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1.
Inappropriate land use that negatively affects ecological processes and soil quality is generally considered to be the primary cause of soil degradation in tropical agroecosystems. We hypothesized that in addition to land use, soil textural class also has an important effect on ecological processes and soil quality. To test our hypothesis, effects of land use change on soil organic fractions as well as microbial and biochemical indicators were quantified for clayey and sandy-clay-loam soils within the native Cerrado biome, pasture (Brachiaria brizantha) and sugarcane (Saccharum officinarum) agroecosystems in southwestern Brazil (Minas Gerais state). Labile carbon, humic substances, soil microbial respiration (SMR), microbial biomass carbon (MBC), metabolic quotient (qCO2), hydrolysis of fluorescein diacetate (FDA), beta-glucosidase, urease, phosphatase and arylsulphatase activities were measured for each sample. Labile carbon concentrations were not affected by land use but were lower in sandy-clay-loam soil than clayey soil. Humic substances were at the highest concentrations in the native Cerrado and the lowest in sugarcane agroecosystems. Sandy-clay-loam soil had lower humic acid concentrations than clayey soil. Soil microbial indicators (SMR, MBC and FDA) showed lower values in pasture and sugarcane agroecosystems than in the native Cerrado. FDA was a more sensitive microbial indicator than SMR and MBC for detecting land use and textural class differences. The qCO2 indices were greater in sugarcane systems than in either pasture or native Cerrado systems. The activity of exocellular hydrolytic enzymes, such as beta-glucosidase, urease, phosphatase and arylsulphatase, was smaller in sugarcane and pasture agroecosystems than in native Cerrado ecosystems. Within the same land use, the activity of these enzymes was always greater in clayey soil than in sandy-clay-loam soil, indicating a higher impact of land uses on enzyme activities in clayey soils. Results for the measured indicators support the hypothesis that soil textural class plays a major role in assessing differences between land use systems in the Brazilian Cerrado biome.  相似文献   

2.
Natural disturbances such as wildfires cause significant alterations to the structure and functioning of semi-arid ecosystems. After such disturbances, the recovery of the soil ecosystem as a whole, and more specifically the belowground microbial communities, is poorly understood. In this study, we aimed to (a) assess the short, medium and long term changes in soil physicochemical and microbiological indicators and indices after a wildfire in a semi-arid environment, (b) analyse the key relationships of multiple soil parameters and indices, and (c) identify the most suitable indicators of post-fire recovery. The study was conducted across a wildfire chronosequence spanning sites recently burnt (three months) through to 14 years after fire in a semi-arid hummock grassland ecosystem of northern Western Australia. Immediate effects of the fire on the soil system were evident with increases in pH, electrical conductivity, and available nutrients. These chemical indicators showed a strong correlation with fire age and were consistent in the direction of change. Variations in the microbial composition were apparent one year after the fire, with a higher proportional abundance of bacterial communities. The fungi to bacteria ratio and the microbial quotient (proportion of microbial C to total organic C) proved to be significant indices to reflect the recovery of soils in these semi-arid environments. Overall, this study highlights the importance of understanding the post-fire response of belowground ecosystems, and particularly changes and recovery of soil microbial communities, at different time periods. The approach and methods followed in this research can be effectively extrapolated to other areas. This study can be used to inform better soil management of degraded systems in a rapidly changing climate.  相似文献   

3.
米亚罗林区土地利用变化对土壤有机碳和微生物量碳的影响   总被引:25,自引:3,他引:22  
张于光  张小全  肖烨 《应用生态学报》2006,17(11):2029-2033
为了解土地利用变化对土壤有机碳和微生物量碳的影响,分析了川西米亚罗林区原始冷杉林、20世纪60年代云杉人工林、20世纪80年代云杉人工林和农地的土壤有机碳和微生物量碳状况.结果表明,土地利用变化明显地影响了土壤有机碳和微生物量碳含量.土壤有机碳和微生物量碳含量原始林最高,其次为60年代人工林和80年代人工林,农地最低.农地土壤有机碳含量分别比原始林、60年代人工林和80年代人工林低83%、53%和52%,微生物量碳含量分别低23%、25%和21%.土壤有机碳和微生物量碳含量均随土壤深度的增加而降低,并且两者在不同土地利用类型的变化趋势基本一致.相关分析表明,土壤有机碳和土壤微生物量碳与全氮、水解氮、速效磷呈极显著相关(P<0.01),说明土壤微生物量碳可作为衡量土壤有机碳变化的敏感指标,而土壤有机碳和微生物量碳含量可作为衡量土壤肥力和土壤质量变化的重要指标.  相似文献   

4.
Land use change (LUC) may detrimentally affect the soil organic carbon (SOC) within different soil fractions; directly supplemented by significant contribution to soil CO2 efflux (SCE). To understand the governing mechanism, experimental data were collected for SOC and SCE along with soil physico-chemical, microbial and aggregate characteristics across adjacent secondary forest (SF)-grassland (GL)-cropland (CL) sequence in dry tropical ecosystems. A significant change in SOC and SCE was observed from SF to GL and CL systems, respectively; though moderately from GL to CL system. Respective decrease in SOC (31 and 42%); soil ammonium-N to nitrate-N ratio (ANR; 96 and 86%), microbial biomass C (MBC; 30 and 50%), nitrogen (MBN; 6 and 33%) and MBC/MBN ratio (25 and 24%); whereas increase in SCE (43 and 57%) and soil nitrate-N availability (340 and 592%) was observed from SF to GL and CL systems. Moreover, aggregate physical distribution shifted toward smaller size fractions; whereas aggregate-associated total C and KMnO4-labile-C concentration and carbon management index (CMI) across aggregate-size fractions decreased linearly with the land use sequence. SOC was majorly governed by macro-aggregate water stability (WASmacro) and MBC; whereas SCE by CMI of macro-aggregate (CMImacro) fraction. Furthermore, the ANR showed positive correlation with microbial (i.e. MBC and MBC/MBN ratio) and macro-aggregate physical (i.e. WASmacro) and chemical stability (i.e. CMImacro). It indicates that a shift in the microbial community with the land use may affect the relative availability of inorganic N pools and associated aggregate characteristics. Thus, our results indicate that a shift in ANR with LUC may be an unexplored and crucial indicator of soil C dynamics mediating quantitative and qualitative changes in microbial and aggregate characteristics in dry tropical ecosystems. Further, a critical emphasis is needed on the relationship of SOC dynamics with ANR for future studies at various spatiotemporal scales worldwide to recognize its potential role as ecological indicator of SOC dynamics. Also, its inclusion under climatic models may help to better predict the future climate.  相似文献   

5.
为了研究喀斯特地区典型土壤有机碳积累与转化过程,采取野外取样分析与室内培养相结合的方法,以红壤为对照,采集2种喀斯特典型土壤(即棕色石灰土和黑色石灰土),设置不添加外源物质(CK)、添加14C标记的稻草(T1)、添加碳酸钙粉末(T2)和同时添加14C标记的稻草与碳酸钙粉末(T3)4个处理,进行室内培养试验,以土壤微生物指标(微生物生物量碳、基础呼吸、微生物碳熵和代谢熵)指示土壤有机碳积累与转化过程。结果表明,土壤有机碳矿化过程中,土壤呼吸的累积量依次为黑色石灰土>棕色石灰土>红壤(P<0.05)。微生物碳熵随土壤有机碳矿化变化依次为黑色石灰土>棕色石灰土>红壤(P<0.05)。同时添加外源稻草和钙对提高土壤微生物碳稳定性的效果最强。桂西北喀斯特地区土壤微生物指标的变化因土壤类型不同而存在差异。利用微生物指标来衡量土壤有机碳稳定性较为可靠。  相似文献   

6.
《Ecological Indicators》2008,8(5):704-708
Rice may have negative effects on the soil due to intensive levelling tasks required for flood irrigation. Therefore, rotations including rice influence soil physical, chemical and biological properties differently. In our study, the effects of rotations with rice on biological properties were evaluated and associated with the capacity of the soil to supply N to crops. Furthermore, the relationships among the variables were studied and those most sensitive to detect the resulting changes were determined. The study was conducted on four crop sequences over a 4-year period: rice monoculture (RR), rice–soybean (RS), rice–soybean–maize–soybean (RSMS) and rice–pasture (RP). The four rotations evaluated had a strong effect on soil properties. Principal components analysis showed that RR and the RP rotation were discriminated clearly, while RSMS and RS were in the middle of the biplot, forming two different groups. Microbial biomass N (MBN), potential of N mineralization measured by anaerobic incubations (PMN-AI) and the microbial biomass C to N ratio were the variables that differed most the studied rotations. The PMN-AI variable was positively associated with MBN, microbial biomass C, organic C, total N, urease, and fluorescein diacetate hydrolysis (FDA) variables. The potential of N mineralization measured with hot KCl neither evidenced differences among the evaluated situations nor was associated to the other variables. This is why it is assumed this is not a good soil quality indicator. The differences found in microbial analysis indicate that microbiological variables (MBC, MBN), nitrogen availability index (PNM-AI), and biochemical variables (FDA) were sensitive variables to evaluate soil rotations’ effects and they might be used as good soil quality indicators once their critical values have been determined for different conditions.  相似文献   

7.
Understanding soil carbon fractions and their responses to the global warming is important for improving soil carbon management of natural altitudinal forest ecosystem. In this study, the contents of soil total organic carbon (SOC), soil labile organic carbon (LOC), and microbial biomass carbon (MBC) in soil upper layers (0–20 cm) were measured along a natural altitudinal transect in the north slope of Changbai Mountain. The results showed that under natural conditions the contents of SOC and LOC were largest in Betula ermanii forest (altitude 1996 m), moderate in spruce-fir forest (altitude 1350 m), and smallest in Korean pine mixed broad-leaf tree forest (altitude 740 m). MBC contents in different forest ecosystems decreased in the order of Betula ermanii forest, Korean pine mixed broad-leaf tree forest, and dark coniferous forest. In addition, the responses of SOC, LOC, and MBC to soil warming were conducted by relocating intact soil cores from high- to low-elevation forests for one year. As expected, the soil core relocation caused significant increase in soil temperature but made no significant effect on soil moisture. After one year incubation, soil relocation significantly decreased SOC contents, whereas the contents of LOC, MBC, and the ratios of LOC to SOC and MBC to SOC increased.  相似文献   

8.
不同人工林生态系统林地土壤质量评价   总被引:8,自引:0,他引:8  
利用定位研究方法,综合比较了第2代连栽杉木纯林、杉木与阔叶树混交林以及阔叶纯林3种人工林生态系统对林地土壤质量的影响.结果表明,与连栽杉木纯林相比,在杉阔混交和阔叶树轮栽两种经营模式下,土壤养分含量增加,物理性状改善,土壤生物活性提高.利用土壤质量评价体系在对土壤功能评价的基础上,直观评价了3种经营模式的土壤质量状况.在研究区内,杉木与阔叶树混交以及阔叶树轮栽的水分有效性、养分有效性和根系适宜性以及最终的土壤质量指数均处于中等水平,而连栽杉木林的水分有效性、养分有效性和根系适宜性较差,土壤质量指数处于较低水平.总有机C、阳离子交换量和微生物生物量C与其它土壤理化性质和生物学性质之间明显相关,可将其作为研究区土壤质量的指示指标;土壤微生物生物量C、N、P与土壤总有机C、土壤全N、土壤全P含量之间也存在较好的相关性.  相似文献   

9.
不同人工林生态系统林地土壤质量评价   总被引:25,自引:0,他引:25  
利用定位研究方法,综合比较了第2代连栽杉木纯林、杉木与阔叶树混交林以及阔叶纯林3种人工林生态系统对林地土壤质量的影响.结果表明,与连栽杉木纯林相比,在杉阔混交和阔叶树轮栽两种经营模式下,土壤养分含量增加,物理性状改善,土壤生物活性提高.利用土壤质量评价体系在对土壤功能评价的基础上,直观评价了3种经营模式的土壤质量状况.在研究区内,杉木与阔叶树混交以及阔叶树轮栽的水分有效性、养分有效性和根系适宜性以及最终的土壤质量指数均处于中等水平,而连栽杉木林的水分有效性、养分有效性和根系适宜性较差,土壤质量指数处于较低水平.总有机C、阳离子交换量和微生物生物量C与其它土壤理化性质和生物学性质之间明显相关,可将其作为研究区土壤质量的指示指标;土壤微生物生物量C、N、P与土壤总有机C、土壤全N、土壤全P含量之间也存在较好的相关性。  相似文献   

10.
降雨格局改变和区域氮沉降增加是近年来全球变化研究中的热点问题,而草地生态系统分布十分广泛,且大多位于生态脆弱带,易受到全球变化的干扰而失衡。土壤微生物及土壤酶活性是自然生态系统中土壤质量变化的敏感性指标,微生物与酶活性的变化可用来监测水、氮变化大背景下草地生态系统结构和功能的改变。基于此,综述了降雨格局改变和氮沉降增加及其双因子交互作用对草地土壤系统中微生物数量、微生物生物量、微生物多样性与酶活性变化影响的相关研究进展,为更好地预测评估并最终调控和保持草地生态系统稳定性提供科学依据,同时分析阐述了当前工作中存在的一些问题与不足,并对未来研究所面临的关键科学问题进行了探讨和展望。  相似文献   

11.
施肥对雷竹林土壤活性有机碳的影响   总被引:13,自引:0,他引:13  
采用重施肥料试验研究了不同重施肥习惯对雷竹林土壤碳库产生的影响,结果表明,各有机肥、化肥混合处理土壤总有机碳(TOC)、水溶性碳(WSOC)、微生物量碳(MBC)、矿化态碳(MC)及WSOC/TOC、MBC/TOC和MC/TOC均显著或极显著高于单施化肥各处理.3个有机肥、化肥混施处理中,随着有机肥用量减少,TOC、WSOC、MBC和MBC/TOC显著下降,有机肥用量减少一半,上述各类碳分别下降10.75%、12.02%、30.94%和22.61%.单施化肥处理中,氮素用量超过1009.5 kg·hm-2·年-1会使土壤WSOC、MBC、MBC/TOC明显降低.雷竹土壤TOC、WSOC、MBC和MC两两之间相关性均达显著或极显著水平,进一步通过6个处理变异系数分析发现,土壤MBC、MBC/TOC是衡量雷竹土壤碳库质量的最佳指标.  相似文献   

12.
土壤活性有机质及其与土壤质量的关系   总被引:88,自引:2,他引:86  
活性有机质是土壤的重要组成部分 ,主要包括溶解性有机碳、微生物生物量、轻组有机质。它在土壤中具有重要作用 :(1)可以表征土壤物质循环特征、评价土壤质量 ,可以作为土壤潜在生产力以及由土壤管理措施引起土壤有机质变化的早期指标 ;(2 )在养分周转中起重要作用 ,是植物的养分库 ,可以提供植物所需要的养分如氮、磷、硫等 ;(3)能稳定土壤结构 ,对维持团粒结构稳定性有重要作用。从土壤养分、土壤物理、化学性质方面讨论了活性有机质与土壤质量的关系。土壤中的溶解性有机碳、微生物生物量碳氮含量与土壤有机碳、全氮和碱解氮等物质的含量呈正相关。活性有机质受土壤质地、含水量、温度等因素影响 ,与土壤酸碱度、阳离子交换量等也有关。土壤微生物生物量碳和微生物量 C/有机碳比与土壤粘粒、粉粒含量呈正相关、与砂粒含量呈负相关  相似文献   

13.
植物分泌有机酸在提高土壤养分有效性方面起到重要作用。为了解喀斯特地区不同植被恢复阶段土壤有机酸含量季节性变化与氮磷有效性的关系,在灌木林和原生林各选择3种优势植物,测定雨季和旱季两个季节根际土和非根际土的有机酸含量、碳氮磷含量和比值、有效性氮磷含量及微生物生物量碳。结果表明:原生林植物根际土的草酸含量高于灌木林,而苹果酸和乙酸含量则低于灌木林;根际土草酸含量均高于非根际土;2个植被根际土和非根际土的草酸含量在雨季高于旱季,而苹果酸和乙酸含量则低于旱季;土壤草酸含量与有机碳、全氮、全磷和N∶P值呈显著正相关,与C∶N呈显著负相关;土壤有效氮和有效磷与草酸和微生物生物量碳呈显著正相关。上述结果表明,植物分泌有机酸的季节性变化与土壤养分状态和自身养分需求相关,而有机酸耦合微生物对养分有效性的提高具有积极的作用。因此,根际土的有机酸季节变化可能是喀斯特生态系统中植物适应土壤养分限制的一种重要机制。  相似文献   

14.
土壤原生动物在环境监测中的应用   总被引:5,自引:2,他引:3  
土壤原生动物具有丰富的种类多样性和巨大的生物量,在土壤生态系统中具有十分重要的地位。因此,其种类和数量的变化可指示环境质量的状况及发展趋势。与其它土壤生物相比,原生动物的一些特征使其更利于成为监测生物。土壤原生动物各类群在环境监测中的作用是不同的。有壳肉足虫和纤毛虫更适合作为土壤环境的指示生物。土壤原生动物在农田生态系统、森林生态系统等环境监测中已经有了一些应用,但与在水体环境监测中获得广泛应用的水生原生动物相比,土壤原生动物用于环境监测才刚刚起步。土壤原生动物分类学研究的滞后和方法学上的欠缺是阻碍其作为监测生物的瓶颈。相信随着这些问题的逐步解决,土壤原生动物在环境监测中必将发挥越来越大的作用。  相似文献   

15.
The stability over time of the organic C stocked in soils under undisturbed ecosystems is poorly studied, despite being suitable for detecting changes related to climate fluctuations and global warming. Volcanic soils often show high organic C contents due to the stabilization of organic matter by short‐range ordered minerals or Al‐humus complexes. We investigated the dynamics of different organic C fractions in volcanic soils of protected natural ecosystems of the Canary Islands (Spain) to evaluate the stability of their C pools. The study was carried out in 10 plots, including both undisturbed and formerly disturbed ecosystems, over two annual periods. C inputs to (litterfall) and outputs from (respiration) the soil, root C stocks (0–30 cm), soil organic C (SOC) fractions belonging to C pools with different degrees of biogeochemical stability –total oxidisable C (TOC), microbial biomass C (MBC), water soluble C (WSC), hot‐water extractable C (HWC), humic C (HSC), – and total soil N (TN) (at 0–15 and 15–30 cm) were measured seasonally.A statistically significant interannual increase in CO2 emissions and a decrease in the SOC, mainly at the expense of the most labile organic forms, were observed, while the root C stocks and litterfall inputs remained relatively constant over the study period. The observed changes may reflect an initial increase in SOC resulting from low soil respiration rates due to drought during the first year of study. The soils of nearly mature ecosystems were more apparently affected by C losses, while those undergoing the process of active natural regeneration exhibited disguised C loss because of the C sequestration trend that is characteristic of progressive ecological succession.  相似文献   

16.
Liu N  Zhang Y  Chang S  Kan H  Lin L 《PloS one》2012,7(5):e36434
The potential of grazing lands to sequester carbon must be understood to develop effective soil conservation measures and sustain livestock production. Our objective was to evaluate the effects of grazing on soil organic carbon (SOC), total nitrogen (TN), microbial biomass carbon (MBC) in Typical steppe and Desert steppe ecosystems, which are both important grassland resources for animal grazing and ecological conservation in China, and to derive region-specific soil C changes associated with different stocking rates (ungrazed, UG; lightly grazed, LG; moderately grazed, MG; heavily grazed, HG). This study substantiated that significant higher SOC, TN and MBC appeared with the treatment of LG in typical steppe. From 2004 to 2010, grazing treatments increased soil carbon storage in desert steppe, which was partly due to the grazing history. The higher MBC concentration and MBC/SOC suggest a great potential for carbon sequestration in the desert steppe ecosystem. The greater MBC in desert steppe than typical steppe was mainly the result of higher precipitation and temperature, instead of soil substrate. The change of MBC and the strong positive relationships between MBC and SOC indicated that MBC in the soil was a sensitive index to indicate the dynamics of soil organic carbon in both steppes in Inner Mongolia of China.  相似文献   

17.
The objective of the study was to examine the long-term changes in biochemical/microbial indicators of soil quality due to clear felling of mangroves for establishment of plantations. The biochemical/microbial parameters included dissolved organic-C (DOC) and -N (DON), soil microbial biomass-C (SMBC), -N (SMBN) and -P (SMBP), soil respiration (SR), metabolic quotient (qCO2), adenylates (ATP, AMP and ADP), adenylate energy charge (AEC), ergosterol and their ratios. Results revealed that the undisturbed mangroves possessed considerably greater amounts of soil organic C, DOC and DON. Consequently, SMBC, SMBN and SMBP showed marked reductions in the plantations suggesting an average loss of 66%, 49% and 75%, respectively due to changed land use. Likewise, SR decreased by 46.4% in the plantations. Enhanced qCO2 levels in the plantations indicated a microbial community under stress with a high maintenance carbon demand, while lower qCO2 levels in the mangroves indicated an efficient microbial community and a better use of available organic substrates. The levels of ATP, AMP and ADP followed a trend identical to that of SMB and SR. Greater ergosterol concentration led to greater ergosterol/SMBC ratio suggesting a shift in the microbial community structure from a primarily fungi dominated SMB in the mangroves to a fungi recessive SMB in the plantations.  相似文献   

18.
Conversion of native rangelands to croplands potentially influences soil functions and quality. The aim of the current study was to assess soil quality (SQ) after rangeland conversion and degradation for more than 40 years using an indexing framework and integrated approach. Fifteen soil attributes were measured at two sampling depths (0–20 and 20–40 cm) of paired native undisturbed and adjacent cultivated rangelands at three rangeland sites. The soil organic carbon (OC), electrical conductivity (EC) and arylsulphatase (ARY) activity were found to be the key indicators of the minimum data set and these indicators greatly affected the computed soil quality index (SQI), particularly in the soil surface. The contribution of OC, EC and ARY to the overall SQI was 77, 13 and 10%, respectively. Although rangeland conversion reduced other soil attributes (including aggregate stability, available water capacity, cation exchange capacity, microbial biomass, microbial activity and the activities of urease and invertase enzymes), in particular at the 0–20 cm depth, these variables did not contribute to the estimated SQI values because of their high correlation with OC contents (i.e., strong interdependency). Cultivated rangelands were characterized by a low soil OC content, EC and ARY activity, and consequently a low SQI. A significant decline in SQI value (29–47%) was observed as a result of rangeland conversion to croplands, depending on soil depth considered and scoring function used to compute the SQI. Overall, converting native rangelands to croplands decreased SQ to 52–64% of their potential capacity using a non-linear scoring method. In summary, soil OC, EC and ARY are the most important indicators, which can be used to monitor and asses the degradation of rangeland SQ after conversion to croplands in these arid and semiarid upland environments. This finding is of especial importance because the assessment of SQ allows the successful and straightforward discrimination between rangeland and cropland ecosystems or to quantify land use conversion effects on SQ. It is concluded that the rate of soil changes can be assessed and compared more accurately in the studies of land use conversions in native rangeland ecosystems using the current indexing framework due to its simplicity and quantitative flexibility.  相似文献   

19.
采用样地调查与室内分析相结合的方法,研究了峡谷型喀斯特水田、旱地、草地、灌丛、人工林、次生林6种生态系统不同深度土壤微生物数量、微生物生物量特征及其分形关系。结果表明:峡谷型喀斯特不同生态系统的土壤微生物数量及组成不同,微生物数量均以次生林最高,旱地最低,其组成数量均为细菌放线菌真菌,细菌是土壤微生物的主要类群,数量多达26.66×105—71.64×105cfu/g,占全部微生物比例为87.00%—95.50%,其次为放线菌数量,为1.45×105—3.78×105cfu/g,所占比例为4.21%—12.39%,真菌数量最小,为0.07×105—0.23×105cfu/g,所占比例仅为0.24%—0.61%,不足1%。不同生态系统土壤微生物生物量碳(MBC)、氮(MBN)、磷(MBP)的含量不同,次生林MBC与MBN最高,人工林MBP最高,旱地MBC最低,草地MBN与MBP最低;各生态系统均为MBCMBNMBP。不同生态系统的MBC/SOC、MBN/TN、MBP/TP分别为0.44%—0.97%、2.13%—3.13%、1.46%—2.13%,差异不显著;MBC/MBN在3.06—6.54之间,其中次生林极显著高于其他生态系统,其他生态系统差异不显著。不同生态系统土壤微生物数量及生物量均随土层加深而减少,且具有良好分形关系,均达到了极显著水平(P0.01)。探讨土壤微生物活性为提高石灰土土壤肥力、促进喀斯特植被迅速恢复提供依据。  相似文献   

20.
三江平原不同湿地类型土壤活性有机碳组分及含量差异   总被引:14,自引:0,他引:14  
肖烨  黄志刚  武海涛  吕宪国 《生态学报》2015,35(23):7625-7633
土壤活性有机碳对土壤干扰的反应较快,是土壤有机碳早期变化的敏感性指标。近50年来,三江平原湿地土壤有机碳库受农事活动影响较大。为了探讨不同湿地类型土壤活性有机碳主要组分土壤可溶性有机碳(Dissolved organic carbon,DOC)、微生物量碳(Microbial biomass carbon,MBC)和易氧化有机碳(Easily oxidized organic carbon,EOC)的分布差异及主要影响因子,选择了三江平原洪河自然保护区4种典型的湿地类型(小叶章+沼柳湿地、小叶章湿地、毛苔草湿地和芦苇湿地)为研究对象。分析了不同湿地类型土壤可溶性有机碳,微生物量碳和易氧化有机碳在0—30 cm土层内的分布特征和分配比例及其与有机碳、土壤养分和酶活性指标(蔗糖酶、纤维素酶和过氧化氢酶)之间的相关关系。结果表明:(1)4种湿地类型土壤DOC、MBC和EOC含量均随土层深度的增加而减少。不同湿地类型之间土壤活性有机碳含量在0—30 cm土层内存在显著性差异(P0.05),相对于长期淹水的毛苔草湿地和芦苇湿地而言,未淹水的小叶章+沼柳湿地和小叶章湿地具有较高的DOC,MBC和EOC含量。(2)土壤DOC、MBC和EOC占有机碳比例分别为0.27%—0.63%,1.27%—5.94%和19.63%—41.25%。土壤DOC所占比例呈先增后减的变化趋势,最大的比例均出现在10—20 cm。MBC所占比例在土壤剖面上则未表现出一致的变化规律,而EOC所占比例则随土层深度的增加而逐渐减少。(3)土壤DOC占SOC比例以小叶章湿地最高,MBC和EOC占SOC的比例则以小叶章+沼柳湿地最高。而长期淹水的毛苔草湿地和芦苇湿地则具有更低的DOC,MBC和EOC比例。(4)综合分析表明,4种湿地类型土壤DOC,MBC和EOC两两之间存在极显著相关性关系,它们除了与碳氮比相关性不显著外,与土壤有机碳,全氮,全磷养分和酶活性指标间相关性均达到极显著水平,尤其是与有机碳和全氮的相关性系数更高,此外DOC与纤维素酶,MBC与过氧化氢酶相关性更大。由此可见,土壤碳氮磷养分和酶活性是影响土壤活性有机碳组分分布的重要因素。  相似文献   

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