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1.
玉米生长期间土壤微生物量与土壤酶变化及其相关性研究   总被引:41,自引:7,他引:41  
研究了玉米生长期间土壤微生物量碳、氮与土壤过氧化氢酶、蔗糖酶、脲酶、蛋白酶活性变化及其相关性.结果表明,玉米生长前期和中期,土壤微生物量碳、氮及酶活性迅速上升,并逐渐达到最大值;玉米生长后期,土壤微生物量碳、氮、酶活性下降至某一值后并逐渐趋于平稳.几种处理相比较,以秸秆+尿素处理的土壤微生物量碳、氮及酶活性为最大.除玉米生长后期,土壤微生物量碳、氮与碱解氮、活性腐殖质、土壤pH不相关外,土壤微生物量碳、氮与土壤过氧化氢酶、蔗糖酶、脲酶、蛋白酶活性及速效养分在玉米生长期间均相关或极相关  相似文献   

2.
不同分子量壳聚糖对土壤碳、氮及呼吸的影响   总被引:5,自引:0,他引:5  
张文清  吕伟娇  陈强  李辉信 《生态学报》2006,26(4):1208-1284
考察了不同分子量壳聚糖对土壤微生物量C、N、土壤呼吸及矿质N的影响.研究发现:不同分子量的壳聚糖施入土壤后,土壤的微生物量C、N、呼吸及矿质N均明显提高.微生物量C、N及土壤呼吸有相似的变化趋势: 随壳聚糖用量的增加而增大.低分子量壳聚糖施入土壤后,微生物量C、N及土壤呼吸均先快速增加,然后下降;中等及高分子量壳聚糖施入土壤后则是开始时变化较小,第14天开始快速增加,34d后下降.研究还发现,NO3^--N与NH4^+-N变化趋势不完全相同,NO3^--N开始时变化较小,第14天开始快速增加,34d后快速下降;低分子量壳聚糖处理时,NH4^+-N开始时快速增加,之后缓慢下降;中等分子量壳聚糖处理时,因加入量不同而不同;高分子量壳聚糖处理时则是从第24天开始变化显著.  相似文献   

3.
赵爽  王邵军  杨波  张昆凤  张路路  樊宇翔 《生态学报》2022,42(21):8830-8838
为探明“丛枝菌根(Arbuscular mycorrhiza, AM)真菌-植物-土壤”耦合作用对石漠化土壤呼吸季节动态的影响,采用LI-6400-09土壤呼吸室和便携式光合作用测量系统,对圆柏(Sabina chinensis)接种摩西斗管囊霉(Funneliformis mosseae,FM)、根内根孢囊霉(Rhizophagus intraradices,RI) 2种AM菌种处理下土壤呼吸季节动态进行野外连续定位观测,并探究AM真菌接种处理下石漠化土壤呼吸速率与植物生长、土壤理化性质之间的关系。结果表明:(1)相较于对照,接种AM真菌对石漠化生境土壤呼吸季节动态产生了显著影响(P<0.01)。AM真菌处理具有较高的土壤呼吸季节变化幅度,即根内根孢囊霉处理土壤呼吸速率(1.55—9.10μmol m-2 s-1)显著高于摩西斗管囊霉(1.62—8.29μmol m-2 s-1)和对照(1.23—4.46μmol m-2 s-1);(2)AM真菌接...  相似文献   

4.
以黄瓜品种‘津春2号’为材料,在育苗基质中添加亚精胺(Spd)和丛枝菌根真菌(AMF),研究外源Spd和AMF对黄瓜幼苗生长、光合作用、果实产量和品质以及根际微生物和酶活性的影响.结果表明:育苗基质中同时添加Spd和AMF,可促进黄瓜幼苗生长,提高根系活力和果实产量,改善品质,并促进养分吸收;Spd和AMF提高黄瓜幼苗净光合速率、实际光化学效率、表观量子效率、羧化效率和光呼吸速率,增加基质中细菌和放线菌数量,而降低真菌数量,并提高蔗糖酶、中性磷酸酶、过氧化氢酶和脲酶的活性.说明育苗基质中同时添加Spd和AMF,可提高黄瓜植株光能利用效率,促使黄瓜幼苗根际微生物区系从低肥力的"真菌型"向高肥力的"细菌型"转化,加速有机磷和有机态氮的分解与转化,为黄瓜生长发育提供比较充足的N、P等养分,从而促进黄瓜植株生长,提高产量并改善品质.Spd可提高AMF侵染率,两者对黄瓜幼苗生长具有明显的叠加效应,说明在接种AMF的基质中添加Spd,是一种可增强AMF侵染率的有效方法.  相似文献   

5.
丛枝菌根真菌对中性紫色土土壤团聚体特征的影响   总被引:6,自引:2,他引:6  
利用分根装置研究了接种丛枝菌根真菌对中性紫色土土壤团聚体数量、大小和稳定性的影响,分析了土壤团聚体数量、分布和分形维数,并运用通径分析对不同影响因子进行了分析。结果表明:接种G. intraradicesG. mosseae的菌根室土壤有机质和总球囊霉素相关土壤蛋白含量有增加的趋势;湿筛条件下菌根室土壤的平均重量直径(MWD)和几何平均直径(GMD)均显著高于根室土壤,而且降低了土壤分形维数,显示了丛枝菌根真菌提升土壤结构特征的作用。通径分析的结果表明,在影响MWD的众多因子中,菌丝密度对MWD有最大的直接作用。两种菌种对土壤结构均有不同程度的改良作用,反映了丛枝菌根真菌功能的多样性。  相似文献   

6.
涕灭威及其复合污染对斑马鱼胚胎DNA的影响   总被引:6,自引:0,他引:6  
研究了一种毒性很高的氨基甲酸酯类杀虫剂--涕灭威和广泛使用的阴离子表面活性剂十二烷基苯磺酸钠(SDBS)组成的复合污染体系对斑马鱼胚胎DNA的影响.结果表明,涕灭威对斑马鱼胚胎DNA的损伤随浓度增大而加重,但低浓度涕灭威在短时间内造成的DNA单链断裂是可以修复的,高浓度则导致难以修复的双链断裂.一定浓度(20mg·L^-1)的SDBS在复合污染体系中能减弱涕灭威的毒性.  相似文献   

7.
通过田间试验分析了玉米根茬留田对土壤生物活性动态变化的影响,结果表明,玉米根茬留田对提高土壤微生物量碳含量和土壤脲酶、磷酸酶、纤维素酶以及转化酶活性效果显著。动态变化特征表明,各处理的土壤微生物量碳和4种酶活性均在播种后60d左右出现高峰。此时正值作物生育旺盛时期,利于作物生长发育,说明玉米根茬留田配施化肥的培肥土壤效果显著,而且可以保持玉米持续高产稳产。  相似文献   

8.
26年长期施肥对土壤微生物量碳、氮及土壤呼吸的影响   总被引:44,自引:0,他引:44  
研究长期小麦连作施肥条件下土壤微生物量碳、氮,土壤呼吸的变化及其与土壤养分的相关性。以陕西长武长期定位试验为平台,应用氯仿熏蒸-K2SO4提取法、碱液吸收法和化学分析法分析了长达26a不同施肥处理农田土壤微生物量碳、微生物量氮和土壤呼吸之间的差异及其调控土壤肥力的作用。长期施肥及种植作物,均能提高土壤微生物量碳、氮含量,尤其是施用有机肥,土壤微生物量碳、氮含量高于单施无机肥的处理,土壤呼吸量也提高15.91%—75.73%,而施用无机肥对于土壤呼吸无促进作用。土壤微生物生物量碳氮、土壤呼吸与土壤有机质、全氮呈极显著相关。长期有机无机肥配施可以提高土壤微生物量碳氮、土壤呼吸,氮磷肥与厩肥配施对提高土壤肥力效果最好。微生物量碳氮及土壤呼吸可以反映土壤质量的变化,作为评价土壤肥力的生物学指标。  相似文献   

9.
玉米与蚕豆秸秆配施对秸秆分解及土壤养分含量的影响   总被引:4,自引:0,他引:4  
采用室内培养试验研究了禾本科作物玉米秸秆和豆科作物蚕豆秸秆单施及其不同比例配施后的秸秆分解及土壤养分含量.结果表明:单施玉米秸秆,土壤有机碳的矿化量和秸秆有机碳的矿化速率都较低,土壤矿质态氮被固持的时间也最长;玉米秸秆与蚕豆秸秆配合施用促进了秸秆有机碳和土壤固持矿质态氮的矿化.两种秸秆单施和配施均显著增加土壤微生物生物量碳、氮含量.禾本科作物秸秆与豆科作物秸秆配合施用,可以加快秸秆的分解,协调养分供应.  相似文献   

10.
丛枝菌根真菌对黄瓜枯萎病的影响   总被引:5,自引:0,他引:5  
王倡宪  郝志鹏 《菌物学报》2008,27(3):395-404
盆栽条件下播种黄瓜Cucumis sativus同时接种丛枝菌根真菌Glomus etunicatum,4周后对接种处理和对照黄瓜苗分别浇灌Fusairum oxysporum f.sp.cucumerinum分生孢子悬液,2周后测定幼苗生物量、根内丙二醛、可溶性糖与游离脯氨酸含量及根围真菌和细菌数量。结果表明:接种Glomus etunicatum根系干重增加了9.3%,提高了根内可溶性糖和游离脯氨酸含量,显著减少了根围真菌数量,降低了黄瓜枯萎病的发病率和病情指数。而不接种Glomus etunicatum的黄瓜苗根系干重减少了28.0%。研究认为AM真菌Glomus etunicatum对黄瓜枯萎病具有一定的生防价值。  相似文献   

11.
不同丛枝菌根真菌侵染对土壤结构的影响   总被引:4,自引:1,他引:3  
彭思利  申鸿  张宇亭  郭涛 《生态学报》2012,32(3):863-870
为了定量化比较研究接种丛枝菌根真菌后,根际、菌根际和菌丝际土壤结构的变化,采用四室分根装置,比较中性紫色土接种不同AM真菌后,菌根际、根际、菌丝际和非根际土壤平均重量直径(MWD)、几何平均直径(GMD)和大于0.25mm团聚体总量(R0.25)的变化。结果表明:接种3个菌种后菌丝际EEG和有机质含量均呈高于菌根际的趋势。菌丝密度和易提取球囊霉素相关蛋白(EEG)与MWD、GMD和R0.25呈显著正相关,菌根际和菌丝际土壤水稳性R0.25与菌丝密度显著正相关,相关系数分别为0.777和0.671。接种G. mosseae的菌根际土壤R0.25值显著高于其它分室土壤,而接种G.etunicatum的菌丝际土壤R0.25值显著高于其它分室土壤。试验结果在一定程度上说明不同菌种对土壤结构均有不同程度的影响,反映了丛枝菌根真菌生态功能的多样性。  相似文献   

12.
秸秆预处理对土壤微生物量及呼吸活性的影响   总被引:23,自引:7,他引:16  
冬小麦秸秆经8.0g·L^-1H2O2(pH11.0)溶液、12.5g·L^-1 NaOH溶液或H2SO4溶液浸泡8h并80℃烘干后,与无机N一起加入土壤,进行室内25℃恒温培养试验,在不同时间测定土壤微生物量C、N和CO2释放速率。结果表明,培养前期,秸秆预处理使土壤微生物量C数量增加了1.0~1.4倍,但降低了土壤微生物的呼吸活性;培养后期,NaOH和H2SO4处理使土壤微生物量C分别下降了28%和42%,但增加了土壤微生物的呼吸活性;H2O2处理则使土壤微生物量N增加90%;土壤微生物区系中的真菌比例在不同时刻有所增加,表明将秸秆预处理后施入土壤,将对土壤中微生物数量和呼吸活性产生一定影响。  相似文献   

13.
Prunella vulgaris was inoculated with different arbuscular mycorrhizal fungi (AMF) and grown at two concentrations of CO2 (ambient, 350 μl l−1, and elevated, 600 μl l−1) to test whether a plants response to elevated CO2 is dependent on the species of AMF colonizing the roots. Using compartments accessible only to AMF hyphae but not to roots, we also tested whether elevated CO2 affects the growth of external AMF hyphae. Plant biomass was significantly greater at elevated than at ambient CO2; the biomass of the root system, for example, increased by a factor of 2. The colonization of AMF inside the root remained constant, indicating that the total AMF inside the root system also increased by a factor of 2. The length of external AMF hyphae at elevated CO2 was up to 5 times that at ambient CO2, indicating that elevated CO2 promoted allocation of AMF biomass to the external hyphae. The concentration and content of phosphorus in the stolons differed significantly between ambient and elevated CO2 but this resulted in either an increase or a decrease, according to which AMF isolate occupied the roots. We hypothesized that an increase in external hyphal growth at elevated CO2 would result in increased P acquistion by the plant. To test this we supplied phosphorus, in a compartment only accessible to AMF hyphae. Plants did not acquire more phosphorus at elevated CO2 when phosphorus was added to this compartment. Large increases in AMF hyphal growth could, however, play a significant role in the movement of fixed carbon to the soil and increase soil aggregation. Received: 28 March 1998 / Accepted: 27 August 1998  相似文献   

14.
Understanding the influence of organic or inorganic nutrient management on soil biology and biochemistry during crop growth may help to develop more sustainable fertilization strategies. Hence, the biological variables including soil organic carbon (SOC), microbial biomass carbon (MBC), six cultivable microbial communities, five hydrolytic enzymes activity and soil respiratory indices from a long-term fertility experiment field (>100 years) were assessed at different growth stages of maize. The samples were taken from four long-term treatments viz., control (no fertilization), balanced inorganic fertilizers (IC), organic amendments (OM) and integrated nutrient management (INM, organic manure plus chemical fertilizers) at five different stages of maize cropping (S1, pre-cropping; S2, five days after sowing; S3, vegetative; S4, flowering; S5, after harvesting). Responses of most of the assessed parameters to organic fertilization (OM and INM) were significantly higher than those from inorganically managed and control soils. There was significant difference in SOC due to long-term nutrient managements (OM > INM > IC > control) but not due to growth stages of maize. MBC was also higher in OM and INM compared to IC and control and found significantly different at growth stages of maize. Values of microbial counts and assessed enzyme activities were highest at vegetative stage of maize following a declined trend at later stages. The respiration studies indicate a difference between the responses of substrate induced respiration rate (SIR) and metabolic quotient (qCO2). SIR was more significantly influenced by long-term nutrient managements than crop stages, while qCO2 was by early stage of maize growth (S2) alone. The principal component analysis (PCA) identifies MBC, qCO2, SIR, dehydrogenase, phosphatase and aryl sulphatase and counts of Actinobacteria and diazotrophs as major drivers for the variability among the samples. PCA discriminated OM and INM samples from IC and control and vegetative stage of maize from other stages. The interaction effects of long-term nutrient managements and maize growth stages were found significant to MBC, counts of Actinobacteria and diazotrophs and activities of dehydrogenase, acid phosphatase and aryl sulphatase. However, the resilience of semi-arid tropical soil, independent of long-term nutrient management adoptions, was not affected due to maize growth. The present study thus provides some reliable biological indicators to monitor the semi-arid tropical soils, those influenced by nutrient managements.  相似文献   

15.
文倩  李培培  林启美  李青松 《生态学报》2014,34(24):7403-7410
团聚体是土壤基本结构单元,是土壤质量和肥力的基础,研究了解不同土地利用方式下,不同团聚体的生物学属性,有助于深入了解土壤肥力本质,以及不同土壤肥力差异的根本原因。采集半干旱地区林地、旱地、灌溉耕地和草地4种土壤利用类型的表层土壤,用干筛法获得6级团聚体,测定微生物量碳(MBC)、三磷酸腺苷(ATP)含量、基础呼吸速率(BR)和基质诱导呼吸量(SIR)等指标。结果表明:土壤微生物量ATP浓度在7.79—9.26μmol ATP/g Cmic,灌溉耕地最高、林地最低;微生物代谢熵(q CO2)和SIR分别为0.35—0.69μL CO2g-1Cmicd-1和88.7—132.2μg CO2g-1d-1,灌溉耕地最高、旱地最低。土壤团聚体的微生物量ATP浓度在6.54—9.32μmol/g Cmic之间,平均值为8.22μmol/g Cmic;q CO2和SIR分别为0.29—0.71μL/g Cmic和64—120μg CO2/g土,大团聚体含量总体上高于小团聚体,可能暗示不同团聚体土壤微生物群落活性及生理状态存在差异。土壤ATP含量、SIR和q CO2与微生物量碳呈显著相关性(r=0.929、0.865、0.885,P0.01),SIR和BR之间也有存在较高的相关性(r=0.828、P0.01),说明尽管各级团聚体微生物学属性的绝对值存在很大的差异,但相互关系并未随团聚体大小而变化。  相似文献   

16.
温带草原退化对土壤剖面微生物学特征的影响   总被引:1,自引:0,他引:1  
【目的】草地退化已成为我国草原当前面临的最主要问题。土壤微生物量和土壤酶活性是反映土壤养分和土壤环境质量的重要指标。揭示退化程度对温带草原土壤剖面微生物学特征的影响规律。【方法】以内蒙古温带草原为研究对象,选取成熟自然草地以及中、重度退化草地和极度退化草地4种典型不同退化程度的草地,按不同土壤深度分层采样并进行土壤微生物量和土壤微生物酶活性的测定。【结果】表层土壤微生物生物量及其酶活性在不同退化样地中呈现出一致的趋势:成熟自然样地中度退化样地重度退化样地极度退化样地;10-20 cm土层土壤微生物学特征与表层的差异随着退化程度的加深逐渐减少,甚至在极度退化样地中10-20 cm层土壤微生物指标高于表层。【结论】表层土壤微生物生物量及其酶活性随着退化程度的加深而减少。同时,退化程度越严重,表层与10–20 cm土层之间土壤微生物学特征的差异越小。这一结果为评价草地退化程度提供了新思路,为温带草原的恢复和重建提供了重要的理论依据。  相似文献   

17.
For secondary forests, the major forest resources in China (accounting for more than 50% of the national total), soil respiration (R S) and the relationship between R S and various biotic/abiotic factors are poorly understood. The objectives of the present study were to examine seasonal variations in soil respiration during the growing season, and to explore the factors affecting the variation in soil respiration rates for three forest types (Mongolian oak, Manchurian walnut and mixed forests) of temperate secondary forest in Northeast China. The results showed that (1) the maximum total R S rate occurred in July, following a bell-shaped curve with season, (2) for all forest types, the total R S was significantly influenced by soil temperature (< 0.01), and did not significantly correlate with soil moisture, (3) compared with fine root biomass, coarse root biomass was more closely related with the root respiration in mixed forest (R 2 = 0.711, = 0.017) and in Manchurian walnut forest (R 2 = 0.768, = 0.010), and (4) microbial biomass carbon (MBC) and nitrogen were significantly correlated with heterotrophic R S in Mongolian oak forest (R 2 = 0.664, = 0.026; R 2 = 0.784, = 0.008, respectively) and in mixed forest (R 2 = 0.918, = 0.001; R 2 = 0.967, = 0.001, respectively). We can conclude that in temperate secondary forests: (1) the R S rate and the relationships between R S and abiotic/biotic factors change greatly with forest types, and (2) R S is strongly influenced by soil temperature, MBC, microbial biomass nitrogen and coarse root biomass in temperate secondary forests.  相似文献   

18.
This study investigated the metabolic and structural effects of adding glucose to the top soils of a contaminated sandy Eutric Cambisol and an uncontaminated silty Haplic Chernozem during substrate-induced respiration (SIR) measurement. We hypothesized that glucose amendment causes microbial community shifts. To indicate changes of the microbial structure during SIR measurement, we have evaluated the microbial community structure using phospholipid fatty acid (PLFA) analysis on soil samples immediately before they were enclosed in SIR apparatus (Start), after the equilibrium of basal respiration had been reached (Con-0), 8 h later (Con-8), and on the other hand immediately after adding glucose (Glu-0), and 8 h after that (Glu-8).The accumulated PLFA content of Start, Con-0 and Con-8 was of the same order of magnitude with no significant differences among them in the contaminated sandy Eutric Cambisol. In contrast, PLFA-biomass of the Glu-0 sample was only 52% of that measured in the Start. Furthermore, the PLFA-biomass was reduced even more drastically to 20% compared to the original Start value in Glu-8. The reduction of PLFA-microbial biomass after glucose amendment was accompanied by the inverse reaction of basal respiration. The PLFA profiles were dominated by the group of saturated fatty acids in the case of Start, Con-0 and Con-8, but by unsaturated fatty acids in the Glu-0 and Glu-8. In contrast to these results, the uncontaminated silty Haplic Chernozem showed no significant differences between Start, Con-0 and Glu-0 but a 243% and a 274% higher PLFA content of Con-8 and Glu-8 compared to the Start, respectively.The findings of triggered metabolic activities indicate that the microflora of these soils is affected and that PLFA analysis reflects a shift in the soil microbial community after adding glucose. We hypothesized that this shift from slow-growing microbial oligotrophs with low substrate needs to fast-growing copiotrophs with high substrate demands might be caused by the glucose added. Structural differences of the microbial community before and after glucose amendment should be taken into consideration when interpreting the metabolic SIR results in future.  相似文献   

19.
The inoculation of mycorrhizal maize plants with three isolates of microaerophilic diazotrophic bacteria obtained from the mycelium of arbuscular mycorrhizal fungi associated with three grasses (Arrhenatherum elatius - bacterial isolate ARR, Agropyrum repens - isolate AGR and Poa annua - isolate POA) caused no increase in nitrogen content in plant biomass. The inoculation with bacterial isolate ARR resulted in the decreased plant growth. Bacterial isolate AGR decreased the percentage of the root length colonized by arbuscular mycorrhizal fungus Glomus fistulosum. The inoculation with both mycorrhizal fungus and isolate POA increased significantly the concentration of phosphorus in plant shoots compared to uninoculated control. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

20.
玉米秸秆还田对土壤丛枝菌根真菌群落的影响   总被引:4,自引:0,他引:4  
为揭示农业管理活动对土壤丛枝菌根(AM)真菌的影响机制,基于Illumina Miseq高通量测序平台以及脂肪酸指纹图谱方法,研究了连续4年玉米秸秆还田后,AM真菌群落组成、AM真菌生物量及其与土壤环境因子间的相互关系.结果表明:所获得的2430个AM真菌OTUs从门到种依次分类,共分为1门、3纲、4目、8科、10属、143种,但不同处理间AM真菌群落丰富度(Chao1指数和ACE指数)、多样性(Shannon、Simpson多样性指数)没有显著差异.AM真菌中类球囊霉属、球囊霉属为优势属.随秸秆还田量的增加,球囊霉属丰度降低;3000、9000 kg·hm^-2秸秆还田量下,类球囊霉属、无梗囊霉属的丰度与对照(0 kg·hm^-2)间差异达极显著水平;原囊霉属、类球囊霉属、球囊霉属在3000 kg·hm^-2秸秆还田量下与对照间差异显著,非度量多维尺度(NMDS)分析表明,9000、12000 kg·hm^-2的秸秆还田量下土壤AM真菌β多样性与对照间聚集度较其他处理相差较远,秸秆还田量对AM真菌β多样性的影响显著.多元分析结果能在累积变量82.8%上揭示土壤主要理化性状与AM真菌丰富度、多样性的空间变化关系.土壤全氮、碱解氮是影响以磷脂脂肪酸表征的土壤主要微生物类群生物量以及以中性脂肪酸表征的AM真菌生物量的主要因子.持续玉米秸秆还田改变了AM真菌属水平上的分类学组成;随秸秆还田量的增加,AM真菌特有的微生物种类减少,AM真菌群落组成间的相似度下降;秸秆还田增加了土壤AM真菌生物量及其占土壤微生物总生物量的比例.  相似文献   

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