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1.
典型黑土区坡耕地土壤微生物群落数量的空间分布研究   总被引:1,自引:0,他引:1  
选取土壤侵蚀较严重的黑龙江省宾县宾州河流域为研究区,通过采集流域上、中和下游6个典型坡面的坡上、坡中和坡下部土壤样品,分析了坡耕地土壤微生物群落数量在流域和坡面尺度上的分布规律,并比较了土壤微生物群落数量空间分布与土壤侵蚀空间分布的关系。结果表明,在流域尺度上,土壤微生物总数量和细菌数量均表现为:下游>中游>上游土壤真菌数量表现为:上游>下游>中游土壤放线菌数量表现为中游最大,而上游和下游数量相当。在坡面尺度上,土壤微生物总数量和细菌数量均呈现:坡中部<坡上部<坡下部,土壤真菌数量呈现:坡下部<坡中部<坡上部,土壤放线菌数量呈现:坡中部<坡下部<坡上部。研究表明,流域土壤微生物总数量和土壤细菌数量的空间分布皆与侵蚀-沉积速率的空间分布相对应,反映出侵蚀-沉积速率是影响该流域土壤微生物群落数量的主要因素。  相似文献   

2.
研究农业流域土壤侵蚀—沉积对土壤养分和酶活性的影响可为土壤侵蚀退化评价提供重要科学依据。选择典型薄层黑土区的宾州河流域为研究区,在流域上游、中游和下游各选取2个代表性坡面,基于137Cs示踪技术估算土壤侵蚀—沉积速率,分析流域和坡面尺度土壤侵蚀—沉积对土壤养分(有机质、全氮和速效磷)和土壤酶活性(转化酶、脲酶和碱性磷酸酶)的影响。结果表明:(1)土壤侵蚀速率在流域上游最大,分别是流域中游和下游的1.9,11.2倍;坡面尺度上土壤侵蚀速率在坡中部最大,分别是坡上部和坡下部的1.3~2.6,2.8~12.2倍。(2)在流域尺度上,土壤有机质空间分布与土壤侵蚀速率空间分布呈相反的变化趋势,土壤全氮和速效磷含量在流域下游皆大于流域中游;坡面尺度上土壤有机质、速效磷含量、转化酶、脲酶和碱性磷酸酶活性均表现为坡下部>坡中部,说明农地土壤侵蚀降低土壤养分含量和酶活性。(3)流域沉积区土壤沉积速率对土壤有机质、速效磷含量、脲酶和碱性磷酸酶活性有显著影响。(4)土壤有机质和速效磷含量对土壤脲酶和碱性磷酸酶活性有显著影响,表明土壤侵蚀—沉积引起的土壤养分再分布是造成土壤酶活性空间分异的重要原因。  相似文献   

3.
典型黑土区坡耕地土壤碱性磷酸酶和有机质空间分布研究   总被引:3,自引:0,他引:3  
以东北黑土侵蚀严重区宾州河流域为研究区,通过采集流域上游、中游和下游6个典型坡面及各坡面不同坡位的土壤样品,分析坡耕地土壤碱性磷酸酶和土壤有机质在流域和坡面尺度的空间分布特征及其与土壤侵蚀的关系。结果表明,在流域尺度上,坡耕地土壤碱性磷酸酶活性和土壤有机质含量均表现为下游 > 中游 > 上游,坡面尺度上总体表现为坡面上部 < 坡面中部 < 坡面下部的趋势,且坡位对土壤有机质分布的影响较其对土壤碱性磷酸酶活性的影响更为明显。土壤碱性磷酸酶活性与土壤有机质间存在极显著的正相关关系。流域土壤碱性磷酸酶活性和有机质空间分布与土壤侵蚀空间分布相对应,反映出土壤侵蚀是影响该区耕层土壤碱性磷酸酶活性和土壤有机质含量的主要因素。  相似文献   

4.
基于对松花江流域东山沟小流域坡耕地表层0-20 cm土壤酶活性和养分含量分析,研究了东北黑土区典型坡耕地土壤酶活性空间分布特征及其影响因素.结果表明,小流域下游的土壤转化酶、脲酶、碱性磷酸酶活性均高于流域上游和中游;坡面侵蚀区3种土壤酶活性均低于坡面沉积区;土壤酶活性沿坡长分布呈现坡顶较高—坡中低—坡下高的变化趋势,与坡面土壤侵蚀强度相对应.3种土壤酶活性之间呈极显著相关关系.土壤酶活性空间分布特点与土壤侵蚀强度空间分布趋势呈现相一致的规律,表明土壤侵蚀降低了土壤酶活性.  相似文献   

5.
地形对黑土区典型坡面侵蚀—沉积空间分布特征的影响   总被引:14,自引:1,他引:13  
研究地形对黑土区坡面侵蚀-沉积空间分布特征的影响可以为水土保持措施配置提供科学依据。以典型黑土区——黑龙江省宾县东山沟小流域为研究区域,在流域上游、中游和下游各选取2个典型坡面,坡面种植作物均为玉米。典型坡面坡顶、坡上、坡中、坡下和坡脚的平均坡度分别为3.1°,3.0°,4.0°,2.8°,1.2°。利用137Cs示踪技术,分析了坡度、坡长和坡形对坡面侵蚀—沉积空间分布特征的影响。结果表明:研究流域农耕地坡面以侵蚀为主,平均侵蚀速率为448 t km~(~(-2)) a~(~(-1)) ;坡面不同部位土壤侵蚀—沉积分布特征差异明显,坡顶、坡上、坡中和坡下主要表现为侵蚀,平均侵蚀速率分别为819、376、1 000和634 t km~(~(-2)) a~(~(-1)) ,而坡脚表现为明显的沉积,平均沉积速率为~(~(-1)) 382 t km~(~(-2)) a~(~(-1)) 。不同坡形坡面侵蚀-沉积分布存在差异,凸形坡坡面表现为先侵蚀后沉积的分布特征,而复合坡坡面呈现出侵蚀-沉积交错分布特征;坡面土壤侵蚀速率与坡度和坡长均呈极显著的幂函数关系,而坡度对黑土区坡面侵蚀的影响明显大于坡长,反映了即使在长坡缓地形的黑土区坡度对侵蚀的影响仍然有重要作用。因此,在黑土区配置合理的水土保持措施时,应尽量削弱坡度对坡耕地土壤侵蚀的影响。  相似文献   

6.
本文通过区域调查采样和统计分析,探讨了川西平原土壤微生物生物量碳(MBC)、土壤微生物生物量氮(MBN)和土壤微生物生物量磷(MBP)含量特征及其对气候、海拔、母质和土地利用等因素的响应,揭示了其关键影响因素,以期为川西平原地区土壤质量管理提供参考。结果表明,不同土壤类型的MBC、MBN和MBP含量表现为冲积土显著高于水稻土、潮土和黄壤(P<0.05),潮土MBC/MBN显著高于水稻土。气候和海拔的影响为:MBC、MBN和MBP含量随着≥ 0℃积温、≥ 10℃积温、年均温和年均降水量的增加呈指数减少,而随干燥度和海拔增加呈线性增加。不同成土母质中,MBC、MBN和MBP含量均为灰色冲积物显著高于老冲积物。不同土地利用方式下,三者含量为草地显著高于水田和旱地,水田、旱地和林地差异不显著。皮尔森相关分析和冗余分析表明,MBC和MBN均与≥ 0℃积温、年均温呈极显著负相关(P<0.01),与海拔呈极显著正相关关系,MBP与母质呈现极显著负相关关系。逐步回归分析表明,MBC主要受年均温、干燥度、年均降水量和母质的影响;MBN主要受海拔、干燥度和年均降水量的综合影响;MBP主要受母质、年均温、≥ 10℃积温和年均降水量的调控。因此,川西平原土壤MBC、MBN、MBP能灵敏地反映不同采样点气候的变化,可为该区气候变化下土壤碳、氮、磷的响应预测提供参考。  相似文献   

7.
长期施氮肥对黄棕壤微生物生物性状的影响及其调控因素   总被引:2,自引:0,他引:2  
基于黄棕壤小麦-甘薯轮作的长期定位试验,探究不同施氮处理土壤微生物生物量碳(MBC)、氮(MBN)含量和酶活性的变化及其潜在调控因子,为科学施氮提高土壤质量和改善土壤生态功能提供依据。试验选取始于2011年4个施氮处理:不施肥(CK)、不施氮肥(PK)、施化学氮肥(NPK)和化学氮肥配施有机肥(NPKM),调查两季作物收获后土壤MBC和MBN含量、酶活性及微生物碳氮利用效率的变化,并通过冗余分析(RDA)和结构方程模型(SEM)明确调控弱酸性黄棕壤中MBC和MBN变化的潜在因素。小麦和甘薯两季的结果表明:施氮肥降低了土壤MBC、MBN含量和蔗糖酶(SSC)、脲酶(SUE)活性,与NPK处理相比, NPKM处理增加了MBC、MBN含量和SSC、SUE活性。长期施用氮肥提高了土壤有机碳(SOC)和土壤养分[全氮(TN)和矿质态氮(MN)]含量,但施氮肥显著降低土壤p H以及微生物的碳氮利用效率。与小麦季相比,甘薯季土壤SOC和MN含量有所下降,而MBN含量和SSC活性有所升高。RDA和SEM结果表明,氮肥的施用强化了MBC与MBN、SSC与MBC以及SUE与MBC之间的关联性;不同施氮处理下土壤p H、有机碳、氮含量以及微生物的碳氮利用效率的变化直接或间接地影响土壤MBC、MBN含量和SSC、SUE活性,其中p H是调控土壤MBC变化的直接因素,而土壤SSC和SUE活性与MBC、MBN含量相互影响。长期施用氮肥降低了黄棕壤MBC、MBN含量和酶活性,化学氮肥配施有机肥有利于缓解生物性状的下降,土壤p H是影响MBC变化的主要因素,小麦-甘薯轮作中土壤微生物强烈的碳代谢过程利于增加MBN。  相似文献   

8.
为探究侵蚀退化红壤马尾松林恢复过程中林下芒萁对土壤微生物生物量碳氮月动态及其周转的影响,以不同恢复年限的马尾松林为研究对象,对比分析马尾松林恢复过程中林下保留芒萁、去除芒萁处理和林下裸地土壤中12个月的土壤微生物生物量碳(MBC)和微生物量氮(MBN)含量及其周转速率、周转时间和流通量,并分析其与土壤理化性状的关系。结果表明:(1)保留芒萁覆盖处理的MBC和MBN平均含量分布比林下裸地提高26.99%~277.31%和13.54%~173.39%,而去除芒萁处理分布比保留芒萁处理降低12.29%~27.01%和5.02%~28.45%,差异均随恢复年限呈先降低后增加的趋势。(2)所有处理的土壤微生物量碳氮季节动态均表现为春夏季较高,秋冬季较低的趋势,进入生长季前的土壤微生物量碳氮含量更能反映该地区的平均水平。(3)在退化马尾松林恢复过程中,芒萁覆盖降低土壤微生物生物量碳氮周转速率,增加周转时间,提高土壤微生物生物量碳氮含量和流通量,促进土壤有机质的积累和养分释放。相关分析和逐步回归分析表明,MBC、MBN流通量分别与DOC、DON呈显著正相关,周转速率分别与铵态氮(NH4+-N)和TN呈显著负相关,表明土壤碳和氮及其有效性是影响土壤微生物量周转的关键因素。  相似文献   

9.
广东省东江流域土壤侵蚀空间分布特征研究   总被引:5,自引:0,他引:5  
广东省境内的东江流域,土壤侵蚀呈不连续的块状分布,主要集中分布在风化壳高度发育的花岗岩低山丘陵区,同时土壤侵蚀分布受人类活动的影响较大。通过实地调查采样分析发现,土壤侵蚀多分布于阳坡,其中面蚀、沟蚀多集中分布于坡面中上部,侵蚀对坡面不同部位的土壤理化性状产生直接的影响。  相似文献   

10.
黄土丘陵沟壑区坡面尺度上微生物的空间分布规律   总被引:1,自引:0,他引:1  
通过对黄土丘陵沟壑区典型侵蚀环境下人工种植刺槐林的坡面上坡顶、坡肩、坡背、坡脚和坡趾5个不同地形部位上的微生物生物量碳、氮及微生物的代谢活性和功能多样性进行测定和分析,探讨侵蚀环境下坡面尺度上微生物的空间分布规律.研究结果发现,在侵蚀比较容易发生的坡肩位置,微生物的含量总体比较低.微生物生物量碳在坡顶、坡背和坡脚位置含量比较高,微生物生物量氮在坡顶和坡背位置含量比较高.微生物的代谢活性与微生物量没有表现出完全的一致性,0-10 cm土层表现为坡肩和坡背的微生物代谢活性最高,和这两个位置的微生物功能多样性较高比较一致,10-20 cm土样微生物功能多样性较为一致,微生物的代谢活性与微生物生物量的大小关系相对较为密切,表现为坡脚和坡背位置的代谢活性比较高.对于6种不同类型的碳源的利用,0-10 cm土壤的微生物对糖类物质的利用率最高,而10-20 cm土壤的微生物对氨基酸类物质的利用率最高.  相似文献   

11.
The aims of this study were to examine interrelationships between microbial biomass and enzyme activities of soil quality and to determine their suitability for differentiating areas. The study included five simulated erosion soil depths (0, 5, 10, 20, and 30 cm), which had received contrasting fertilizer treatments over a 5-year period in an eroded black soil of northeastern China. Our results indicated that soil microbial carbon, nitrogen, urease, phosphatase, and invertase activities declined as the erosion depth increased. On the five erosion depths, soil microbial carbon, phosphatase, and invertase variation ranged as follows: 35.4–53.3, 39.8–45.2, and 55.9–67.1%, respectively. In the fertilizer + manure treatment, soil microbial carbon, nitrogen, urease, phosphatase, and invertase activities were significantly greater (P < 0.05) than those of fertilizer treatment in all five different erosion depths. Overall, this study may be considered as the foundation for soil quality evaluation and fertility restoration in northeastern China and similar regions.  相似文献   

12.
通过温室盆栽试验,研究了连续3年在不同土壤中施用不同量的生物有机肥的土壤养分、微生物生物量、酶活性及棉花各器官干物质量的变化。结果表明:连续3年施用生物有机肥,3种土壤的养分、酶活性、微生物量和各器官干物质量均有不同程度的提高。随着其用量的增加,土壤养分、微生物量及脲酶活性也在增加,土壤pH则相反,土壤蔗糖酶、多酚氧化酶、蛋白酶活性表现先上升后下降的趋势,且在不同土壤施用生物有机肥10~30 g/kg时基本达到最高,过氧化氢酶活性无显著变化。高、中、低有机质含量的土壤的棉花各器官干物质量分别在施用生物有机肥10~20、20~30、40 g/kg时基本达到最高。随着施肥年限的延长,3种土壤微生物生物量碳、氮均表现为先降低后升高的趋势,土壤酶活性则变化差异较大。通过在不同有机质含量土壤中施肥与不施肥比较发现,本底有机质含量越低的土壤,施肥较不施肥的土壤养分、脲酶、蔗糖酶、蛋白酶活性及微生物量增加幅度越大。  相似文献   

13.
Determining how soil erosion affects enzyme activity may enhance our understanding of soil degradation on eroded agricultural landscapes. This study assessed the changes in enzyme activity with slope position and erosion type by selecting water and tillage erosion-dominated slopes and performing analyses using the 137Cs technique. The 137Cs data revealed that soil loss occurred in the upper section of the two eroded slope types, while soil accumulation occurred in the lower section. The invertase activity increased downslope and exhibited a pattern similar to the 137Cs data. The spatial patterns of urease and alkaline phosphatase activities were similar to the 137Cs inventories on the water and tillage erosion-dominated slopes, respectively. On both the eroded slope types, the invertase activity and soil organic carbon content were correlated, but no correlation was observed between the alkaline phosphatase activity and total phosphorus content. Nevertheless, the urease activity was correlated with the total nitrogen content only on the water erosion-dominated slopes. The enzyme activity-to-microbial biomass carbon ratios indicated high activities of invertase and urease but low activity of phosphatase on the water erosion-dominated slopes compared with the tillage erosion-dominated slopes. Both the invertase activity and the invertase activity-to-microbial biomass carbon ratio varied with the slope position. Changes in the urease activity-to-microbial biomass carbon ratio were significantly affected by the erosion type. These suggested that the dynamics of the invertase activity were linked to soil redistribution on the two eroded slope types, whereas the dynamics of the urease and alkaline phosphatase activities were associated with soil redistribution only on the water or tillage erosion-dominated slopes, respectively. The erosion type had an obvious effect on the activities of invertase, urease and alkaline phosphatase. Soil redistribution might influence the involvement of urease in the N cycle and alkaline phosphatase in the P cycle. Thus, enzyme activity-to-microbial biomass ratios may be used to better evaluate microbiological activity in eroded soils.  相似文献   

14.
The impact of soil erosion on the nutrient dynamics in alpine grassland soils is still an essential problem. Selecting a grass-covered hillslope in eastern Tibet Plateau, the cesium-137 (137Cs) technique was used to determine the impacts of soil erosion on soil organic carbon (SOC), total nitrogen (TN), total phosphorus (TP), and total potassium (TK). The 137Cs data revealed that there were distinct soil redistribution patterns in different hillslope positions because of the influences of slope runoff, plant coverage and grazing activity. For the upper slope, soil erosion first decreased downward, followed by soil deposition in its lower part. In contrast, for middle and toe slopes, there was an increasing soil erosion along a downslope transect. Across the lower slope, soil erosion showed an irregular variation. Influenced by the selective transport of water erosion, SOC, TN and TP storage decreased with increasing soil erosion in upper, middle and toe slopes. In contrast, SOC, TN and TP storage varied little with soil erosion in the lower slope. On the whole hillslope, TK storage also varied little with soil erosion due to the large amount of potassium elements derived from soil parent materials. Particularly noteworthy was the greatest storage of SOC, TN and TP in the lower slope where most obvious net soil erosion occurred, which is closely related to the humus accumulation combined with gravel separation as well as weathering and pedogenesis of parent rocks induced by soil freeze-thaw.  相似文献   

15.
Soil erosion is the main process leading to soil degradation on the Loess Plateau of China. The effects of soil‐erosion intensity (sheet, rill, and gully erosion) and different land use (140 y–old secondary forest site, 16 y–old bare site, 6 y–old succession site, and 43 y–old arable site) on gross and net N mineralization, soil organic‐carbon (SOC) turnover, the size and structure of the soil microbial community (phospholipid fatty acid analysis) were assessed. Erosion intensity in the bare plot increased from top slope (sheet erosion) to down slope (gully erosion). The more severe the soil erosion the stronger was the decline of SOC, total N, and microbial biomass (MB). The MBC/SOC ratio decreased whereas the metabolic quotient (qCO2) increased. Differences in nutrient turnover in the different erosion zones of the bare plot were not significant. The microbial community changed towards less Gram negative bacteria and relative more fungi in the gully‐erosion zone. In forest soils, qCO2 and the MBC/SOC ratio demonstrate a higher substrate‐use efficiency of the microbial biomass than in bare soils. Gross N mineralization and gross NH consumption clearly indicated a higher microbial activity in forest than in bare soils. Arable land use shifted the soil microbial community towards a higher relative abundance of fungi and a lower one of actinomycetes. During 6 y of natural succession on former bare plots, soil nutrient content and turnover as well as microbial biomass and structure developed towards forest conditions.  相似文献   

16.
添加木醋液对沙地土壤微生物生物量和酶活性的影响   总被引:1,自引:1,他引:0  
杜薇  朱一波  张晓  耿玉清  林平 《水土保持通报》2016,36(3):358-362,368
[目的]探讨沙地添加木醋液后土壤微生物生物量和酶活性的变化,为沙地土壤生物学质量的改良提供理论依据。[方法]采用盆栽植草培养法,以添加自来水为对照,对沙地添加不同稀释倍数(200,150,100,50,20)木醋液后的土壤可溶性有机碳、氮和酚,土壤微生物生物量碳氮以及土壤酶活性进行研究。[结果]向沙土添加木醋液可以显著降低土壤pH值,显著提高土壤易氧化碳、土壤水溶性碳氮、土壤可溶性酚以及无机氮的含量。在添加木醋液稀释高于50倍范围内,随木醋液稀释倍数降低,土壤微生物生物量碳氮增加以及β-糖苷酶、碱性磷酸酶和脱氢酶活性提高。添加稀释20倍的木醋液,导致土壤微生物生物量碳氮以及β-糖苷酶、碱性磷酸酶和脱氢酶活性有所降低。在高于20的稀释倍数范围内,随着施用木醋液稀释倍数的降低,α-糖苷酶、亮氨酸氨基肽酶、酸性磷酸酶和酚氧化酶的活性有显著增加的趋势。[结论]添加不同稀释倍数的木醋液会影响沙地土壤微生物生物量和酶活性。  相似文献   

17.
[目的]探究不同果草套种模式下0—10cm土层土壤微生物量碳、氮及酶活性的差异,为改善土壤肥力条件、促进桂林旅游城市生态循环农业经济的发展提供理论依据。[方法]在桂林潮田河流域大山口农业综合示范区内设置样地,采集表层(0—10cm)土壤样品,测定与分析不同果草套种模式下表层土壤微生物量碳、氮及酶活性的差异。[结果]0—10cm土层土壤氮磷钾、土壤微生物量碳氮和土壤酶活性大小基本表现为:阳朔金桔+牧草桂橙1号+牧草翠冠梨+牧草对照样地。其中,阳朔金桔+牧草模式对0—10cm土层土壤微生物量碳、氮含量和土壤酶活性的影响最为明显(p0.05)。相关性分析表明,土壤微生物量碳氮和3种土壤酶活性存在极显著正相关关系。[结论]果草套种模式特别是阳朔金桔+牧草模式对南方丘陵山地表层土壤肥力条件的改善作用较为明显。  相似文献   

18.
The southeastern Tibetan Plateau, which profoundly affects East Asia by helping to maintain the stability of climate systems, biological diversity and clean water, is one of the regions most vulnerable to water erosion, wind erosion, tillage erosion, freeze–thaw erosion and overgrazing under global climate changes and intensive human activities. Spatial variations in soil erosion in terraced farmland (TL), sloping farmland (SL) and grassland (GL) were determined by the 137Cs tracing method and compared with spatial variations in soil organic carbon (SOC) and total nitrogen (total N). The 137Cs concentration in the GL was higher in the 0–0.03 m soil layer than in the other soil layers due to weak migration and diffusion under low precipitation and temperature conditions, while the 137Cs concentration in the soil layer of the SL was generally uniform in the 0–0.18 m soil layer due to tillage-induced mixing. Low 137Cs inventories appeared at the summit and toe slope positions in the SL due to soil loss by tillage erosion and water erosion, respectively, while the highest 137Cs inventories appeared at the middle slope positions due to soil accumulation under relatively flat landform conditions. In the GL, the 137Cs data showed that higher soil erosion rates appeared at the summit due to freeze–thaw erosion and steep slope gradients and at the toe slope position due to wind erosion, gully erosion, freeze–thaw erosion and overgrazing. The 137Cs inventory generally increased from upper to lower slope positions within each terrace (except the lowest terrace). The 137Cs data along the terrace toposequence showed abrupt changes in soil erosion rates between the lower part of the upper terrace and the upper part of the immediate terrace over a short distance and net deposition on the lower and toe terraces. Hence, tillage erosion played an important role in the soil loss at the summit slope positions of each terrace, while water erosion dominantly transported soil from the upper terrace to the lower terrace and resulted in net soil deposition on the flat lower terrace. The SOC inventories showed similar spatial patterns to the 137Cs inventories in the SL, TL and GL, and significant correlations were found between the SOC and 137Cs inventories in these slope landscapes. The total N inventories showed similar spatial patterns to the inventories of 137Cs and SOC, and significant correlations were also found between the total N and 137Cs inventories in the SL, TL and GL. Therefore, 137Cs can successfully be used for tracing soil, SOC and total N dynamics within slope landscapes in the southeastern Tibetan Plateau.  相似文献   

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