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1.
高矿化度油田废水污染农田现状调查与评价   总被引:2,自引:0,他引:2  
江汉油田采油井在钻矿和采油时有少量高矿化度废水与石油洒落地面,导致土壤污染,造成农作物减产。对湖北省潜江县周矾农场不同污染程度的时地农田和水田污染现状及污染物在土壤中的迁移状况进行了调查研究。结果表明,污染农田土壤的主要污染物是氯化物、盐类,其次为石油和Cd。氯化物、盐类污染水田耕层含量底层,旱地农田则反之。受污染的土壤和下降。  相似文献   

2.
广西不同类型农田土壤重金属含量状况分析   总被引:6,自引:0,他引:6  
以《土壤环境质量标准》(GB15618—1995)的二级标准值作为判定依据,对广西水田、园地、旱地3类农田土壤的8种重金属含量超标情况进行统计分析。结果表明,3类农田土壤重金属含量超标率较高的元素是Cd、Hg、Ni,其次是As、Zn,而Cu、Pb、Cr较低;旱地土壤重金属超标率远高于水田和园地,水田又高于园地;在超标样品中,水田和园地以单项重金属超标为主,旱地以多项重金属复合超标为主。  相似文献   

3.
不同地区城郊用地土壤重金属含量特征的比较   总被引:9,自引:0,他引:9  
对京津唐、张家港和长株潭3个地区的露天菜地、设施菜地、水田和旱地进行的调查表明,城郊区大部分农田土壤重金属含量尚低于国家相关的土壤质量二级标准,但部分重金属含量超出了当地背景值,说明重金属在城郊土壤中有所积累。菜地土壤重金属含量总体上要高于水田和旱地,说明高强度利用投入会导致土壤重金属累积。对长株潭一个污染区的研究表明,发生污染的土壤很难再恢复利用。京津唐城郊区的土壤重金属含量的变异系数总体上高于张家港地区。  相似文献   

4.
土壤中持久性有机污染物往往与重金属共存形成混合污染,但过去的研究较少关注它们在土壤中的相互影响。本研究选择典型铜污染区农田,分析了铜不同污染程度的表层土壤中HCB、HCHs与DDTs等持久性有机氯农药的组分及含量。结果表明:DDTs在土壤中的残留量随着土壤铜污染程度的加剧而上升;土壤中铜抑止了DDT向DDE或DDD的转化,DDTs残留量相对较大。供试土壤中持久性有机氯农药含量与有机质之间的相关性分析表明,污染土壤中两者之间的相关性大于未污染土壤,说明铜促进了土壤中的DDTs和HCHs与土壤有机质结合,这可能是导致水田土壤中DDTs的平均含量显著高于旱地和林灌地土壤的原因之一。  相似文献   

5.
为了解长江中下游地区不同农田土地利用方式对中小型土壤动物群落的影响,在吴江市设置3组样地161采样点,共捕获中小型土壤动物20906只,隶属于5门11纲14目21类。其中,线虫纲为优势类群,弹尾目、蜱螨目、猛水蚤目、轮虫纲和寡毛纲为常见类群。农田土地利用方式对中小型土壤动物密度产生明显的影响,灌溉水田土壤动物密度分别是旱地与菜地的1.6倍以上,且差异显著,但3类土地利用方式的土壤动物类群总数无显著差异。灌溉水田土壤动物多样性H′指数分别是旱地与菜地的0.42和0.46倍,且差异显著,但旱地和菜地无显著差异。皆为旱作的旱地与菜地的中小型土壤动物群落间类群及其个体数量相似程度较高,而灌溉水田与旱地或灌溉水田与菜地间中小型土壤动物群落相似程度较低。因此,农田土地利用方式和具体措施对中小型土壤动物群落组成与结构特征有一定的影响。  相似文献   

6.
对长江上游典型农林复合生态系统N素收支平衡及其污染特征研究结果表明 ,农林复合生态系统旱地N素盈余相对较多 ,水田基本平衡 ,而林地有较大亏缺。N素收支平衡评价表明其旱地平衡合理 ,水田平衡略高 ,但整个农田N素已由 2 0世纪 6 0年代严重亏缺达到目前的较合理水平 ;大规模造林以及水保耕作措施对农田N素合理分配均产生重要影响。但化肥施用量剧增已导致农田气态N素释放量增加和水体非点源污染风险加大。  相似文献   

7.
  【目的】  研究中国农田土壤有机碳(SOC)密度时空变化特征及其主要驱动因素,为土壤肥力提升、固碳减排和粮食安全提供理论依据。  【方法】  基于1988至2019年农业农村部全国农田监测数据(1298个点位),分析水田、旱地和水旱轮作下SOC密度时空变化特征,利用方程拟合和提升回归树模型探究气候、施肥和土壤属性对SOC密度变化的影响。  【结果】  1988―2019年全国农田表层(0―20 cm) SOC密度平均为35.13 t/hm2,不同土地利用方式下表现为水田>水旱轮作>旱地,水田和水旱轮作较旱地分别高53.2%和24.9%。SOC密度随监测时间的延长呈先降低后增加的趋势,其中水田、旱地和水旱轮作分别在2000、1998和2004年之前呈下降趋势,之后呈上升趋势。不同利用方式水田SOC密度随监测时间的变化趋势在东北地区逐渐增加,华南地区逐渐降低,西南和长江中游地区则先降低后增加,转折点分别在1995和2002年;旱地SOC密度的变化趋势在西北、华北和华南地区逐渐增加,东北、长江中游和长江下游地区先降低后增加,转折点分别在2008、2004和2004年;水旱轮作下SOC密度的变化趋势在长江中游、下游地区先降低后增加,转折点分别在2001和2013年,在西南地区呈先上升后微弱下降趋势,转折点在2012年。提升回归树结果显示,水田SOC密度后期上升阶段最重要的解释变量在西南、东北和华南区是年均温,在长江中游和下游分别是钾肥用量和土壤速效钾含量;旱地SOC密度后期上升阶段最重要的解释变量在东北为年均温,华北和华南为年均降雨,长江中游、下游区为氮肥,西北为有效磷;水旱轮作SOC密度后期上升阶段最重要的解释变量,在西南、长江中、下游地区分别为年均降雨、有效磷、氮肥。  【结论】  1988―2019年全国农田表层SOC密度除华南水田外,整体上呈先降低后增加,水田、旱地和水旱轮作土壤的转折点分别在2000、1998和2004年,旱地SOC密度的提升快于水田和水旱轮作。影响表土SOC密度提升的主要因素,东北和西南地区水田和旱地为年均温,长江中、下游地区水田为钾肥投入和土壤速效钾含量,旱地为氮肥投入;华南地区水田为年均温,旱地为年降雨量;华北和西北地区旱地为年均降雨和土壤有效磷含量;西南和长江中游水旱轮作区为土壤有效磷含量,而长江下游为土壤速效钾含量。  相似文献   

8.
通过对299个国家级耕地土壤监测点20余年数据的统计分析,评价了我国农田表土有机碳含量变化情况和固碳潜力。结果表明,全国约80%试验点有机碳年平均相对增长率(Average relative annual increment,ARAI)在-1.5%~7.5%。中国农田表土有机碳含量整体呈上升趋势。东北、华北等6个地理区域分析得出,华北、华东、西南农田表土有机碳含量显著增加;华东地区有机碳增加的农田面积占全国农田比例最大,东北最小。旱地和水田有机碳含量增加显著;水田有机碳增加的试验点所占比例大于旱地;对ARAI与初始有机碳含量进行相关分析得出,我国旱地和水田有机碳潜在储存能力估计值分别为17.2和27.7g·kg^-1。农田土壤类型中水稻土和褐土有机碳含量增加显著;黑土有机碳含量下降样本所占比例最高。对我国各典型种植制度分析得出,双季稻、麦-稻、麦-玉、单季小麦种植制度下农田有机碳有了显著增加;麦玉轮作较其他种植制度的农田有机碳年平均相对增长率高。  相似文献   

9.
《土壤通报》2017,(6):1371-1378
选取北方旱地和南方水田两种不同农业利用方式的土壤为研究对象,分别在旱地和水田设置了无秸秆还田(NR)、秸秆直接还田(SR)和秸秆转化为生物质炭还田(BR)三种处理,在作物收获后,采集对应处理的土壤通过室内培养对比研究了秸秆直接还田和生物质炭还田下土壤有机碳的稳定性及温室气体排放潜力的变化。研究结果表明:秸秆直接还田与生物质炭还田均可显著增加土壤有机碳和全氮含量,但不同处理下的土壤有机碳稳定性存在显著差异。从有机碳的矿化量和矿化率来看,生物质炭还田处理与秸秆直接还田处理相比,分别降低旱地、水田土壤矿化量的36.0%、21.5%和矿化率的47.0%、34.7%;水田与旱地相比,表观上水田矿化显著高于旱地土壤,但从土壤有机碳矿化率来看,水田土壤各处理均显著低于旱地土壤相同处理的19.0%、26.2%和9.2%。不同处理显著影响土壤N2O的释放,无论旱地还是水田土壤,与秸秆直接还田相比,施用生物质炭均显著降低土壤N2O的释放;进一步分析土壤产生的综合温室效应(GWP)表明,生物质炭还田下的GWP比秸秆直接还田显著降低39.6%和28.5%。因此,秸秆转化为生物质炭后还田可作为一项重要的农田土壤固碳减排措施进行秸秆利用。  相似文献   

10.
近30年中国主要农田土壤pH时空演变及其驱动因素   总被引:5,自引:0,他引:5  
  【目的】  研究中国农田土壤pH时空变化特征及其主要的驱动因素,为土壤酸化阻控、土壤质量提升和土地可持续利用提供理论基础。  【方法】  基于农业农村部布置在全国主要农田区域的耕地质量监测点数据 (950个),分析旱地、水旱轮作、水田等不同土地利用类型下土壤pH时空变化特征,并利用提升回归树模型探究影响土壤pH变化的主要驱动因素。  【结果】  就全国而言,土壤pH及其变异系数表现为旱地 (6.74 ± 1.19和17.63%) > 水旱轮作 (6.54 ± 0.93和14.26%) > 水田 (5.80 ± 0.81和13.95%),其中华南地区农田土壤pH表现为水田 (5.74 ± 0.79) 大于水旱轮作 (5.47 ± 0.56) 和旱地 (5.45 ± 0.91)。从监测初期 (Ⅰ阶段,1988—2000) 到监测中期 (Ⅱ阶段,2001—2010),旱地和水田土壤pH整体上随时间呈降低趋势,下降速率分别为0.065和0.054/年 (P < 0.01),而水旱轮作土壤pH无显著变化;从Ⅱ到Ⅲ阶段 (2001—2018),旱地和水旱轮作土壤pH整体上随时间呈上升趋势,上升速率分别为0.022和0.016/年 (P < 0.05),而水田土壤pH无显著变化。东北、华北、西南、长江中下游地区的旱地土壤pH随时间均呈线性下降趋势 (P < 0.05),而华南地区从Ⅱ到Ⅲ阶段呈线性上升趋势 (P < 0.01);西南、长江中游和华南地区水田土壤pH从Ⅰ到Ⅲ阶段呈线性下降趋势 (P < 0.01),而东北、西南和长江下游地区pH从Ⅱ到Ⅲ阶段呈上升趋势 (P < 0.01);西南地区水旱轮作土壤pH从Ⅰ到Ⅲ阶段呈线性下降趋势 (P < 0.01),而华北、长江下游和华南地区pH从Ⅱ到Ⅲ阶段呈上升趋势 (P < 0.05)。通过Pearson和提升回归树分析发现,年均降雨量是造成土壤pH空间尺度上差异的最主要因素,其次是土壤质地、容重和有机质含量。此外,在旱地土壤上长期的氮肥投入和在水田和水旱轮作土壤上钾肥的投入对pH变化的影响较大。  【结论】  整体而言,我国旱地和水田土壤pH从监测初期到中期呈快速下降趋势,而旱地和水旱轮作土壤pH从监测中期到2018年呈缓慢增加趋势。东北地区的旱地土壤pH呈持续下降趋势,需要引起重视。氮肥在旱地和钾肥在水田上的施用导致土壤pH的降低,今后应优化水肥运筹,通过改善土壤容重和有机质进而有效调控土壤pH。  相似文献   

11.
【目的】以富士(Fuji)、 秦冠(Qinguan)嫁接在平邑甜茶(Malus hupehensis Rehd.)上的当年生盆栽苗为试验材料,采用砂培方法,研究了缺氮胁迫和干旱对富士和秦冠生长情况、 光合参数、 植株各部位氮磷钾含量及氮素利用效率的影响,分析比较了低氮干旱条件下富士和秦冠生长及氮素利用的差异,以期为果树生产高效肥水利用提供理论指导。【方法】试验共设四个处理: 正常氮正常水(ZZ)、 低氮正常水(DZ)、 正常氮干旱(ZG)、 低氮干旱(DG)。氮素和水分均设置两个水平,分别为正常氮(6 mmol/L NO-3-N)、 低氮(0.3 mmol/LNO-3-N)、 正常供水(保持盆中砂子相对含水量为饱和含水量的80%~85%)、 干旱处理(保持盆中砂子相对含水量为饱和含水量的60%~65%)。【结果】富士和秦冠的生物量(茎和叶)、 株高茎粗等生长指标以及光合速率、 气孔导度、 蒸腾速率均为正常氮正常水(ZZ)>低氮正常水(DZ)>正常氮干旱(ZG)>低氮干旱(DG),并且相对应处理下秦冠的以上指标均高于富士;正常供水下,缺氮处理使富士、 秦冠的根冠比比正常氮处理均有所增加,富士提高了2.05%,秦冠提高了22.40%。富士和秦冠的氮、 磷、 钾含量均表现出正常氮正常水(ZZ)>低氮正常水(DZ)>正常氮干旱(ZG)>低氮干旱(DG); 氮、 钾元素含量在植株各部位的分布顺序依次是叶>根>茎,磷元素则是根>叶>茎;光合氮素利用效率(PNUE)和氮素利用效率表现为秦冠处理之间差异极显著,富士处理之间差异不显著;秦冠的PNUE和NUE明显高于富士,在低氮正常水(DZ)处理下,秦冠氮肥利用率比富士高42.07%,在低氮干旱(DG)处理下高64.14%;低氮胁迫下富士和秦冠的NUE显著提高,并且秦冠提高的幅度高于富士。【结论】施用氮肥能够显著提高富士与秦冠的干物质量,同等水肥条件下,秦冠生长优于富士;水分亏缺会减少叶片对氮的吸收,干旱条件下适度增施氮肥,可提高果树的抗旱能力;低氮干旱胁迫下秦冠的生长指标、 光合指标及氮素利用效率指标均优于富士,表现出较强的抗低氮干旱胁迫的能力。  相似文献   

12.
Laser-induced breakdown spectroscopy (LIBS) is a new technique for the analysis of plant material. This study investigates the application of LIBS to pasture-based plant samples. The LIBS measurements were obtained from pelletized pasture samples (100 samples) that had been also analyzed by inductively coupled plasma–optical emission spectroscopy (ICP-OES) following microwave digestion for calibration and comparison purposes. Comparisons for elements sodium (Na), potassium (K), magnesium (Mg), calcium (Ca), manganese (Mn), iron (Fe), copper (Cu), zinc (Zn), boron (B), phosphorus (P), and sulfur (S) showed that LIBS could be used for almost all the standard profile total elements with concentrations down to low mg/kg levels (observed error of Na: 0.024 percent, K: 0.18 percent, Mg: 0.016 percent, Ca: 0.073 percent, P: 0.017 percent, Mn: 31 mg/kg, Fe: 150 mg/kg, Zn: 6.6 mg/kg, and B: 1.1 mg/kg). Elemental analysis at less than mg/kg levels was not possible using LIBS. The elements S and Cu were particularly difficult to analyze with reliability using LIBS at the concentration levels found in the plant samples. Replacing microwave digestion and subsequent ICP analysis with a direct analysis of dried plant samples using LIBS has the potential to improve the productivity and reduce the cost of testing.  相似文献   

13.
正The Center for Agricultural Resources Research(CARR),the Institute of Genetics and Developmental Biology(IGDB),Chinese Academy of Sciences,invites applicants for several research group leader positions.CARR is one of the research organizations in Chinese Academy of Sciences(CAS).We seek nominations and applications from individuals who have expertise and a record of accomplishment in research areas related to ecology,agro-hydrology,  相似文献   

14.
The responses of tallgrass prairie plant communities and ecosystem processes to fire and grazing are well characterized. However, responses of invertebrate consumer groups, and particularly soil-dwelling organisms, to these disturbances are not well known. At Konza Prairie Biological Station, we sampled soil macroinvertebrates in 1994 and 1999 as part of a long-term experiment designed to examine the effects and interactions of annual fire, mowing, and fertilization (N and P) on prairie soil communities and processes. For nearly all taxa, in both years, responses were characterized by significant treatment interactions, but some general patterns were evident. Introduced European earthworms (Aporrectodea spp. and Octolasion spp.) were most abundant in plots where fire was excluded, and the proportion of the total earthworm community consisting of introduced earthworms was greater in unburned, unmowed, and fertilized plots. Nymphs of two Cicada genera were collected (Cicadetta spp. and Tibicen spp.). Cicadetta nymphs were more abundant in burned plots, but mowing reduced their abundance. Tibicen nymphs were collected almost exclusively from unburned plots. Treatment effects on herbivorous beetle larvae (Scarabaeidae, Elateridae, and Curculionidae) were variable, but nutrient additions (N or P) usually resulted in greater densities, whereas mowing usually resulted in lower densities. Our results suggest that departures from historical disturbance regimes (i.e. frequent fire and grazing) may render soils more susceptible to increased numbers of European earthworms, and that interactions between fire, aboveground biomass removal, and vegetation responses affect the structure and composition of invertebrate communities in tallgrass prairie soils.  相似文献   

15.
Abstract

A 3-year study was carried out to investigate quality parameters in 14 tree fruit and berry species grown in southern Norway. The species were blueberry, apple, aronia, sour cherry, sweet cherry, red raspberry, strawberry, blackcurrant, gooseberry, red currant and elderberry, harvested along with wild bilberry, cloudberry and lingonberry. Significant differences between species were identified for all quality parameters. The coefficient of variation between species was lowest for pH (12.5%), dry matter (18.9%) and soluble solids (25.3%), followed by titratable acids (59.3%), total phenolics (83.8%), antioxidant capacity FRAP (85.7%) and antiradical power by the DPPH-assay (97.8%), total monomeric anthocyanins (132%) and ascorbic acid (137%). Average coefficient of variation within species were lower and ranged from 4 (pH) to 62% (ascorbic acid). Only the FRAP values were significantly affected by harvesting year with lower levels in 2004 than in 2005 and 2006. There were significant interactions between species and harvesting year for dry matter, soluble solids, pH, ascorbic acid and FRAP. The results indicate generic ranges in composition within species independent upon growing location and climate, and the composition of the tree fruits and berries is not likely to deviate from these ranges. It is concluded that desirable composition of tree fruits and berries and their products should primarily be achieved by selection among species rather than searching fors broadened variation within individual species.  相似文献   

16.
Potassium (K) fixation and release in soil are important factors in the long-term sustainability of a cropping system. Changes in K concentration and characteristics of K fixation and release in rhizosphere and nonrhizosphere soils in the rapeseed (Brassica napus L.)–rice (Oryza sativa L.) rotation were investigated using a rhizobox system. The concentrations of different forms of K in both rhizosphere and nonrhizosphere soils decreased with plants compared to without plants, regardless of K fertilizer application. Potassium uptake by crops mainly came from the rhizosphere soil. In the treatment without K fertilizer (–K), the main form of K supplied by the soil to the crops was 1.0 mol L?1 nitric acid (HNO3) nonextractable K, followed by nonexchangeable K, and then exchangeable K. In the treatment with K fertilizer (+K), the main K forms supplied by the soil to the crops were exchangeable K and nonexchangeable K. The amount and rate of K fixation after one cycle of the rapeseed–rice rotation was greater in rhizosphere soil than in nonrhizosphere soil. The amount and rate of K fixation of soil in the +K treatment were significantly less than in the –K treatment. The cumulative amounts of K released with 1.0 mol L?1 ammonium acetate (NH4OAc) and 1.0 mol L?1 HNO3 extraction increased with the increasing numbers of extractions, but the K-releasing power of soil by successive extraction decreased gradually and finally became almost constant. The release of K was less in rhizosphere soil than in nonrhizosphere soil. The release of K in the +K treatment was similar to that in the –K treatment in rhizosphere soil, but the K release in nonrhizosphere soil was greater with the +K than the –K treatment. Overall, the information obtained in this study will be helpful in formulating more precise K fertilizer recommendations for certain soils.  相似文献   

17.
Biologically enhanced dissolution offers a method to speed removal of chlorinated solvent dense non-aqueous-phase liquid (DNAPL) sources such as tetrachloroethene (PCE) and trichoroethene (TCE) from aquifers. Bioremediation is accomplished by adding an electron donor to the source zone where fermentation to intermediates leading to acetic acid and hydrogen results. The hydrogen and possibly acetic acid are used by dehalogenating bacteria to convert PCE and TCE to ethene and hydrochloric acid. Reductive dehalogenation is thus an acid forming process, and sufficient alkalinity must be present to maintain a near neutral pH. The bicarbonate alkalinity required to maintain pH above 6.5 is a function of the electron donor: 800 mg/L of bicarbonate alkalinity is sufficient to achieve about 1.2 mM TCE dechlorination with glucose, 1.7 mM with lactate, and a much higher 3.3 mM with formate. Laboratory studies indicate that in mixed culture, formate can be used as an electron donor for complete conversion to ethene, contrary to pure cultures studies indicating it cannot. Various strategies can be used to add electron donor to an aquifer for DNAPL dehalogenation while minimizing pH problems and excessive electron donor usage, including use of injection-extraction wells, dual recirculation wells, and nested injection-extraction wells.  相似文献   

18.
Staff members of the Department of Botany of Palacký University in Olomouc and Gene Bank Department – Workplace Olomouc, Research Institute of Crop Production in Prague, Czech Republic, conducted an expedition in seven European countries (Austria, Czech Republic, France, Germany, Italy, the Netherlands, Switzerland) in August/September 1999 to collect wild Lactuca spp. germplasm and study its geographic distribution, ecology and biodiversity. During the mission, more than 600 locations were visited resulting in the collection of 602 seed samples (accessions) of wild Lactuca species and 13 seed samples of related genera (Chondrilla and Mycelis). Lactuca serriola f. serriola, L. serriola f. integrifolia, L. saligna and L. viminea subsp. chondrilliflora were prevalent in southern Europe (Italy, France), however, only L. serriola was common in central and western Europe (Austria, Czech Republic, Germany, Netherlands, Switzerland). The greatest diversity of Lactuca species was found in France, where also the most seed samples (165) were collected. The most characteristic habitats with a high density of Lactuca spp. populations were observed along roads and highways, grassy ditches, ruderal communities, and dust-heaps. Natural infections by powdery mildew (Erysiphe cichoracearum) and downy mildew (Bremia lactucae) on some wild Lactuca spp. were observed. Recent observations concerning the geographic distribution, population structure, habitats, and natural occurrence of diseases of Lactuca spp. are discussed. This assemblage of genetic resources of Lactuca spp. can serve as the basis of future studies of species diversification, spatial population structure, plant microevolution, domestication processes, and genetic variability of host-parasite interactions.  相似文献   

19.
Inoculation of wheat seedlings with the plant growth-promoting bacterium Azospirillum brasilense Cd was immobilized in alginate microbeads and, without applying any stress, significantly increased the quantity of several photosynthetic pigments, such as chlorophyll a, chlorophyll b, and the auxiliary photoprotective pigments violaxanthin, zeaxanthin, antheroxanthin, lutein, neoxanthin, and β-carotene. This resulted in greener plants with no apparent visible stress. After monitoring the quantity of photosynthetic pigments for 4 weeks, we observed that inoculated plants had higher quantities of pigments in shoot and stem. The greatest difference in the quantity of all pigments between inoculated and noninoculated plants occurred in the first week of growth. Regardless of treatment, the quantity of pigments in stems was three to four times less than the quantity of these pigments in shoots. Application of Azospirillum, either as liquid inoculant or as alginate microbeads, did not alter the positive effect of the bacteria on pigment production or the positive response of the plants towards A. brasilense Cd inoculation.  相似文献   

20.
Three slow-growing legume trees used for desert reforestation and urban gardening in the Sonoran Desert of Northwestern Mexico and the Southwestern USA were evaluated whether their growth can be promoted by inoculation with plant growth-promoting bacteria (Azospirillum brasilense and Bacillus pumilus), unidentified arbuscular mycorrhizal (AM) fungi (mainly Glomus sp.), and supplementation with common compost under regular screenhouse cultivation common to these trees in nurseries. Mesquite amargo (Prosopis articulata) and yellow palo verde (Parkinsonia microphylla) had different positive responses to several of the parameters tested while blue palo verde (Parkinsonia florida) did not respond. Survival of all tree species was over 80% and survival of mesquite was almost 100% after 10 months of cultivation. Inoculation with growth-promoting microorganisms induced significant effects on the leaf gas exchange of these trees, measured as transpiration and diffusive resistance, when these trees were cultivated without water restrictions.  相似文献   

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