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1.
Functional brain alterations induced by lindane were examined in Rat chronically exposed to low doses of lindane (1 and 2 μg L−1 in drinking water) from conception. Histological and electrophysiological investigations were conducted at 14 weeks of age. Lindane did not induce histological changes. It did not significantly modify the sleep-wakefulness cycle and EEG did not show major alterations. The spectral EEG analysis, by recording cortical variations in both energy spectrum and energy levels of different frequency bands, showed an increase in the 11-15 Hz activity in both groups exposed to lindane. This activity was characterised by spindles well-depicted during slow wave sleep or associated with fast activity during wakefulness and theta activity in paradoxical sleep. These data suggest that chronic exposure to lindane doses as low as 1 μg L−1 in drinking water could lead to central electrophysiological effects possibly involving GABA-benzodiazepine mechanisms.  相似文献   
2.
 以2002 年设施番茄栽培为代表计算其N、P、K投入量与携出量之间的表观平衡状态, 其结果基本上和14.5 年后的土壤实测值与设施栽培本底值之间纵向比较的增长关系一致, 前者只能说明系统养分变化的趋势, 后者才是实际的养分盈亏状态, 养分盈亏主要取决于有机肥的施用与养分元素的供给。5个代表性处理模拟了蔬菜施肥的不同现状, 从土壤肥力及产量等方面的变化真实反映出各自的系统变化及发展趋势, 在本试验条件下以ANK施肥下的系统最优。对有机肥施用、化学肥料的配施以及测土施肥等问题进行了探讨。  相似文献   
3.
The effects of long-term fertilization of acidic soils on ammonia-oxidizing archaea (AOA) and bacteria (AOB) communities and its ecological implications remain poorly understood. We chose an acidic upland soil site under long-term (27-year) fertilization to investigate ammonia oxidizer communities under four different regimes: mineral N fertilizer (N), mineral NPK fertilizer (NPK), organic manure (OM) and an unfertilized control (CK). Soil net nitrification rates were significantly higher in OM soils than in CK, N or NPK soils. Quantitative analysis of the distribution of amoA genes by DNA-based stable isotope probing revealed that AOA dominate in CK, N and NPK soils, while AOB dominate in OM soils. Denaturing gradient gel electrophoresis and clone library analyses of amoA genes revealed that Group 1.1a-associated AOA (also referred to as Nitrosotalea) were the most dominant active AOA population (>92%), while Nitrosospira Cluster 3 and Cluster 9 were predominant among active AOB communities. The functional diversity of active ammonia oxidizers in acidic soils is affected by long-term fertilization practices, and the responses of active ammonia oxidizers to mineral fertilizer and organic manure are clearly different. Our results provide strong evidence that AOA are more highly adapted to growth at low pH and low substrate availability than AOB, and they suggest that the niche differentiation and metabolic diversity of ammonia oxidizers in acidic soils are more complex than previously thought.  相似文献   
4.
Annual C input to soil is a major factor affecting soil organic carbon (SOC) dynamics. However different types of C-sources can have different behaviour, in relation to their chemical characteristics and how they interact with soil. Root-derived C, in particular, should be more efficient than other organic materials as a result of the physicochemical and biological characteristics of the surrounding environment, leading to a reduction in the C decomposition rate.To test this hypothesis, we considered a long-term experiment underway in Northern Italy since 1962, comparing permanent meadow and 6 different crop rotations over a wide range of nutrient inputs, in both organic and inorganic forms. C inputs from amendments were measured and those from crops were calculated using allometric functions and crop and residues yields. The time evolution of SOC was studied through a single-pool, first-order kinetic model, allowing the estimation of humification coefficients for residues, roots, farmyard manure and cattle slurries.The highest value of the humification coefficient was estimated for farmyard manure, which confirmed its high efficiency in stabilising SOC content. Root C presented a humification coefficient 1.9 times higher than above-ground plant materials while slurries were intermediate, with a humification coefficient roughly half that of farmyard manure and even lower that of roots.The quality of C input thus seems of fundamental importance for evaluating the sustainability of different cropping systems in terms of SOC dynamics.  相似文献   
5.
Integrated pest management (IPM) is facing both external and internal challenges. External challenges include increasing needs to manage pests (pathogens, animal pests and weeds) due to climate change, evolution of pesticide resistance as well as virulence matching host resistance. The complexity of designing effective pest management strategies, which rely less heavily on the use of conventional pesticides, is another external challenge. Internal challenges include organizational aspects such as decreasing trend in budget allocated to IPM research, increasing scarcity of human expertise, lack of knowledge transfer into practice and the communication gap both at country level and between countries, and lack of multi-, inter- and transdisciplinary IPM research. There is an increasing awareness that trans-national networking is one means to overcome such challenges and to address common priorities in agriculture. A large number of stakeholders (researchers, policy makers, growers and industries) are involved in the sector of crop protection, which needs to be coordinated through effective communications and dynamic collaboration to make any IPM strategy successful. Here we discuss a decade-long IPM networking experiences in Europe emphasizing how IPM research, implementation and adoption in Europe may benefit from a broader level networking.  相似文献   
6.
In order to quantify the influence of land use systems on the level of soil organic matter (SOM) to develop recommendations, long-term field studies are essential. Based on a crop rotation experiment which commenced in 1970, this paper investigated the impact of crop rotations involving increased proportions of sugar beet on SOM content. To this end, soil samples were taken in 2010 and 2012 from the following crop rotation sequences: sugar beet–sugar beet–winter wheat–winter wheat (SB–SB–WW–WW = 50%), sugar beet–sugar beet–sugar beet–winter wheat (SB–SB–SB–WW = 75%), sugar beet–grain maize (SB–GM = 50%) and sugar beet-monoculture (SB = 100%); these were analysed in terms of total organic carbon (TOC) and microbial biomass carbon (MBC) content, MBC/TOC ratio and the TOC stocks per hectare. In addition, humus balances were created (using the software REPRO, reference period 12 years) in order to calculate how well the soil was supplied with organic matter. In the field experiment, harvest by-products (WW and GM straw as well as SB leaves) were removed. After 41 years, no statistically significant differences were measured between the crop rotations for the parameters TOC, MBC, MBC/TOC ratio and the TOC stock per hectare. However, the calculated humus balance was significantly affected by the crop rotation. The calculated humus balance became increasingly negative in the order SB–SB–WW–WW, SB–SB–SB–WW, SB monoculture and SB–GM, and correlated with the soil parameters. The calculated humus balances for the reference period did not reflect the actual demand for organic matter by the crop rotations, but instead overestimated it.  相似文献   
7.
There is a growing recognition for the need to develop sensitive indicators of soil quality that reflect the effects of land management on soil and assist land users in promoting sustainability of agro-ecosystems. Three soil enzymes (dehydrogenase, phosphatase and invertase) microbial biomass as biological variables and soil organic matter content (SOM) were investigated relative to fertilization and soil fertility (estimated by crop yield) at a long-term fertilization trial (Keszthely, Hungary). 0-34.7-69.4-104.1t farmyard manure (FYM) ha m 1 5 yr m 1 and the corresponding amount of mineral fertilizers (NPK) were applied in two different crop rotation systems. There were four straw and/or stalk incorporating treatments in the second crop rotation 'B'. Enzyme activities, microbial biomass and the amount of SOM were generally higher in the fertilized soils than in the unfertilized soils. The type of amendments (mineral, FYM or mixed) had significant effects only on the amount of SOM. The correlations among the biological variables and the crop yield were generally low (r < 0.250. The differences in field management resulted only in the invertase activity.  相似文献   
8.
红壤地区施入的磷肥很容易被吸附固定而留存于土壤中,降低磷肥利用效率,留存于土壤中的磷对土壤生态功能和作物养分供应的后续效应值得关注。基于旱地红壤长期施肥定位试验,探讨常规施肥处理(CK)以及短期施入不同磷肥量(P2O5,0、50、100、150和1 000 kg·hm-2)多年后土壤养分、土壤氮循环过程和作物产量的变化特征。通过多元统计分析方法探讨不同磷肥处理下,土壤全碳、全氮和微生物生物量碳和氮转化过程的潜在速率以及产量等因子间的相互关系及其与磷的后期效应的关系。结果表明,在短期投入高剂量磷肥(1 000 kg·hm-2, P1000)27年后,土壤全碳、全氮和微生物生物量碳与常规施肥处理相比无明显差异,但显著提高了土壤pH和氮循环相关过程速率,包括氮矿化速率(Nitrogen mineralization rate, Nmin)、固氮酶活性(Soil nitrogenase activity, SNA)、潜在硝化速率(Potential nitrification rate, PNR)(P < 0.05),同时降低了净N2O排放潜能(Net N2O production rate, NN2O)(P < 0.05)。与不施磷(P0)和短期投入低剂量磷肥处理(50,100,150 kg·hm-2)相比,P1000处理中,土壤有效磷(AP)、氮矿化速率、固氮酶活性、潜在硝化速率和潜在N2O产生速率(PN2O)分别增加了33.3%~76.4%、88.2%~388.1%、111.4%~4 826.3%、22.6%~152.4%和13.8%~78.9%(P < 0.05),同时净N2O排放潜能也降低了64.6%~78.9%(P < 0.05),表现出明显的磷后效,且在作物生长季更为明显。相关分析和冗余分析表明AP和pH是影响以上土壤生物化学活性最主要的因子。近三年作物平均产量在所有处理中无显著差异,但与土壤TP、AP和pH呈显著正相关;但在长期尺度上(1992—2019年),P1000处理相对于其他低磷处理累积增产效应达3%~23%。以上结果表明,酸性红壤中短期大量施用磷肥多年后,由于大量磷肥投入导致的土壤pH提升和磷的缓释效应,使得磷肥在促进土壤肥力、微生物活性和土壤氮循环转化活性方面表现出较明显的后期效应。  相似文献   
9.
南方酸化红壤钾素淋溶对施石灰的响应   总被引:1,自引:1,他引:1  
为探究石灰施用的长期和短期效应对酸化红壤钾素的影响,依托始于1990年的国家红壤肥力与肥料效益监测长期定位试验,选取化肥氮磷配施(NP)、氮磷钾配施(NPK)、氮磷钾配施+半量秸秆还田(NPKS)及其增加常量石灰(NPL、NPKL、NPKSL)6个处理。室内土柱淋溶试验设置0 L、0.5 L、1 L和1.5 L石灰施用量,监测田间和淋溶后0 ~ 50 cm土层速效钾和缓效钾含量、pH及淋溶液中钾离子(K+)含量的变化。结果表明:1)施用石灰4年后,与NPKS、NPK、NP相比,各处理均增加了相应土层的缓效钾含量;NPKSL和NPL处理分别增加了0 ~ 40 cm和0~10 cm速效钾含量,增幅分别为2.06 % ~ 36.39 %和27.26 %。2)石灰施用量相同,各处理土壤累积K+淋溶量由大到小依次为NPKS处理、NPK处理和NP处理。施用石灰减少了NPKS和NPK处理淋溶液中累积K+含量,降幅为18.10 % ~ 57.70 %,且K+淋溶率也下降。3)施石灰提高了表层土壤pH;土壤中钾素盈余情况下,石灰当季施用量每增加1 000 kg·hm-2,K+淋溶损失率降低11.7%;施用石灰和施肥是显著影响平均淋溶K+量和K+累积淋溶量的主效应。可见,施用石灰的短期和长期效应均能提高表层土壤pH;减少速效钾在剖面的运移,增加剖面下层缓效钾的含量;土壤淋溶K+量、累积K+淋溶量和K+淋溶率均随土壤中速效钾含量的增加而增加,随施用石灰而降低。合理的石灰用量能够有效降低酸化红壤K+淋溶损失风险。  相似文献   
10.
长期施用化肥和秸秆对水稻土碳氮矿化的影响   总被引:5,自引:0,他引:5  
闫德智  王德建 《土壤》2011,43(4):529-533
以长期定位试验的土壤为供试材料,通过室内培养试验,研究了长期施用化肥和秸秆对水稻土?C、N矿化和微生物生物量的影响。结果表明长期施用化肥和秸秆增加了土壤?C?矿化量,但降低了可矿化?C?在土壤有机?C?中的比例。长期施用化肥能够增加土壤?N?矿化量,而且增加了可矿化?N?在土壤全?N?中的比例,但配施秸秆不能继续增加?N?矿化量。长期施用化肥和秸秆能够显著增加土壤微生物生物量?C、N?含量,但微生物量在土壤中的比例变化不大。  相似文献   
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