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1.
N. Fenner D. J. Dowrick M. A. Lock C. R. Rafarel & C. Freeman 《Soil Use and Management》2006,22(3):267-273
The temperature dependence of chemical reaction rates and microbial metabolism mean that temperature is a key factor regulating soil trace gas emissions and hydrochemistry. Here we evaluated a novel approach for studying the thermal response of soils, by examining the effects of temperature on gas emissions and hydrochemistry in (a) peat and (b) soil from a Sitka spruce plantation. A thermal gradient was applied along an aluminium bar, allowing soil to be incubated contemporaneously from 2 to 18 °C. The approach demonstrated clear differences in the biogeochemical responses of the two soil types to warming. The peat showed no significant emission of CH4 at temperatures below 6 °C, while above 6 °C, a marked increase in the rate of release was apparent up to 15 °C (Q10 = 2.5) with emissions being similar between 15 and 18 °C. Conversely, CH4 emissions from the forest soil did not respond to warming. Nitrate availability in the peat decreased by 90% between 2 and 18 °C (P < 0.01), whereas concentrations in the forest soil did not respond. Sulphate availability in the peat decreased significantly with warming (60%, P < 0.01), while the forest soil showed the opposite response (a 30% increase, P < 0.01). Conventionally, thermal responses are studied by incubating individual soil samples at different temperatures, involving lengthy preparation and facilities to incubate samples at different temperatures simultaneously. Data collected on a given thermal response is usually limited and thus interpolated or extrapolated. The thermal gradient method overcomes these problems, is simple and flexible, and can be adapted for a wide range of sample types (not confined to soil). Such apparatus may prove useful in the optimization of management practices to mitigate the effects of climate change, as thermal responses will differ depending on land use and soil type. 相似文献
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不同锌源对断奶小鼠生长及机体抗氧化能力的影响 总被引:9,自引:1,他引:9
选用断奶小鼠72只作为研究对象,随机分为3组(对照组,硫酸锌组和蛋氨酸锌组),每组设4个重复。测定体重、组织锌含量及相关生理生化指标,以研究硫酸锌、蛋氨酸锌2种不同锌供给形式对机体的生长效应及抗氧化能力的影响。结果表明,硫酸锌组和蛋氨酸锌组均能不同程度地提高小鼠体重,蛋氨酸锌组小鼠体重显著高于对照组与硫酸锌组(P<0.05)。饲粮中添加硫酸锌可提高小鼠肝脏和血清中的锌含量(P>0.05);蛋氨酸锌组小鼠肝脏和血清锌含量高于对照组(P<0.05)及硫酸锌组(P>0.05)。2种锌源均显著提高碱性磷酸酶(AKP)、谷胱甘肽过氧化物酶(GSHPx)活性(P<0.05),不同锌源间无明显差异(P>0.05)。添加不同的锌源不同程度地提高总抗氧化能力(TAOC)、总SOD(TSOD)、铜锌超氧化物歧化酶(CuZnSOD)活性(P<0.05),蛋氨酸锌组TAOC、TSOD显著高于硫酸锌组(P<0.05)。添加锌显著降低NO含量(P<0.05),蛋氨酸锌效果显著强于硫酸锌(P<0.05);一氧化氮合酶(NOS)活性表现出与NO相反的趋势(P>0.05)。 相似文献
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Estimating future fluxes of CH4 between land and atmosphere requires well-conceived process-based biogeochemical models. Current models do not represent the anaerobic oxidation of methane (AOM) in land surface soils, in spite of increasing evidence that this process is widespread. Our objective was to determine whether AOM, or potential AOM, commonly occurs in 20 hydromorphic soils spanning a wide range of chemical properties. Bulk soil samples were collected under shallow water near the shoreline of 15 recently drained fish ponds in southern Bohemia (Czech Republic), as well as from below the water table at 3 peatland locations in northeast Scotland and 2 acid sulfate soils on the southern coast of Finland. Each soil slurry was incubated under both oxic and anoxic conditions, with or without the addition of alternative electron acceptors (SO42− and NO3−) or H2PO4−. Here, “oxic” and “anoxic” conditions refer to anoxic soil respectively incubated in a headspace containing air or argon. Using the isotope dilution method, we determined the gross production and oxidation rates of CH4 after 2 days incubation under oxic headspace conditions, and after 2, 21 and 60 days incubation under anoxic conditions. Large differences in net CH4 fluxes were observed between soil types and between incubation conditions. AOM was detected in each of the 20 bulk soil samples, which spanned >6 pH units and 2 orders of magnitude in organic C content. Significant positive relationships were found between AOM and gross CH4 production rates under anoxic conditions, resulting in AOM rates that were sometimes higher than CH4 oxidation rates under oxic headspace conditions. There was no relationship between net and gross CH4 production rates, such that 2 soil types could display similar low net rates, yet conceal very large differences in gross rates. The effects of alternative electron acceptors on AOM were idiosyncratic and resulted in no net trend. We did find, however, a negative effect of SO42− and H2PO4− on gross CH4 production rates under anoxic and oxic conditions respectively. Under oxic headspace conditions, CH4 oxidation was related to soil organic C content. Taken collectively, our results suggest that AOM, or potential AOM, is prevalent over a wide range of soil types, that AOM may contribute substantially to CH4 oxidation in soils, and that AOM in soils should be integrated to current process-based CH4 cycling models. 相似文献
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A method for fractionating sorghum proteins using extraction solvents and techniques designed to obtain polymeric protein structures (especially disulfide linked) was developed. Extraction and separation conditions were optimized in terms of completeness of protein extraction, sample stability, and analytical resolution. After pre-extraction of albumins and globulins, a 3-step sequential procedure involving no reducing agents was applied to ground whole sorghum flour. The three fractions obtained represented proportionally different protein polymer contents and molecular weight distribution as evidenced by comparative size exclusion chromatography. Protein composition also varied among the extracts with differences in kafirin composition and non-kafirin proteins detected in the fractions by RP-HPLC and SDS-PAGE analysis. The ability to quantify and further characterize sorghum polymeric protein complexes will be useful for additional studies linking protein structures with functionality and digestibility and variations for these properties within diverse sorghum germplasm. 相似文献
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饲粮铜源及水平对育成期雄性水貂生长性能、营养物质表观消化率及氮、铜代谢的影响 总被引:1,自引:0,他引:1
本试验旨在研究饲粮铜源及水平对育成期雄性水貂生长性能、营养物质表观消化率及氮、铜代谢的影响。采用3×3+1双因素试验设计,设3种铜源(硫酸铜、碱式氯化铜、蛋氨酸铜)和3个铜添加水平(10、25、40 mg/kg),1个对照组。选择60日龄健康、体重接近的美国短毛黑雄性水貂120只,随机分成10组,每组12个重复,每个重复1只貂。预试期7 d,正试期45 d。结果表明:1)水貂的平均日采食量随饲粮铜添加水平的增加呈极显著线性增加(P0.01),并且平均日增重随饲粮铜添加水平的增加也呈线性增加(P=0.053)。2)水貂的粗脂肪表观消化率随饲粮铜添加水平的增加呈极显著线性增加(P0.01),并且粗蛋白质表观消化率随饲粮铜添加水平的增加也呈显著线性增加(P0.05)。3)水貂铜摄入量、粪铜排泄量、尿铜排泄量以及铜沉积量均随饲粮铜添加水平的增加呈极显著线性增加(P0.01),然而铜的表观吸收率却随饲粮铜添加水平的增加呈极显著线性降低(P0.01)。水貂对碱式氯化铜和蛋氨酸铜的表观吸收率极显著高于对硫酸铜的表观吸收率(P0.01)。水貂氮沉积量随饲粮铜添加水平的增加而呈显著线性增加(P0.05)。由此可见,基础饲粮中铜含量为8.05 mg/kg时,饲粮添加40 mg/kg的铜能改善育成期雄性水貂生长性能,提高水貂粗脂肪表观消化率;育成期雄性水貂对碱式氯化铜和蛋氨酸铜的表观吸收率高于对硫酸铜的表观吸收率。 相似文献
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文章旨在评估日粮钠水平及种类对肉鸡生长性能、胴体性状及血清矿物质水平的影响。试验选择平均初始体重一致的白羽肉仔鸡832只,随机分为8组,每组4个重复,每个重复26只鸡。试验日粮采用4×2因子设计,即日粮钠水平分别为1.5、2.4、3.3和4.2 g/kg,以小苏打和硫酸钠两种形式添加,试验共进行42 d。结果:1~10 d肉鸡的增重和采食量受钠盐水平及钠盐水平与种类交互作用的显著影响(P<0.05),在1~10 d时,硫酸钠组日增重和采食量最高(P<0.05)。同时,在整个试验期间(1~42 d),2.4 g/kg硫酸钠显著改善了增重(P<0.05)。随着钠水平的升高,血液pH表现为显著升高(P<0.05),硫酸钠组血液pH显著高于小苏打组(P<0.05),硫酸钠组腹脂占比较小苏打组显著提高2.23%(P<0.05)。4.2 g/kg钠水平组血清钠和钙浓度最高(P<0.05),3.3 g/kg钠水平组血清钾、氯和镁浓度最高(P<0.05)。与小苏打组相比,硫酸钠组血清钾水平显著降低0.33%(P<0.05),而血清钙浓度显著提高9.2%(P<0.05)。结论:日粮中钠以硫酸钠的形式添加2.4~3.3 g/kg可改善1~10 d肉鸡的生长性能,而在33~42 d时降低日粮钠水平可以使肉鸡获得最大的增重和采食量。 相似文献