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1.
Current challenges to global food security require sustainable intensification of agriculture through initiatives that include more efficient use of nitrogen (N), increased protein self‐sufficiency through homegrown crops, and reduced N losses to the environment. Such challenges were addressed in a continental‐scale field experiment conducted over 3 years, in which the amount of total nitrogen yield (Ntot) and the gain of N yield in mixtures as compared to grass monocultures (Ngainmix) was quantified from four‐species grass–legume stands with greatly varying legume proportions. Stands consisted of monocultures and mixtures of two N2‐fixing legumes and two nonfixing grasses. The amount of Ntot of mixtures was significantly greater (P ≤ 0.05) than that of grass monocultures at the majority of evaluated sites in all 3 years. Ntot and thus Ngainmix increased with increasing legume proportion up to one‐third of legumes. With higher legume percentages, Ntot and Ngainmix did not continue to increase. Thus, across sites and years, mixtures with one‐third proportion of legumes attained ~95% of the maximum Ntot acquired by any stand and had 57% higher Ntot than grass monocultures. Realized legume proportion in stands and the relative N gain in mixture (Ngainmix/Ntot in mixture) were most severely impaired by minimum site temperature (R = 0.70, P = 0.003 for legume proportion; R = 0.64, P = 0.010 for Ngainmix/Ntot in mixture). Nevertheless, the relative N gain in mixture was not correlated to site productivity (P = 0.500), suggesting that, within climatic restrictions, balanced grass–legume mixtures can benefit from comparable relative gains in N yield across largely differing productivity levels. We conclude that the use of grass–legume mixtures can substantially contribute to resource‐efficient agricultural grassland systems over a wide range of productivity levels, implying important savings in N fertilizers and thus greenhouse gas emissions and a considerable potential for climate change mitigation.  相似文献   
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The utilization of some amino acids, added at 1 mM and 10 mM concentrations, as the sole combined nitrogen sources by Frankia sp. strain CpI1, has been investigated. Glutamine, like NH 4 + , provided rapid growth without N2 fixation. Histidine at 1 mM yielded poor N2-fixing activity but better cell growth than N2. Aspartate, glutamate, alanine, proline, each at 1 mM concentration, supported similar levels of N2 fixation and growth. Growth on 10 mM glutamate, proline, or histidine resulted in poor N2-fixing activity and poor cell growth. Cells grown on 10 mM alanine had about half the N2-fixing activity of cells grown on N2 but growth was good. Aspartate at 10 mM concentration, however, stimulated N2-fixing activity dramatically and promoted faster growth. Enzyme analysis suggested that asparate is catabolized by glutamate-oxaloacetate transaminase (GOT), since GOT specific activity was induced, and aspartase activity was not detected, in cells grown on aspartate as the sole combined nitrogen source. Thinlayer chromatography (TLC) of metabolites extracted from N2-grown cells fed with [14C]-aspartate showed that label was rapidly accumulated mainly on aspartate and/or glutamate, depending on the cells' physiological state, without detectable labeling on fumarate or oxaloacetate (OAA). These findings provide evidence that aspartate is catabolized by GOT to OAA which, in turn, is rapidly converted to -ketoglutarate through the TCA cycle and then to glutamate by GOT or by glutamate synthase (GOGAT). The stimulation of N2 fixation and growth by aspartate is probably caused by an increased intracellular glutamate pool.  相似文献   
4.
Sugarcane cultivation supports Brazil as one of the largest world sugar and ethanol producer. In order to understand the impact of changing sugarcane harvest from manual to mechanized harvest, we studied the effect of machinery traffic on soil and consequently soil compaction upon soil microbial communities involved in nitrogen cycling. The impact of sugarcane harvest was dependent on soil depth and texture. At deeper soil layers, mechanized harvesting increases the abundance of nitrogen fixers and denitrifying communities (specifically nosZ clade I and II) while manual harvesting increases the abundance of ammonia oxidizers (specifically AOA) and increases denitrifying communities (nosZ clade I and II) on top and at intermediate depth. The effect of change on the harvest system is more evident on sandy soil than on clay soil, where soil indicators of compaction (bulk density and penetration resistance) were negatively correlated with soil microorganisms associated with the nitrogen cycle. Our results point to connections between soil compaction and N transformations in sugarcane fields, besides naming biological variables to be used as proxies for alterations in soil structure.  相似文献   
5.
应用CITYGREEN模型评估深圳市绿地净化空气与固碳释氧效益   总被引:13,自引:1,他引:12  
基于深圳市1990、1995、2000、2005年4a解译、分类的遥感影像,以ARCVIEW软件为平台,利用CITYGREEN模型中的净化空气和固碳释氧模块,计算深圳市1990、1995、2000、2005年4a的各景观生态功能区绿地系统的生态服务价值.研究表明:在净化空气方面,四年的生态服务价值依次为2039.42万元、3325.79万元、2025.2万元、2980.61万元,生态敏感型支持功能亚区的生态服务价值最高,依次为214.83万元、167.55万元、217.57万元、174.19万元,;在固碳释氧方面,4a的生态服务价值依次为446916万元、454994万元、447135万元、407771万元,生态协调区中的西部沿海农工协调亚区的生态服务价值最低,依次为556.85万元、951.59万元、535.21万元、690.53万元.反应出绿地系统是城市中重要的生态系统,具有显著的生态服务价值.深圳市各景观生态功能区绿地的生态服务价值的不平衡性与城市化进程相关.  相似文献   
6.
The paths of Colorado beetles (Leptinotarsa decemlineata Say)in a featureless environment are circular. This behavior is explained by an internal asymmetry. To stabilize the path, the fixation reaction or the optomotor response must work against this asymmetry. The turning behavior was examined in stationary patterns of vertical stripes different at spatial wavelengths (). The internal asymmetry was tested in a horizontally striped pattern. A stable fixation reaction was found only for 120 °. The results suggest that larger intrinsic turning tendencies shifts the stable point of the fixation reaction. The same vertically striped patterns were rotated to examine the following reaction of the beetle. It is concluded that the fixation component of the response of these insects, in particular, does not differ in the two situations.  相似文献   
7.
The measurement of N2 fixation by legumes is necessary for gaining an understanding of their contributions to the N economies of agricultural and forestry systems and for their management in those systems. We report research to determine whether N2 fixation of four of the commonly-grown ureide-producing legumes, soybean (Glycine max), cowpea (Vigna unguiculata), mungbean (V. radiata) and black gram (V. mungo), could be quantified from a single sampling and N-solute analysis of xylem sap. Data were derived from a previously-published experiment involving six genotypes of soybean at five field sites and from a second, irrigated experiment in which two genotypes of soybean, and one each of cowpea, mungbean and black gram were assessed in low- and high-nitrate soils for nodulation, yields of shoot and grain dry matter and N, and N2 fixation using xylem solute (ureide) and 15N methods. Regression analysis of the published soybean data set indicated that the early pod-fill (R3.5 and R4) samplings for xylem sap gave estimates of percentage of plant N derived from N2 fixation (%Ndfa) which agreed well with %Ndfa for the entire growing season obtained from 15N analysis of the shoots at R6-7. There was a marginal benefit in combining the R3.5 and R4 samplings and using the average of the two, with regression coefficients (r 2) increasing from 0.86 (R3.5 or R4 alone) to 0.92 (average of R3.5+R4). There was no additional benefit in combining R3, R3.5 and R4. In the second experiment, agreement between 15N-determined %Ndfa and either measured (R4 sampling) or calculated ureide-determined %Ndfa (R3.5 sampling) was also good (r 2 of 0.73 (R4) and 0.79 (R3.5)). We conclude that seasonal %Ndfa can be accurately estimated using the xylem solute (ureide) method from a single sampling of xylem sap during early pod-fill (R3.5) and that this simplification of the protocol of the technique may encourage expanded use.  相似文献   
8.
目的:探讨Lenke II型青少年特发性脊柱侧凸患者内固定冠状面失衡相关因素分析。方法:选取我院骨科已确诊为Lenke II青少年特发性脊柱侧凸患者60例,根据术前脊柱柔韧度、risser分级水平、支具支持治疗、椎体融合数、内固定系统选择等多方面影响因素对内固定后冠状面失平衡情况发生率进行分析评估,其数据结果应用统计学软件SPSS 17.0处理。结果:对术后患者评估比较,多种因素均可影响内固定后冠状面失平衡情况发生,表现为:脊柱柔韧度低、risser分级高、长时间支具佩戴、延长融合椎体范围、先进钉棒系统方案选择均可明显提高术后疗效,降低内固定后冠状面失平衡情况发生率(P0.05),其结果均有统计学意义。结论:临床上通过对患者脊柱柔韧度、risser分级情况评估来判断脊柱成熟度,并在术后积极支具辅助治疗,选用钉棒固定系统并延长融合椎体节段,可明显降低内固定后冠状面失平衡情况发生,提高远期随访疗效。  相似文献   
9.
目的:探讨内固定与植骨融合术治疗骨质疏松性椎体骨折的临床疗效。方法:回顾性分析我院2011年7月至2012年7月收治的80例骨质疏松性椎体骨折患者的临床资料。根据固定方式,将37例采用PMMA骨水泥强化椎弓根内固定的患者作为研究组,其余43例单纯应用椎弓根内固定的患者作为对照组。收集两组患者的手术时间、术中出血量、术后疼痛程度、愈合时间等临床资料。评价患者手术前后侧位X线片椎体高度和内固定效果。术后随访24个月。结果:两组患者的手术时间、术中出血量、住院时间及骨折愈合时间等无显著性差异(P0.05);研究组患者术后疼痛程度、椎体高度、内固定物松动及断裂情况等显著优于对照组,差异具有统计学意义(P0.01)。结论:骨水泥强化椎弓根螺钉治疗骨质疏松性椎体骨折具有良好的临床效果,值得推广应用。  相似文献   
10.
Foliar chlorosis of soybean (Glycine max [L.] Merr.) resulting from nodulation by rhizobitoxine-producing (RT+) strains of Bradyrhizobium japonicum is commonly less severe in the field than under greenhouse conditions. Differences in nutritional conditions between the field and greenhouse may contribute to this phenomenon. In particular, field-grown plants obtain some N from soil sources, whereas in the greenhouse soybean is often grown in low-N rooting media to emphasize symbiotic responses. Therefore, we examined the effect of NO3 - on the expression of RT-induced symptoms. Soybean plants inoculated with RT+ bradyrhizobia were grown for 42 days in horticultural vermiculite receiving nutrient solution amended with 0.0, 2.5, or 7.5 mM KNO3. Foliar chlorosis decreased with increasing NO3 - application whereas nodule mass per plant was generally increased by NO3 - application. Total amounts of nodular RT remained constant or increased with NO3 - application, but nodular concentrations of RT decreased. Chlorosis severity was negatively correlated with shoot dry weight, chlorophyll concentration, and total shoot N content. It was concluded that application of NO3 - can reduce the negative effects of RT production on the host plant. This suggests that any NO3 - present in field soils may serve to limit chlorosis development in soybeans.Abbreviations RT rhizobitoxine - RT+ rhizobitoxine-producing - Lb leghemoglobin Published as Miscellaneous Paper No. 1429 of the Delaware Agricultural Experiment Station.  相似文献   
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