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1.
太行山前平原农田生态系统氮素循环与平衡研究   总被引:17,自引:0,他引:17  
在中国科学院栾城生态农业试验站1公顷小麦玉米轮作农田,运用乙炔抑制原状土柱培育法、微气象学法和陶土头多孔杯水量平衡法分别定量测定了氮素硝化反硝化损失、氨挥发、NO3--N淋溶损失等氮素循环转化途径。研究结果表明,每年因氨挥发而造成的肥料氮损失量为N.60.kg/hm2,占施入肥料氮的15%;NO3--N淋溶损失量为N.68~4.kg/hm2,占肥料施用量的1.4%2~0.3%;每年因硝化反硝化过程造成的肥料损失量为N.2.021~0.49.kg/hm2,占肥料施入量的0.51%1~.37%。氨挥发、NO3--N淋溶和硝化反硝化损失主要发生在施肥灌溉/降雨之后,玉米季肥料损失明显高于小麦生长季节。氨挥发和NO3--N淋溶损失是本区域农田氮素损失的主要途径,是氮肥利用率低的重要原因。在当地农民所采用的常规农业管理措施下,小麦玉米轮作农田氮素平衡处于盈余状态,小麦季盈余N+115.5~+124.5.kg/hm2,明显高于玉米季;由于玉米季氮素损失严重,氮素盈余较少,甚至出现亏缺,玉米季氮素平衡状况为-54.6~+14.3.kg/hm2。  相似文献   

2.
川中丘陵区典型小流域农田生态系统氮素收支探析   总被引:15,自引:0,他引:15       下载免费PDF全文
对川中丘陵区典型小流域农田生态系统N素收支分析表明,紫色土丘陵区农田N肥施用量较大,旱地、水田N肥年施用量分别为363.5kg/hm2和161.8kg/hm2,化肥N占小流域农田N素投入的76.65%。除作物收获外,小流域农田生态系统N素年损失量为129.67kg/hm2,且以气态损失为主,旱地农田通过径流、淋洗和泥沙等途径损失的N素年均44.34kg/hm2。小流域农田生态系统N素年均盈余66.8kg/hm2,农田N素盈余加剧了N素损失,并已造成小流域农业非点源N污染。  相似文献   

3.
3种蔬菜种植模式下土壤氮素平衡的比较研究   总被引:2,自引:1,他引:2  
氮素利用效率用于反映当季作物从肥料中同化的氮量,这在农业生产实践中至关重要。不合理的氮肥施用将导致土壤板结、地下水污染以及作物品质下降等一系列问题,因此近年来备受关注。本文以中国农业大学曲周试验站日光温室有机蔬菜生产长期定位试验为基础,借鉴前人对于氮素平衡的研究方法,即氮盈余=氮输入(肥料氮+移栽苗带入氮+灌水带入氮)氮输出(收获物带出氮),研究2011年春季有机、无公害和常规3种温室茄子种植模式下土壤氮素表观平衡的盈余变化。结果表明:有机、无公害、常规3种种植模式下,土壤耕层0~20 cm土壤全氮含量差异极显著,其中有机生产模式最高,为2.6 g·kg 1,无公害生产模式为1.7 g·kg 1,常规生产模式最低,为1.3 g·kg 1;3种种植模式下氮素的总输入分别为1 150 kg·hm 2、1 182 kg·hm 2、1 433kg·hm 2,总输出分别为178 kg·hm 2、135 kg·hm 2、116 kg·hm 2,茄子单季产量分别为93 458 kg·hm 2、93 320kg·hm 2、90 209 kg·hm 2,最终氮素盈余量分别为971 kg·hm 2、1 046 kg·hm 2、1 317 kg·hm 2。有机种植模式与无公害和常规种植模式相比,茄子单季产量分别提高0.1%和3.6%,氮素盈余分别降低7.2%、26.3%。综上,有机种植模式对耕层土壤的氮素累积贡献最大,且较无公害和常规种植模式相对高产。有机模式土壤氮盈余较少,表现出较高的氮素利用效率。本研究结果可为选择高产、健康的种植模式提供参考依据。  相似文献   

4.
三峡重庆库区柑橘园氮素平衡状况研究   总被引:7,自引:1,他引:7  
以三峡重庆库区柑橘种植农户调研资料和土壤测试分析数据为基础,从区域角度出发,分析了柑橘园生产体系中的氮肥施用特征和氮素平衡状况。结果表明: 果园氮肥投入量为409.7 kg/hm2,主要来源于复合肥和尿素; 其中通过有机肥投入的氮素水平为 76.51 kg/hm2,主要来源于畜禽粪尿; 柑橘园的总体氮盈余量为 363.9 kg/hm2,盈余量以奉节、江津和永川区较高; 果园氮素投入与氮养分盈余量之间存在极显著的正相关关系。说明过量施用氮肥是氮盈余量高的主要原因。随着氮盈余量增加,果园土壤全氮呈增加趋势,而土壤C/N呈下降趋势, 氮素盈余对土壤全氮的影响大于土壤有机质的影响。  相似文献   

5.
海南岛是我国重要的芒果生产基地。为了探明芒果园氮素盈余状况,以海南岛芒果主产区昌江县、东方市、乐东县、三亚市、陵水县的芒果种植农户调研资料和测试分析数据为基础,分析了71个芒果园氮肥施用量和氮素盈余状况。结果表明:芒果主产区氮素平均盈余量陵水县最高,为299.73 kg hm~(-2),氮素污染风险最高,其次为乐东县、昌江县和三亚市,分别为256.95 kg hm~(-2)、198.46 kg hm~(-2)、145.12 kg hm~(-2),东方市平均氮素盈余最低,为106.37 kg hm~(-2)。大部分芒果园盈余量未达到平均水平,少数氮素盈余远远高于平均值。氮素盈余量分布规律为昌江县和东方市芒果园氮素盈余量较集中,乐东县、三亚市、陵水县氮素盈余状况较为分散。芒果园氮素盈余的主要决定因素是氮素投入,其次是氮素输出,其中,化肥为氮素投入的贡献高达90%以上,有机肥贡献较小。海南省芒果园存在氮素盈余状况,有氮素污染风险,应该重施有机肥调整施肥管理方式。  相似文献   

6.
传统和优化施氮对春玉米产量、氨挥发及氮平衡的影响   总被引:3,自引:1,他引:2  
【目的】本文通过在陕西省长武县(CW)和吉林省梨树县(LS)的春玉米田间试验,研究了传统和优化施氮对春玉米产量、土壤氨挥发及氮平衡的影响,以探讨春玉米氮肥优化的潜力及其对农田氨减排的效果。【方法】试验设对照、传统施氮(长武N 250 kg/hm2,梨树N 300 kg/hm2)及优化施氮(N 200 kg/hm2)3个处理,分别以N0、Ncon、Nopt表示。氨挥发采用德尔格氨管法(简称DTM法)进行原位测定,通过田间气象因素的校正计算氨挥发累积量。【结果】长武和梨树点不同施氮处理下春玉米的产量结果表明,除对照(长武7.9 t/hm2、梨树3.8 t/hm2)外,传统和优化施氮处理间均无显著差异(长武10.6 10.8 t/hm2,梨树9.5 9.6 t/hm2)。玉米氮肥利用率表现为优化施氮(44.3%44.5%)显著高于传统施氮(33.6%36.4%),其中长武点氮肥利用率提高了8.1个百分点,梨树点氮肥利用率增加了10.7个百分点。氨挥发田间监测结果显示,基肥翻耕入土后,伴随降雨的产生,长武和梨树点均未产生氨挥发。喇叭口追肥期表施氮肥后,长武和梨树点均产生大量氨挥发(占追施尿素氮量的16%22%),减少追肥用量N 30 kg/hm2(长武点)和N 100 kg/hm2(梨树点)能显著减少氨挥发损失N 8和15 kg/hm2。土壤-春玉米系统氮平衡估算的结果显示,与长武点氮素表观矿化N 97 kg/hm2相比,梨树点仅为N 16 kg/hm2。优化施氮比传统施氮处理显著降低表观氮素盈余N 48 88 kg/hm2。长武点各施氮处理的表观氮素盈余中,约46%的氮素残留在0—1 m的土壤中,54%损失到环境中,氨挥发占总损失的15%30%;梨树点表观氮素盈余中,35%损失到环境中,其中氨挥发占总损失的54%75%,约有65%残留在0—1m的土壤中。梨树点传统施氮处理0—1 m土层的氮素残留达N 140 kg/hm2,部分残留在土壤中的氮素也将面临淋洗、硝化和反硝化等损失的风险。与优化施氮相比传统施氮氮素表观损失增加了约N 30 40 kg/hm2,除氨挥发损失外,淋洗和硝化/反硝化等也是土壤-春玉米系统中不可忽视的氮素损失途径。【结论】我国春玉米主产区农民传统的氮肥用量偏高,增产效应不明显,氮肥损失风险加剧,尤其是氨挥发损失较大,氮肥的优化潜力高达20%33%,相当于可减少施氮N 50 100kg/hm2。  相似文献   

7.
中国奶业全产业链绿色发展指标的时空变化特征   总被引:2,自引:1,他引:1  
奶业是关乎国民健康和食品安全的战略性农业产业,本文从社会发展、经济效益、产品生产、资源投入和生态环境5个方面选取28项指标,发展和完善了中国奶业全产业链绿色发展指标体系和分级标准。基于该指标体系,利用NUFER-animal模型,定量分析了1990—2017年中国奶业绿色发展指标的时空分布特征,剖析了产业绿色发展的限制因素,阐明了优化途径。结果表明:中国人均奶制品消费量稳步提高,从2.0kg?cap.?1?a?1增加到12.5kg?cap.?1?a?1;奶牛单产水平不断提高,从2.4t?head?1?a?1增加到7.0t?head?1?a?1,种养系统氮素利用效率由8.4%提升至14.4%;单位牛奶的资源投入和环境代价均呈下降趋势,生产单位牛奶的蓝水足迹由0.5 m3?kg?1降低到0.2 m3·kg?1,耕地资源投入量由18.5 m2?kg?1降低到3.3 m2?kg?1;养殖系统氨挥发量指标由21.9 g(N)?kg?1降低到7.0 g(N)?kg?1,但仍远远高于欧美国家水平;牛奶生产和加工成本逐年增加,利润却低于欧美等先进国家的水平。空间特征分析表明:农牧交错带和东部沿海地区产品生产、资源投入和生态环境绿色发展水平相对较高,北方地区牛奶及奶制品的生产、消费水平均高于南方地区。发展种养一体化产业链融合绿色发展技术与模式、构建产销一体化产业链融合绿色发展利益共享机制和形成全产业链质量追踪服务体系与国民消费信任机制是促进中国奶业振兴和绿色发展的有效途径。  相似文献   

8.
为定量评估区域设施菜地土壤氮素的输入输出平衡状况,探明土壤中氮素的基本去向和氮素潜在污染,从CNKI中文数据库和Web of Science等英文数据库中检索筛选出针对设施菜地氮循环研究的可用数据648组,对我国设施菜地表观氮素平衡进行了分析,并根据《全国设施蔬菜重点区域发展规划(2015—2020年)》中的蔬菜分区,探索了不同区域的氮平衡分布特征。结果表明,我国设施菜地每一生长季总体上表观氮平衡为正值,盈余量为49~1154 kg N·hm~(-2),均值为324 kg N·hm~(-2),氮肥利用率平均为18.6%。从氮素的输入途径来看,每季氮素总投入约为863 kg N·hm~(-2),以化肥和有机肥投入为主,分别为471、306 kg N·hm~(-2),灌溉水带入的氮也不容忽视,达到86 kg N·hm~(-2)。从氮素的支出途径来看,每季氮素总支出为539 kg N·hm~(-2),其中除了作物生长从土壤中吸取大量的氮素(230 kg N·hm~(-2))外,以淋溶、硝化反硝化和氨挥发等形式损失的氮达到309 kg N·hm~(-2),占输出量的57.4%,超过了作物吸收带走的氮(42.6%)。每季区域氮平衡差异显著,其中,黄淮海与环渤海暖温区氮素盈余最高,达到441 kg N·hm~(-2),其较高氮投入和较低的作物吸收是造成农田土壤氮素大量盈余的主要原因,同时也存在较高的氮素损失,通过淋溶流失的氮达到186 kg N·hm~(-2)。总体上,当前我国设施菜地整体表观氮平衡为正盈余,主要由于化肥和有机肥投入量大,但同时存在较高的氮素损失风险。降低氮素投入水平和提高作物的吸收利用率是有效的氮优化管理途径,尤其是在黄淮海与环渤海暖温区,应减少氮素投入,重点关注氮素淋溶损失。  相似文献   

9.
河北省果园氮素投入特点及其土壤氮素负荷分析   总被引:19,自引:1,他引:18  
以河北省果园土壤地力调查、农户调查和统计数据为基础,采用氮盈余法从果树种类和区域角度分析了果园生产体系中的氮素输入输出特点及氮养分盈余状况。结果表明,河北果园平均化肥氮投入量为438.0 kg/hm2,主要品种为尿素和复合肥,有机肥氮为181.6 kg/hm2,以畜禽粪为主,其中禽粪占25.5%。京津东部区和冀中、南平原区的果园氮素投入、盈余量较高;葡萄园和桃园的氮素投入水平较高;果园氮素施用与养分盈余量之间存在极显著的正相关,过量施用氮肥是氮盈余量很高的主要原因。随着氮盈余量增加,果园土壤全氮呈增加趋势,而土壤C/N均呈下降趋势,氮素盈余对土壤全氮的影响大于对土壤有机质的影响。  相似文献   

10.
在不同施肥处理条件下,分别定量测定了玉米田土壤氮素自生固氮作用、氨化作用、硝化作用、反硝化损失、氨挥发、NO3--N淋溶损失等氮素循环转化途径。研究结果表明,不施肥的土壤生态系统每年土壤全氮将减少-110.5kg/hm2。施肥能够有效地提高土壤氮素转化能力,农肥的氮素转化作用明显高于化肥的氮素转化作用。各处理反硝化损失的氮量为7.26~21.66kg/hm2,淋溶损失量为0.09~0.21kg/hm2,氨挥发损失的氮量为0~15.23kg/hm2。玉米田施肥处理总的氮素平衡处于盈余状态,不施肥处理的氮素平衡处于亏缺状态。单施农肥的盈余量高于单施化肥及农肥化肥配比处理的盈余量,低量施肥模式土壤中氮素的输入和输出基本处于平衡状态,高量施肥模式土壤中氮素处于盈余状态,虽有利于培肥地力,但却造成了肥料的浪费。  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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