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1.
为探究氮添加对高寒草原生态系统土壤酶活性的影响,于2018年在中国科学院巴音布鲁克草原生态系统研究站,选择4个氮添加水平(对照,N0,0 kg·hm^-2·a^-1;低氮,N1,10 kg·hm^-2·a^-1;中氮,N3,30 kg·hm^-2·a^-1;高氮,N9,90 kg·hm^-2·a^-1),开展土壤酶活性对氮添加响应的研究,分析土壤酶活性对氮添加的响应特点,土壤酶化学计量比以及土壤酶活性与土壤环境因子的关系。结果表明:与对照相比,氮添加在N3水平显著增加β-1,4葡萄糖苷酶(βG)、β-D-纤维二糖水解酶(CBH)和β-1,4木糖苷酶(βX)酶活性(P<0.05),N1和N3水平显著增加碱性磷酸酶(AKP)活性(P<0.05),N3水平显著降低多酚氧化酶(PPO)活性(P<0.05),氮添加对亮氨酸氨基肽酶(LAP)活性影响不显著,N3水平下显著增加N-乙酰-β-D氨基葡萄糖苷酶(NAG)活性(P<0.05)。相关分析表明,8种土壤酶活性均与土壤有机碳(SOC、NAG除外)和总磷(TP)显著相关,与土壤总氮(TN)不相关。研究区土壤酶活性C∶N∶P化学计量比为1∶1∶1.2,与全球生态系统的土壤酶活性C∶N∶P的比值1∶1∶1相偏离,表明该研究区土壤微生物生长受磷素限制。冗余分析(RDA)进一步揭示出土壤有机碳和土壤全磷含量是影响土壤酶活性的主要因子。  相似文献   
2.
基于叶气温差的生育中期冬小麦水分亏缺诊断研究   总被引:1,自引:1,他引:0  
为了获取叶片尺度基于叶气温差的冬小麦生育中期水分亏缺诊断阈值,分析了冬小麦叶气温差的典型日变化及其与土壤水分、空气温度及太阳辐射等因子的相互关系,揭示了冬小麦叶气温差对光合气体交换参数的影响,确定了冬小麦叶片水分利用效率较适宜的非气孔限制值及叶气温差范围。结果表明,冬小麦叶气温差在不同的土壤水分条件下表现出不同的日变化规律,随光量子通量增加而升高,随土壤水分、气温增加而降低;4、5和6月冬小麦叶片水分利用效率较适宜的非气孔限制值范围分别为0.7~1.3、1.1~2.0和0.9~1.5,叶气温差控制范围分别为-1.2~0.4、-1.5~-1和-1.25~-0.9℃。  相似文献   
3.
Extreme drought events can directly decrease productivity in perennial grasslands. However, for rhizomatous perennial grasses it remains unknown how drought events influence the belowground bud bank which determines future productivity. Ninety‐day‐long drought events imposed on Leymus chinensis, a rhizomatous perennial grass, caused a 41% decrease in the aboveground biomass and a 28% decrease in belowground biomass. Aboveground biomass decreased due to decrease in both the parent and the daughter shoot biomass. The decreases in daughter shoot biomass were due to reductions in both the shoot number and each individual shoot weight. Most importantly, drought decreased the bud bank density by 56%. In addition, drought induced a bud allocation change that decreased by 41% the proportion of buds that developed into shoots and a 41% increase in the buds that developed into rhizomes. Above results were supported by our field experiment with watering treatments. Thus, a 90‐day‐long summer drought event decreases not only current productivity but also future productivity, because the drought reduces the absolute bud number. However, plasticity in plant development does partly compensate for this reduction in bud number by increasing bud development into rhizomes, which increases the relative allocation of buds into future shoots, at the cost of a decrease in current shoots.  相似文献   
4.
The effect of phosphorus (P) and carbon (C) on methanogenesis was investigated in a low-P (130 mg P kg−1 soil) wetland within Everglades National Park. Soil was amended with C substrates (acetate, formate, butyrate, and glucose) with or without P, and CO2 and CH4 production was monitored. Production of CH4 increased with P addition although no effect on CO2 was observed. Methane production was stimulated by all C substrates except for butyrate. No effect of C on CO2 production was observed except for stimulation following glucose addition. Production of CH4 following formate addition was not affected by P, suggesting hydrogenotrophic methanogens may be substrate, not P, limited. Addition of P to all other C substrates heightened CH4 production and lowered the CO2–C:CH4–C ratio relative to the corresponding C only treatment, suggesting that P may have limited acetoclastic methanogens and fermentation.  相似文献   
5.
In urban design, only by continuous and dynamic research work from design to finally putting it into practice, can we made good control on city appearance. This article analyzes nowadays defects in our urban design from two aspects as the result establishment and validated control, and tries to conceive a feasibility plan to solve the problem.  相似文献   
6.
Soil functional microbial taxa and extracellular enzymes are involved in a variety of biogeochemical cycling processes. Although many studies have revealed the vertical change patterns of microbial communities along soil profile, the general understanding of the coupling changes in the functional gene abundances (FGAs) and extracellular enzyme activities (EEAs) in soil profiles is still limited, which hinders us from revealing soil ecosystem processes. Herein, we comparatively investigated the FGAs and EEAs in the diagnostic A, B, and C horizons of soil profiles obtained from two suborders of Isohumosols (Mollisols), Ustic and Udic Isohumosols, in Northeast China based on quantitative real-time polymerase chain reaction and standard fluorometric techniques, respectively. The distribution patterns of both FGAs and EEAs significantly distinguished by the two soil suborders and were also separated from A to C horizon. Additionally, the variations of EEAs and FGAs were greater in Udic Isohumosols compared to Ustic Isohumosols along soil profiles, and greater changes were observed in C horizon than in A horizon. Both FGAs and EEAs correspondently decreased along the soil profiles. However, when normalized by soil organic carbon, the specific EEAs significantly increased in deep soil horizons, suggesting that microorganisms will input more resources to the production of enzymes to ensure microbial nutrient requirements under resource scarcity. More importantly, we revealed that soil microbial nutrient demands were limited by carbon (C) and phosphorus (P), and the C and P limitations significantly increased along soil profiles with a greater C limitation observed in Ustic Isohumosols than in Udic Isohumosols. Overall, our findings provided solid evidence showing the links between FGAs, EEAs, and microbial nutrient limitations, which would be helpful for a better understanding of the ecosystem processes in soil profiles.  相似文献   
7.
In southern Jiangxi province of China, ‘Newhall’(Citrus sinensis Osbeck) navel orange presented a conspicuous symptom of boron (B) deficiency in mature leaves, whereas B deficiency symptoms were not manifested on ‘Skagg's Bonanza’(C. sinensis Osbeck) navel orange. In this study, changes in concentrations of B, calcium (Ca), potassium (K), magnesium (Mg), manganese (Mn), and zinc (Zn) were comparatively investigated in the structural parts of the fruit (rind and pulp) and leaves (old leaves from last season and spring-flush leaves from current year) of ‘Newhall’ and ‘Skagg's Bonanza’ navel orange during the growing season. Two peaks of B concentrations were observed in the rind of the two cultivars during fruitlet growth and fruit enlargement, respectively. Boron concentrations were relatively high in the rind during fruitlet growth, and then decreased in both rind and pulp, whereas, during middle and late fruit enlargement significant increases were found for B in both rind and pulp of the two cultivars. Boron concentrations in old leaves of ‘Newhall’ decreased progressively and remained relatively low, whereas that of ‘Skagg's Bonanza’ was relatively high and changed slightly as the season progresses. Both Ca and K concentrations were above the critical threshold values, while their dynamics were reverse to that of B in fruit and leaves during certain times. Old leaf Mg concentrations of samples at 140 days after full bloom from the two cultivars and spring-flush leaves from ‘Newhall’ were below the threshold limit for sufficiency. In addition, Mg in old leaves was much lower from ‘Newhall’ than from ‘Skagg's Bonanza’. Spring-flush leaf concentrations of Mn and Zn and Mn concentrations in old leaves from ‘Newhall’ were relatively lacking during middle and late season, which accelerated the occurrence of B deficiency symptoms on mature leaves of ‘Newhall.’  相似文献   
8.
为进一步探讨不套袋与套袋对苹果品质影响的机理,以8年生‘富士’苹果(‘天红2号’/‘M26’/八棱海棠)为试验材料,共设5个套袋密度处理(不套袋、套袋1/3的果实、套袋1/2的果实、套袋2/3的果实、套袋所有果实),所用果袋为小林果袋(双层纸袋,内红外棕),研究不同套袋密度对果实套袋前(6月19日)、套袋后2天(6月21日)、套袋中(8月22日和9月27日)、摘袋后2天(10月9日)和采收后1天(11月3日)苹果叶片光合特性的影响。结果表明,套袋不仅降低了苹果树冠层内的光照强度,而且显著降低了叶片的光合速率,而随着套袋密度的增加,苹果树冠层内的净光合速率显著降低,尤其是在8月和9月。5个处理的冠层光强、气孔导度、叶绿素含量、类胡萝卜素含量和叶片比重的变化与净光合速率的变化基本一致,说明果实套袋导致叶片光合性能下降。套袋苹果光合速率的降低是由气孔导度的降低引起的,这可能与光照强度降低有关;而在9月光合速率的降低还可能与高温弱光,套袋苹果叶片出现非气孔限制有关。  相似文献   
9.
AIM and METHODS: To observe the effects of glucose-free and Mg2+-free in the extracellular fluid on the changes of [Ca 2+]i in the cerebro-cortical neurons damaged by 1mmol/L glutamate using laser confocal scanning microscope. RESULTS: Both frequency and amplitude of neuronal calcium oscillation induced by glutamate were lowered in glucose-free and Mg2+-free buffers. The basic [Ca2+]i concentration was lowered in the former case , but it was elevated in the latter case. CONCLUSION: Mg2+-free aggravates [Ca2+]i overload induced by 1mmol/L glutamate ,under certain conditions the glucose-free might resist damage role of glutamate and Mg2+-free.  相似文献   
10.
日粮镁对肉仔鸡腿肌中活性氧产量的影响   总被引:1,自引:0,他引:1  
本试验目的是研究日粮镁水平对肉仔鸡腿肌中活性氧(reactive oxygen species , ROS)产量的影响。96只AA肉仔鸡随机分配到低镁日粮组和对照组,每组6个重复,每个重复8只鸡,分别喂以镁含量1 .2 g/kg或2 .4 g/kg的日粮。与对照组相比,低镁组肉仔鸡腿肌中谷胱甘肽(glutathione , GSH)的含量降低了27 %(P<0 .01) ,丙二醛(malondialdehyde, MDA)的含量提高了40 %(P<0 .01)。采食低镁日粮的肉仔鸡腿肌匀浆液的ROS信号峰的高度显著高于对照组(P<0 .01)。对照组腿肌镁的浓度(30 .27 mg/kg)显著高于低镁组腿肌镁的浓度(27 .40 mg/kg)。腿肌中铁、钙的含量在两组之间差异不显著(P>0 .05)。与对照组相比,低镁组腿肌线粒体复合酶Ⅰ、Ⅱ、Ⅲ、Ⅳ的活性分别提高了28 %、23 %(P<0 .01)、35 %(P<0 .01)和30 %,线粒体复合酶Ⅰ、Ⅱ、Ⅲ、Ⅳ的活性与ROS产量之间呈显著的负相关关系(P<0 .05)。除C18∶2的含量显著高于对照组外,其他多不饱和脂肪酸含量在两组之间没有差异。本试验结果表明低镁日粮实质性地提高肉仔鸡腿肌中ROS的产量,低镁日粮降低腿肌中镁的浓度,诱导了线粒体呼吸链酶活性升高,从而提高了ROS的产量。  相似文献   
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