溶稻田土壤优势细菌类群主要为Chloroflexi、Proteobacteria和Acidobacteria等,优势真菌类群主要为Ascomycota、Basidiomycota和Zygomycota等。冗余分析(RDA)结果表明,土壤速效钾是影响土壤细菌群落组成的关键环境因子。共现网络分析结果表明,细菌-真菌群落交互关系主...  相似文献   

17.
为了解生物炭基肥替代化肥减量施用的田间长期效应,利用定位试验研究连续5 a炭基肥替代化肥对蔬菜产量、土壤理化性质和细菌群落结构的影响。结果表明,连续5 a实施炭基有机肥替代化肥,土壤p H提高了0.13~0.25,土壤有机质、碱解氮和有效磷含量也分别提高了2.1%~62.2%、5.8%~86.0%和0.4%~103.1%,炭基肥替代化肥处理的荠菜(Capsella bursapastoris)产量提高了4.0%~14.8%,但75%替代处理较50%替代处理有所降低。炭基肥替代化肥处理的土壤菌群Sobs、Shannon、Ace和Chao指数均高于单施化肥处理,且均以75%替代处理最高。炭基肥替代化肥显著降低了土壤中硝化菌属(Nitrolancea)、拟无枝酸菌属(Amycolatopsis)、芽单胞菌属(Gemmatimonas)等的丰度,增加了纤维素降解菌菌群(Planifilum、Saccharomonospora)的丰度。芽单胞菌属、Ilumatobacteraceae、Methyloligellaceae等的丰度与土壤全氮、全磷、有机质间具有显著的相关性。可见,连续炭基肥替代化肥...  相似文献   

18.
土壤线虫在农田生态系统中数量丰富且对土壤环境变化敏感, 可用于评估不同田间管理条件下的土壤健康。本文探究了紫色土区长期不同施肥措施及土壤团聚体粒径对线虫群落的分布及其生态功能多样性的影响。试验设置了5个施肥处理: 不施肥(对照, CK)、单施化肥(NPK)、生物炭 + 化肥(BCNPK)、商品猪粪 + 化肥(OMNPK)和秸秆 + 化肥(RSDNPK)。团聚体粒径分为: 原状土(BS)、大团聚体(> 2 mm; LA)和小团聚体(0.25-2 mm; SA)。结果表明, 与对照相比, 施肥可促进线虫数量增长, 其中单施化肥处理下增幅最小(66%); 有机物料与化肥配施对线虫数量的提升更为显著, 秸秆 + 化肥处理下增幅达206%。不同施肥处理间线虫类群相对丰度差异显著, 大小均表现为: 食细菌线虫(BA) > 杂食/捕食线虫(OP) > 植食线虫(PP) > 食真菌线虫(FU)。小团聚体较其他土壤团聚体的杂食/捕食线虫丰度更低, 食细菌线虫丰度较高。秸秆与化肥配施处理下线虫群落结构指数和富集指数显著增加, 且各施肥处理下线虫功能足迹呈现明显差异。有机肥与化肥配施(尤其是秸秆 + 化肥)可提高土壤养分供应且有利于形成稳定健康的土壤生态系统, 助推区域农业的可持续发展。  相似文献   

19.
Soil enzyme activity and microorganism community can be changed through different long-term fertilization patterns. However, the effect of different fertilization practices on soil microorganisms might differ among crop systems. The objective of the study was to reveal the change of soil enzyme activity and soil microorganism community in different fertilizations both in upland and paddy soils. Therefore, based on long-term fertilization experiments in upland soil started in 1986 and adjacent paddy soil experiment commenced in 1981, with both consisting of 4 treatments: Control (no fertilization), N (only nitrogen fertilizer), NPK (nitrogen, phosphate and potassium fertilizers) and NPKM (nitrogen, phosphate and potassium fertilizers plus organic manure), grain yield, soil fertility, activities of soil urease, catalase, acid phosphatase, microorganism community (the number of bacteria, fungus and actinomycete) were analyzed. The result showed that: the highest grain yield was attained under the application of chemical fertilizers plus manure, as compared with Control, NPKM significantly increased the grain yield by 908.63% in corn and 118.80% in rice (p < 0.05). Meanwhile, NPKM treatment increased significantly soil organic matter and nutrient contents in upland and paddy soils. Interestingly, there was no significant difference in soil pH among all the treatments of paddy soil, but in upland, NPKM increased pH in comparison to Control by 23.06% (1.15 units of pH). Compared with Control, soil urease, catalase activities, bacteria and actinomycete numbers of NPKM were increased by 321.39%, 129.64%, 229.79%, 85.81% in upland soil, and 25.11%, 251.12%, 292.83%, 196.34% in paddy soil. However, in paddy soil, the soil acid phosphatase activity of Control, NPK and NPKM treatments were higher than upland soil by 34.87%, 44.81%, 52.73% and 30.11%. Then, the soil fungus and actinomycete numbers of paddy soil were lower than upland soil by 20.20% and 88.29%. Therefore, it indicated that long-term application of chemical and organic fertilizers delivered highest productivity in both experiment but the effect of fertilizer practices differed between land uses.  相似文献   

20.
The effects of mineral fertilizer (NPK) and organic manure on the community structure of soil ammonia-oxidizing bacteria (AOB) was investigated in a long-term (16-year) fertilizer experiment. The experiment included seven treatments: organic manure, half organic manure N plus half fertilizer N, fertilizer NPK, fertilizer NP, fertilizer NK, fertilizer PK, and the control (without fertilization). N fertilization greatly increased soil nitrification potential, and mineral N fertilizer had a greater impact than organic manure, while N deficiency treatment (PK) had no significant effect. AOB community structure was analyzed by PCR-denaturing gradient gel electrophoresis (PCR-DGGE) of the amoA gene, which encodes the α subunit of ammonia monooxygenase. DGGE profiles showed that the AOB community was more diverse in N-fertilized treatments than in the PK-fertilized treatment or the control, while one dominant band observed in the control could not be detected in any of the fertilized treatments. Phylogenetic analysis showed that the DGGE bands derived from N-fertilized treatments belonged to Nitrosospira cluster 3, indicating that N fertilization resulted in the dominance of Nitrosospira cluster 3 in soil. These results demonstrate that long-term application of N fertilizers could result in increased soil nitrification potential and the AOB community shifts in soil. Our results also showed the different effects of mineral fertilizer N versus organic manure N; the effects of P and K on the soil AOB community; and the importance of balanced fertilization with N, P, and K in promoting nitrification functions in arable soils.  相似文献   

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