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1.
林兰稳  钟继洪  谭军  梁广灶 《生态环境》2012,(10):1678-1682
为了解不同利用方式下土壤动物多样性状况及其演变,对广州市东部郊区的水稻田、蔬菜地、果园旱地和林地4种土地利用类型0~5、5~10、10~15、15~20cm土层进行了土壤动物取样调查,共获得土壤动物24683只,分别隶属于4门10纲23类。统计分析结果表明,土壤动物多样性受土地利用方式的影响明显。果园旱地和林地的个体数显著高于蔬菜地和水稻田,但果园旱地与林地、蔬菜地与水稻田之间无显著差异;果园旱地和林地的土壤动物类群数显著高于水稻田,但果园旱地与林地、林地与蔬菜地、蔬菜地与水稻田之间的差异不显著;林地和果园旱地的复杂性指数显著高于蔬菜地,但林地与果园旱地和水稻田、水稻田与蔬菜地之间的差异不显著(P〈O.05)。土壤动物的个体数和类群数量随着土壤深度的增加而明显减少,但不同土地利用方式下各层土壤动物的丰富度及其随土层加深而递减的程度则有明显不同,其中,林地和果园旱地的土壤动物在不同土层中较丰富,垂直变化比较和缓,水稻田和蔬菜地的类群数和个体数则随土层的加深而急剧减少。  相似文献   

2.
不同利用方式下吴江市耕地土壤环境质量变化   总被引:7,自引:1,他引:7  
土地利用方式的不同影响着土壤环境质量的变化。文章采用了2003年江苏省吴江市耕地质量监测中资料,分析了6种不同土地利用方式下的土壤养分及Pb、Cr、Hg、As、Cd等5种重金属元素全量的变化,并采用土壤质量综合指数(SQI)法计算不同利用下的土壤环境质量指数。结果表明:近20多年来,吴江市土地利用方式发生了明显的变化,这种变化对本土壤养分和重金属含量产生了十分明显的影响。在稻田、林地、桑园、菜地、果园、旱地六种吴江常见的土地利用方式中,稻田土壤环境质量综合指数显著高于其他利用下,而其他五种利用方式下土壤质量的差别不明显。可见稻田不仅是一种太湖地区传统的利用方式,更是保持环境质量相对最佳的土地利用方式。  相似文献   

3.
中国幅源辽阔,南北跨度大,在自然气候环境的影响和人为因素的干扰下,不同地区土壤养分和土壤微生物种类、数量存在显著的空间差异,进而造成了土壤质量的空间差异。为了解中国东部天然林土壤养分和微生物多样性空间分布规律,本研究依据水热梯度变化特征采集了16个自然保护区52个典型森林土壤样方,测定了土壤养分和微生物指标,包括pH值、有机碳、有机质、总碳、总氮、总磷、总钾、速效磷、速效钾、碱解氮、土壤微生物宏基因组丰度和香农多样性指数。研究发现,中国东部森林土壤养分含量较高,空间差异大,宏基因组香农多样性指数变异系数为0.03,属弱变异,速效磷变异系数为1.17,属强变异。土壤养分(除总氮、总钾外)、土壤微生物宏基因组丰度和香农多样性指数与纬度呈显著正相关。进一步采用主成分分析方法,得出了基于土壤养分和土壤微生物指标的土壤质量综合评价指数。结果表明,1)中国东部森林土壤质量综合指数与纬度呈显著正相关关系。2)较高的土壤养分含量和微生物多样性有利于提高土壤质量,它们在数值上表现为正相关关系,彼此之间存在一定的互作关系。本研究揭示了中国东部地区典型森林土壤养分、微生物多样性和土壤质量空间分异规律,为了解中国东部森林土壤状况以及土壤资源合理可持续利用与管理提供了科学依据。  相似文献   

4.
设置0(对照)、20、60和100g·kg-1 3个底泥施用量水平,研究施用底泥对冬小麦籽粒Cd含量以及土壤微生物群落功能多样性的影响。结果表明,60和100g·kg-1底泥施用处理小麦穗质量和千粒重显著高于对照(P〈0.05)。各处理间小麦籽粒cd含量无显著差异。与对照相比,施用底泥并没有显著改变土壤中可培养细菌、真菌和放线菌的数量。整个培养过程中土壤微生物平均颜色变化率(IAWCD)以及96h时微生物多样性指数(Shannon指数、Simpson指数、McIntosh指数)在对照与底泥施用处理间无显著差异。主成分分析(PCA)表明,仅有占总变量方差14.22%的PC3能识别出对照土壤微生物群落碳源利用谱与底泥施用处理间的差异,而PCI(21.76%)、PC2(16.32%)和PC4(11.62%)则无法将对照与底泥施用处理区分开来。可见,该试验条件下合理的底泥施用量并不会对小麦籽粒Cd含量、微生物功能多样性和土壤质量产生显著影响。  相似文献   

5.
以宁夏引黄灌区6种典型利用方式(12年果园田、稻旱轮作田、盐化旱田、枸杞田、常年旱田、常年稻田)灌淤土为研究对象,通过同期野外多点采样和室内培养分析相结合,运用磷脂脂肪酸谱图分析方法,探讨了不同土地利用与管理方式下灌淤土理化性质、微生物生物量、微生物区系及微生物群落多样性差异及相关关系,以期为宁夏引黄灌区土壤可持续利用提供数据支撑。结果表明,(1)不同土地利用方式中,长期秸秆还田的盐化旱田、长期有机无机配施的12年果园以及常年旱田3种利用方式下,土壤地力水平较高,相应土壤微生物生物量炭、氮水平最高,有利于土壤微生物数量的保持,而常年淹水条件下的常年稻田土壤肥力水平低下,微生物生物量最低。(2)不同土地利用方式磷脂脂肪酸PLFA总量变幅为81.1-94.8 nmol·g^?1,其中盐化旱田>12年果园>稻旱轮作>常年旱田>枸杞园>常年稻田;好氧细菌14:0、16:0和18:0比例最大,革兰氏阳性细菌16:0iso在12年果园、稻旱轮作田中含量显著提高,放线菌次之,而真菌18:3ω6c在12年果园、盐化旱田、稻旱轮作3种利用方式下含量升高。(3)相关分析表明,引黄灌区土壤磷酸脂肪酸与土壤pH、微生物量碳及微生物量磷之间呈极显著正相关,与土壤有机质呈显著正相关;主成分分析表明,盐化旱田和12年果园具有相近的微生物群落结构。(4)综上所述,有机无机配施常年果园和秸秆还田常年旱田是适用于该地区的土地利用与管理方式。  相似文献   

6.
刈割对牧草地下部根区土壤养分及土壤酶活性的影响   总被引:12,自引:1,他引:12  
对不同刈割强度对牧草地下部根区土壤养分状况及土壤酶活性进行了研究,结果表明,牧草刈割对根区土壤养分、土壤酶活性和土壤微生物数量存在一定影响。不同刈割强度对牧草根区土壤有机质、全磷和全钾含量无明显影响。土壤全氮、碱解氮、速效磷、速效钾含量均因刈割强度的增加而显著下降。土壤蔗糖酶、脲酶活性因刈割处理强度的增加而下降;土壤过氧化氢酶活性则表现为相反的变化趋势。刈割对土壤微生物总数量的影响较大,表现为轻刈割>不刈割>重刈割。  相似文献   

7.
黄土丘陵区不同土地利用方式土壤微生物功能多样性特征   总被引:1,自引:0,他引:1  
土壤微生物是生态系统的重要组成部分,分析黄土丘陵区小流域不同土地利用方式土壤微生物功能多样性变化状况以及与土壤化学因子间的关系,以期为区域土壤微生物研究以及生态环境监测提供一定的参考依据。采集区域主要土地利用类型土样38份,采用生态板(Biolog-ECO)方法测定不同土地利用方式土壤微生物利用碳源的状况,利用主成分综合评价和相关系数等方法,分析不同土地利用方式土壤微生物功能多样性,以及平均吸光值、多样性指数、6类碳源和土壤化学因子的关系;结果表明:(1)土壤微生物平均吸光值随着培养时间的延长,微生物活性呈现直线增加趋势,土壤微生物功能多样性从表层到底层呈现递减趋势;(2)土壤微生物功能多样性总体趋势为林地天然草地耕地,苜蓿地土壤微生物功能多样性不同层次间变异大;(3)土壤全量氮、有机质、速效磷和速效氮对土壤微生物功能多样性具有显著影响。不同土地利用方式以及相同利用方式下不同措施土壤微生物功能多样性变化较大,Biolog-ECO技术可以作为生态环境监测的指标。  相似文献   

8.
土壤微生物是耕地质量的重要指标,为阐明秸秆还田少免耕对土壤质量的影响及其机理,在成都平原(温江)冲积水稻土区,开展了水稻–小麦/油菜轮作秸秆还田培肥定位试验(2003~2008年),在小麦生长季节,系统研究了土壤耕层微生物数量和微生物生物量的变化特征.结果表明,秸秆还田翻耕与秸秆还田免耕的土壤耕层微生物总量分别增加了51.7%、12.8%,土壤微生物数量增加主要来自土壤细菌数量的增加;从小麦全生育期看,在小麦分蘖期的增加幅度高于小麦播种期和小麦收获后,有利于促进小麦养分吸收与生长发育.秸秆还田少免耕显著增加了微生物生物量,秸秆还田翻耕和秸秆还田免耕处理土壤微生物碳总量分别比对照提高74.1%、25.8%,土壤微生物氮分别提高60.2%和12.1%.秸秆还田循环利用显著增加了土壤微生物数量和生物量,有利于土壤养分循环与转化,有利于提高土壤有机质含量并改善有机质质量,是耕地质量建设的重要途径.  相似文献   

9.
长期配施秸秆对灰漠土质量的影响   总被引:7,自引:0,他引:7  
利用国家灰漠土肥力与肥料效益长期定位试验,采用长期不施肥、常规施化肥和长期配施秸秆(玉米秸秆或小麦秸秆)等不同施肥措施相比较的方法,研究长期秸秆还田土壤养分的年际变化,以及对土壤动物、微生物、酶活性的影响。研究发现:⑴长期配施秸秆能提高土壤速效氮、磷、钾含量,平均分别提高15%、48%和22%;⑵配施秸秆对土壤昆虫群落呈正向作用且贡献最大,主要增加了大型、中小型农田土壤动物的个体总数和优势类群数量,尤其是疣跳科和等节跳科动物个体数量增加近10倍;⑶土壤养分与土壤细菌、固氮菌、氨化细菌、纤维分解菌和反硝化细菌呈正相关,秸秆还田激发土壤有益微生物的生长和类群数量,使土壤微生物类群数量比对照增加15%~44%;⑷土壤养分与土壤磷酸酶、脲酶、蔗糖酶活性呈正相关,与过氧化氢酶呈负相关,秸秆还田增强土壤蔗糖酶、磷酸酶和脲酶活性,特别是脲酶和蔗糖酶活性平均提高26.5%。结果表明,长期配施秸秆提高了土壤动物丰富性和微生物多样性,增加了土壤酶活性,同时生物类群和酶活性的增加也改变了土壤生态环境,加速了土壤熟化。  相似文献   

10.
研究了鄂南红壤区不同种植模式的旱地及坡荒地、不同轮作模式的水田、水田改旱菜地的土壤养分状况。本区土壤有机质含量和氮素含量较低,磷素普遍缺乏,钾素含量较低且呈下降趋势。土壤有机质及氮含量呈现水田类>水田改旱地类>旱地类;土壤磷含量则是水田改旱地类>水田类>旱地类;水田类钾含量明显低于旱地类和水田改旱地类,而且三熟制油菜-西瓜-晚稻种植模式下,土壤全钾及速效钾含量呈下降趋势。水田改为旱作是改善土壤水分状况的有效措施。  相似文献   

11.
A survey was done recently in Jiaxing city of Zhejiang Province in the Yangtze River Delta to compare the differences of soil microbiological properties among paddy soils with different land use including continuous open-field vegetable cultivation (OFVC), plastic-greenhouse vegetable cultivation (PGVC) and traditional rice–wheat rotation (RWR). The soil types included are percolating, permeable and waterlogged paddy soils. The results indicate that the microbial flora was markedly changed as the land use changed for all the three soil types. In continuous vegetable cultivation soils, especially in PGVC soils, the bacteria amounts decreased dramatically, but the fungal and actinomyce amounts increased as compared with RWR soils. The dehydrogenase activities decreased significantly in vegetable soils, especially in PGVC soils as compared with RWR soils. The microbial biomass C and the total phospholipid contents (TPL) in vegetable cultivation soil greatly decreased as compared with RWR soils. Biolog analysis indicated that the kinds of carbon sources that could be metabolized by native microbes in PGVC soils greatly decreased as compared with OFVC soils and RWR soils, revealing that microbial diversity had decreased since land use change. The activities of some soil enzymes including urease, invertase and phosphase were all lower in OFVC soils than those in RWR soils, and those in PGVC soils were the lowest. The degradation of microbiological activities in continuous vegetable cultivation soils, especially in PGVC soils, as compared with RWR soils might have been caused by soil acidification and accumulation of salts due to overuse of both organic and inorganic fertilizers in vegetable cultivation.  相似文献   

12.
A survey was done recently in Jiaxing city of Zhejiang Province in the Yangtze River Delta to compare the differences of soil microbiological properties among paddy soils with different land use including continuous open-field vegetable cultivation (OFVC), plastic-greenhouse vegetable cultivation (PGVC) and traditional rice-wheat rotation (RWR). The soil types included are percolating, permeable and waterlogged paddy soils. The results indicate that the microbial flora was markedly changed as the land use changed for all the three soil types. In continuous vegetable cultivation soils, especially in PGVC soils, the bacteria amounts decreased dramatically, but the fungal and actinomyce amounts increased as compared with RWR soils. The dehydrogenase activities decreased significantly in vegetable soils, especially in PGVC soils as compared with RWR soils. The microbial biomass C and the total phospholipid contents (TPL) in vegetable cultivation soil greatly decreased as compared with RWR soils. Biolog analysis indicated that the kinds of carbon sources that could be metabolized by native microbes in PGVC soils greatly decreased as compared with OFVC soils and RWR soils, revealing that microbial diversity had decreased since land use change. The activities of some soil enzymes including urease, invertase and phosphase were all lower in OFVC soils than those in RWR soils, and those in PGVC soils were the lowest. The degradation of microbiological activities in continuous vegetable cultivation soils, especially in PGVC soils, as compared with RWR soils might have been caused by soil acidification and accumulation of salts due to overuse of both organic and inorganic fertilizers in vegetable cultivation.  相似文献   

13.
三峡库区小流域土地利用方式对土壤肥力的影响   总被引:25,自引:0,他引:25  
为探讨三峡库区小流域不同土地利用方式对土壤肥力的影响特征,采用野外调查、取样和室内实验分析相结合的方法,对三峡库区五桥河流域内3种主要土地利用方式(旱地、柑橘园、林地)的土壤理化性状进行对比分析。结果表明,不同土地利用方式对土壤吧力具有较为明显的影响,土壤孔度、渗透率变化由大到小的次序为林地→柑橘园→旱地;土壤有机质和氮、磷、钾养分含量由大到小次序为林地→柑橘园→旱地。这与不同土地利用方式下人类耕作活动、对土地的劳力与经济投入不同密切相关。林地受人为扰动少,因而土壤肥力高;柑橘园、旱地受人类耕作活动影响大,但因柑橘园经济产出效益较高,农户对土地的投入相应较高,使得柑橘园土壤肥力高于旱地土壤。  相似文献   

14.
在赤红壤坡地幼龄果园间种6种牧草,对其生态环境效应进行了试验观测。结果发现,果园间种牧草可明显增大地面覆盖,增加土壤的保水能力,减少水土流失,提高了土壤肥力和土地生产力。然而,由于有些牧草生长旺盛、生物量大,高度和覆盖度大,不可避免地与果树争肥、争水、争光,特别是在贫瘠的坡地上或在干旱季节里。文章指出,幼龄果园间种牧草是一种较好的坡地可持续利用模式,但在牧草品种的适应性选择应加以深入研究。  相似文献   

15.
贵州主要耕作土壤的脲酶活性研究   总被引:1,自引:0,他引:1  
首次较系统、全面地测定了贵州省主要耕作土壤的脲酶活性,分别探讨了水稻土和旱作土脲酶活性与土壤主要理化性状之间的关系。结果表明:耕作土壤脲酶活性因土壤利用状况、土壤类型和土壤肥力水平不同而有明显的差异,供试水稻土、旱作土和菜园土的平均脲酶活性分别为155、277和703mgNH4-N/100g土·24h;不同类型水稻土和旱作土具有不同的脲酶活性水平,这主要受成土条件、成土过程和土壤属性的影响;水稻土和旱作土的脲酶活性均随土壤肥力水平的提高而增强,说明脲酶活性强弱是表征土壤肥力高低的重要指标之一。回归分析表明,土壤脲酶活性主要受土壤有机质、氮、磷、钾等因素的影响,其中土壤基础铵量对耕作土壤脲酶活性的影响最大。水稻土脲酶活性还受土壤通透性的制约.而旱作土的则主要受土壤养分状况的影响。  相似文献   

16.
本文采用对比研究的方法,分别对康集生态农场种植园、附近农用地和对照废窑地的主要土壤肥力指标进行了测定分析。结果表明,康集生态农场土壤肥力已从开发前的五级提高到与当地一般农用地相一致的三级水平。其中有机质、全氮、水解氮、速效磷含量明显提高,盐渍化程度有所下降,但仍有改善的潜力。  相似文献   

17.
在滨海沙滩营造木麻黄防护林,林带老化后进行更新,部分林地改种潮州柑或芒果而成为果园,并于其间套种农作物或牧卓;结果表明,人为耕作活动对土壤的热化起到了明显的促进作用.在造林种果的同时,大量肥料的施入及优质客土改良了土壤,使>1.0mm的砂粒比例明显减少,<0.01mm的粉粘粒及土壤养分含量明显增加,其中沙草地、防护林及果园,0—40cm土壤粉粘粒含量分别为56.4g/kg、59.6g/kg和108.9g/kg,土壤有机质为0.71g/kg、2.02g/kg和4.11g/kg;土壤氮素含量随有机质提高而提高,柑园速效磷和钾含量是沙草地的37倍和3.5倍,然而防护林的种植对土壤速效磷和钾的影响却不明显;由于雨水淋洗,土壤盐分减少;又由于酸性化学肥料的大量施入,土壤pH值由8.3下降为5.3.果园的营建,明显改善了土壤的肥力状况及其保水保肥性能,提高了沙滩地的利用价值及生态经济效益.  相似文献   

18.
Soil organic carbon (SOC) sequestration impacts on food security and climate change and may be affected by soil microbes in fertilized croplands. A 12-year field experiment under the rice–wheat system was used to evaluate the effect of the long-term fertilization on the SOC accumulation, culturable soil microbes, and their interaction in purple paddy soil. Results showed that varied fertilizations resulted in a significant increase of the SOC content and stock in the plow layer, as well as rise in populations of major soil microbes, including bacteria, actinomycetes, and fungi compared with no fertilization. Soil with combined application of chemical NPK fertilizer and organic amendment (pig manure or rice straw return) on average had the highest organic carbon content and stock, amounts of bacteria, actinomycetes, and fungi, which were 7.8%, 5.8%, 75.8%, 130.5%, and 16.2% higher than the NPK fertilization alone. Fertilization differentially altered populations of the functional anaerobic bacteria in paddy soil. With the combined application of chemical NPK fertilizer and organic amendment, soil displayed higher amounts of anaerobic cellulolytic bacteria, anaerobic fermentative bacteria, hydrogen-producing acetogen, methanogenic bacteria, denitrifying bacteria, and sulphate-reducing bacteria than that with the NPK fertilization alone or no fertilization. Populations of all three major soil microbes showed significantly positive correlations with the SOC content, indicating their interaction was of mutual promotion. Data suggest that the combined application of the NPK fertilizer with organic amendment especially by the rice straw return is recommended to sustain the soil biological fertility and mitigate the emission of the greenhouse gas by the SOC sequestration in purple paddy soil.  相似文献   

19.
To find a principal component (PC) that quantifies the degree of soil degradation, we analyzed various physicochemical characteristics of soils over a land degradation gradient related to aboveground vegetation in the Sakacrat Environmental Research Station (SERS), Thailand. The aboveground vegetative types representing the degradation gradient were bare ground (BG, highly degraded), dry dipterocarp forest (DDF, moderately disturbed) and dry evergreen forest (DEF, the original vegetation). Soils under these vegetative types were sampled in February (dry season). March just after temporal precipitation) and June (rainy season) 2001. Through the period of this research, the degradation was consistently explained by sandy texture, high bulk density, lower pH, high exchangeable acidity, poor mineral and organic nutrients and dryness. Principal component analysis (PCA) was applied to determine significant principal components (PCs) that clarify the differences in soil properties between the vegetative types and between the timing of soil sampling. The PC loadings suggested that the first PC was the component that indicates total fertility of soil in the site, while the fifth PC indicates the dry to wet seasonal transition. The first PC was named the total fertility component (TFC). The linear regression between the TFC score and recently proposed indexes, the soil fertility index (SFI) or the soil evaluation factor (SEF), was highly significant (p < 0.001), indicating that the SFI and the SEF are applicable to measuring total fertility of soils in the SERS.  相似文献   

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