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采用盆栽试验的方法,研究不同磷添加量(0,20,80 mg/kg)和土霉素添加量(0,40,160 mg/kg)对小麦和紫花苜蓿幼苗生物量及根系发育的影响。结果表明:所有水平土霉素处理中,20,80 mg/kg磷处理的小麦地上部生物量均比不加磷时高,分别高22.7%~34.1%,10.0%~30.0%和9.1%~18.3%。除160 mg/kg土霉素加80 mg/kg磷的处理外,所有处理的苜蓿根生物量均小于不加磷和土霉素的对照。小麦的根长和根表面积随着土霉素添加量的增加总体上呈减少的趋势。总体来看,施磷显著促进了小麦幼苗地上部的生长,但对苜蓿幼苗生长的影响不显著。土霉素对苜蓿幼苗的根系发育有抑制作用。研究结果可为评价土壤中土霉素残留对作物早期生长的影响和指导合理施用磷肥提供理论依据。  相似文献   

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稀土元素钐和钇和小球藻生长的影响   总被引:1,自引:0,他引:1  
《农业环境保护》2001,20(6):398-400,404
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4.
在田间条件下,定量检测施用化学氮肥后土壤的氨气损失,往往需要很多设备,试验周期也较长[3-6]。我们在研究碳酸氢铵、氨水在土壤中的扩散损失时,采用了J.H.Baker研究液氨的方法[2]。  相似文献   

5.
豆科植物和根瘤菌在生态环境中的地位和作用   总被引:8,自引:0,他引:8  
随着我国人口的增加和城市化进程的加快,人类对土地资源的需求不断增加,土地使用的透支趋势明显;另一方面大量使用农用化学物质,对生态环境的胁迫增大。豆科植物在根系中因其可与根瘤菌共生形成特殊结构---根瘤,具有生物固氮作用而受到广泛关注。种植豆科植物,利用豆科植物和根瘤菌形成的共生固氮体系可以减少氮肥的投入,增加土壤的有机质含量,改善土壤生态环境,是一种天然的利于生态环境的农业生产方式。本文介绍了豆科植物和根瘤菌的一些重要特征,论述了豆科植物与根瘤菌共生的关系,表明发展豆科植物对于生态环境的修复、维持土地的生产力以及节能减排方面的重要作用,以期为改善生态环境提供一些可参考的方法和依据。  相似文献   

6.
我省小麦生产和现状,问题和对策   总被引:1,自引:0,他引:1  
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7.
红麻对Cu和Cu-EDDS的吸收和富集   总被引:1,自引:0,他引:1  
王国庆  李敏  骆永明  宋静  赵其国 《土壤》2006,38(5):626-631
生物可降解特性螯合剂[S,S]-乙二胺二琥珀酸(EDDS),被推荐用作污染土壤强化植物修复中的重金属活化试剂。我国能源经济作物红麻具有较高的地上生物产量,可望用于重金属污染土壤的植物吸取修复或稳定修复。通过水培试验研究了红麻对水培营养液中Cu及Cu-EDDS的吸收和富集效应。试验结果表明,能源植物红麻各组织中Cu的富集浓度依次为:根>叶>茎(皮)。扫描电镜-能谱分析表明,红麻根系从水培溶液中吸收的Cu主要经木质部导管向地上部运输。EDDS处理及Cu/EDDS摩尔比<1时,对红麻生长无急性植物毒性。红麻纤维皮层内Cu含量低于其他组织内的Cu含量,并低于纺织产品Cu含量标准(HJBZ30-2000)。预测在Cu污染土壤上种植红麻,可望实现红麻纤维的安全生产,同时有可能实现对轻度Cu污染土壤的植物稳定和吸取修复。  相似文献   

8.
<正> 发展中国家,由于环境污染使很多成年人的健康受到危害,在印度,由于有毒气体(如氮氧化物、硫氧化物、一氧化碳和铅氧化物等)的污染使咽喉症发病率为其它国家的12倍、癌症患者高达150万。如果再不加强监督和控制,可以预料,到本世纪末将增加两倍。近代,为了增产粮食,农业生产实行高投入。由于农业化学品的过量使用,引起了各种污染问题,也影响到动植物种群的生存  相似文献   

9.
生物防治病虫害是当前农业可持续发展的重要方向之一。大豆灰霉病(Botrytis cinerea)和黑斑病(Alternaria tenuissima)是大豆上的主要病害,为了控制灰霉病和黑斑病对大豆的危害,通过生物防治的方法,采用土壤稀释法从江西省东乡野生稻根际土壤中分离获得64株拮抗菌,经反复筛选及平板对峙法测定菌株A2、A6、A10、F7和G6对大豆灰霉病菌和黑斑病菌有稳定拮抗作用。通过菌株发酵滤液和化学农药抑菌效果比较,菌株发酵液的抑菌率远超化学农药,其中拮抗菌的发酵滤液对灰霉病最佳抑制率达91. 7%,对黑斑病最佳抑制率在60. 9%~87. 0%之间;而灰霉病特效素和苯醚甲环唑对灰霉病和黑斑病的最佳抑制率仅为68. 0%和47. 3%。根据菌株的生理生化特征及16S r DNA分子鉴定,5株菌分别为米修链霉菌(Streptomyces misionensis)、绛红产色小单孢菌(Micromonospora purpureochromogenes)、圈卷产色链霉菌(Streptomyces ansochromogenes)、链霉菌(Streptomyces sp.)和类芽孢杆菌(Panenibacillus sp.)。本研究为大豆灰霉病和黑斑病的生防菌开发和利用提供了一定的支撑。  相似文献   

10.
泰乐菌素和土霉素在农业土壤中的消解和运移   总被引:3,自引:0,他引:3  
长期施用禽畜排泄物可导致抗生素在土壤中的积累, 对环境产生不良影响.为了解进入农田后抗生素的去向及残留动态, 选择2个典型农业土壤, 利用田间小区试验, 研究了田间实际状况下泰乐菌素和土霉素2种抗生素在土壤中的消解与运移行为.研究表明, 抗生素在土壤中的消解和运移与抗生素种类和土壤性质有关.抗生素在砂质土壤(清水砂)中的下移明显高于粘壤土(泥质田), 泰乐菌素在土壤中的垂直迁移强于土霉素.表层土壤中抗生素因降解和下移随时间逐渐下降, 消解速率在试验初期大于后期, 并且土霉素消解速率大于泰乐菌素.砂质土壤中抗生素的消解速率在试验初期明显高于粘壤土, 但至试验后期, 二者渐趋相似.田间条件下测得的抗生素消解速率明显低于实验室条件下, 这可能与抗生素进入田间深层土壤后稳定性增加有关.农田施用抗生素初期产生的径流中含较高浓度的抗生素, 但随时间(10 d之内)很快下降至检测下限以下; 试验初期径流中抗生素浓度为泰乐菌素大于土霉素, 砂质土高于粘壤土.  相似文献   

11.
Phosphate-solubilizing fungal strains were isolated from organically managed soil and tested for their ability to solubilize rock phosphate (RP), ferric phosphate and aluminium phosphate. These strains were identified as Aspergillus tubingensis and Aspergillus niger based on internal transcribed spacer sequence analysis. A field study was conducted in two different seasons in organically managed soil to test the efficacy of two strains, A. tubingensis (PSF-4) and A. niger (PSF-7) on the yield and soil fertility. RP was amended at the rate of 59 kg P2O5 ha?1 to study the effect of RP on soil fertility. The maize was grown in rainy season (July–October 2011) and wheat in winter season (November 2011–April 2012). Plant heights, shoot and root dry biomass and phosphorous (P) uptake in roots, shoots and grains were significantly increased due to inoculation in both crops. The yield of maize and wheat were significantly increased when inoculated along with RP fertilization. Organic carbon, P levels and soil enzyme activities were significantly increased due to inoculation. Results of present study suggested that A. tubingensis and A. niger improved the crop yield and soil fertility of organic farm when inoculated with RP fertilization.  相似文献   

12.
Aspergillus tubingensis and A. niger were isolated from the landfills of rock phosphate mines and tested for their efficacy to solubilize rock phosphate (RP), and improve plant growth and phosphate (P) uptake by plants grown in soil amended with RP. The results showed that they effectively solubilized RP in Pikovskaya's (PKV) liquid medium and released significantly higher amounts of P into the medium. A. tubingensis solubilized and released 380.8 μg P mL?1, A. niger showed better efficiency and produced 403.8 μg P mL?1. Field experiments with two consecutive crops in alkaline agricultural soil showed that inoculation of these fungi along with RP fertilization significantly increased yield and nutrient uptake of wheat and maize plants compared with control soil. P uptake by wheat and maize plants and the available P increased significantly in the RP-amended soil inoculated with fungi compared with control. These results suggest that the fertilizer value of RP can be increased, especially in alkaline soils, by inoculating P-solubilizing fungi.  相似文献   

13.
Rose-scented geranium (Pelargonium sp.) is a highly valued aromatic crop. Its growth is limited by soil salinity and sodicity stress. Arbuscular mycorrhizal (AM) fungus, phosphate-solubilizing bacteria (PSB), and P fertilizers may enhance the growth and secondary metabolism in geranium plants. In this context, a pot experiment was conducted to study the effects of PSB, AM fungi (Glomus intraradices), and P fertilizer on the yield, chemical composition of essential oil, and mineral element acquisition of geranium. The dry matter yield of shoot and essential oil yield, and mineral element (P, K, Ca, Mg, Na, Fe, Cu, and Zn) uptake in shoot tissues of geranium were significantly increased by the inoculation with AM fungi, co-inoculation with AM fungi and PSB, and P fertilization as compared to control. While the co-inoculation of geranium with AM fungi and PSB significantly enhanced the content of the monoterpenes such as citronellol, geraniol, geranial, and a sesquiterpene (10-epi-γ eudesmol), the P fertilization only enhanced the content of a sesquiterpene, 10-epi-γ eudesmol in the volatile oil. We conclude that the co-inoculation of PSB and AM fungi could be the best natural alternative to phosphate fertilizers to enhance the yield and quality of essential oil from geranium plants grown in sodic soils.  相似文献   

14.
长期施肥下新疆灰漠土有机碳及作物产量演变   总被引:6,自引:1,他引:5  
为明确长期不同施肥下新疆灰漠土有机碳和作物产量演变特征,依托始于1990年的灰漠土肥力长期定位监测试验,选择对照(CK,不施肥)、施氮磷肥(NP)、氮磷钾平衡施肥(NPK)、氮磷钾配合常量有机肥(NPKM)、氮磷钾配合高量有机肥(h NPKM,有机肥施用量为NPKM的2倍)、氮磷钾配合秸秆还田(NPKS)6个处理,分析不同处理下土壤有机碳和小麦、玉米产量演变特征,探讨碳投入及有机碳与作物产量的关系。结果表明:1)长期耗竭种植(CK)、连续施用NP或NPK肥,灰漠土有机碳含量持续下降,年均下降速率分别为0.094 g·kg~(-1)、0.043 g·kg~(-1)和0.053 g·kg~(-1),表明施化肥(NP、NPK)不能维持土壤有机碳含量,不利于土壤肥力的保持。NPKM和h NPKM处理,土壤有机碳显著增加,年均增加0.360 g·kg~(-1)和0.575 g·kg~(-1),增施有机肥是快速提高灰漠土肥力的重要措施。秸秆还田处理(NKPS),土壤有机碳年均增幅0.006 g·kg~(-1),与NPK处理对比,秸秆还田虽没有大幅度提高土壤有机碳,但维持了土壤肥力。2)较CK,长期化肥有机肥配施(NPKM、h NPKM)显著增加了作物产量(P0.05)。与NP和NPK比较,长期化肥有机肥配施显著提高了小麦产量(P0.05),但玉米产量与施化肥处理差异不显著(P0.05),玉米产量以平衡施肥(NPK)的增幅最高,达到220 kg·hm~(-2)·a~(-1)。小麦的产量变异系数(29.1%~43.9%)高于玉米产量变异(19.0%~32.7%)。化肥配合秸秆还田(NPKS)处理的小麦增产幅度与高量施用有机肥(h NPKM)处理接近,喻示了秸秆还田对作物增产的作用不可忽视。3)碳投入与土壤有机碳和小麦、玉米产量有显著线性正相关(P0.05)。基于以上分析,在干旱区灰漠土增加土壤碳投入(有机肥或秸秆)仍然是最基本的土壤培肥措施。  相似文献   

15.
【目的】比较磷肥减施结合调控措施的效果,为合理施用磷肥,提高磷肥利用率,实现区域粮食作物高产高效和绿色发展提供支撑。【方法】冬小麦–夏玉米体系田间试验在陕西关中地区土上进行了3年。共设5个处理:不施磷肥(CK),推荐施磷量撒施(RP),减施15%推荐施磷量条施(85%RP),以秸秆包裹磷肥条施(St85%RP),85%RP结合硫酸铵替代尿素(Am85%RP)。于作物收获期测定小麦和玉米产量、磷肥效率、土壤磷库和作物菌根侵染率。【结果】与CK相比,除85%RP处理小麦籽粒产量没有显著提高,其他施磷处理可显著提高玉米籽粒总产量(增幅17.1%~32.6%)、小麦籽粒总产量(增幅8.9%~12.8%)以及玉米小麦总产量(增幅13.1%~22.5%)。除85%RP处理2018年玉米籽粒和2020年小麦籽粒产量显著低于RP处理外,其余减磷处理均与RP处理没有显著差异。与RP处理相比,85%RP、St85%RP和Am85%RP处理均显著提高了磷素回收率、表观利用率和偏生产力;与85%RP处理相比,St85%RP处理显著提高了磷肥利用率,而Am85%RP处理则提高不显著。与CK相比,所有施磷处理均...  相似文献   

16.
The effects of bacterial inoculants on the growth of winter wheat were studied in a growth chamber. Azospirillum brasilense, Azotobacter chroococcum, Bacillus polymyxa, Enterobacter cloacae, or a mixture of the four rhizobacteria were the inoculants tested. Inoculation effects on yield, yield components, and N-derived from fertilizer (Ndff) were assessed. The response of plants inoculated with individual bacteria was inconsistent and varied with treatment. At the first harvest (58 days after planting-DAP) plants inoculated with the mixture exhibited increases in plant dry weight, total-N and Ndff. At the second harvest (105 DAP), plants inoculated with A. brasilense and the mixture exhibited increases in shoot biomass, whereas at maturity (170 DAP), the inoculated plants showed no differences in total-N or shoot dry matter yield, as compared to the uninoculated controls. Inoculation with A. brasilense, however, increased the Ndff in the shoots, and B. polymyxa tended to enhance grain yield. Practical use of these rhizobacteria as inoculants for winter wheat may have limited value until such time as we better understand factors which influence rhizosphere competence of bacterial inoculants.  相似文献   

17.
【目的】 灌淤土是我国西北地区重要的粮食和经济作物土壤。了解灌淤土上作物产量的变化,及其对长期施肥的响应,以及灌淤土生产力的变化与其氮磷钾含量的关系,为西北地区作物增产和灌淤土培肥与可持续利用提供理论依据。 【方法】 1988到2004年间,在宁夏银川市、吴忠市、石嘴山市和新疆和田市典型灌淤土区域陆续建立了7个国家耕地质量监测点。2016年,利用时间趋势分析法,探讨了作物产量随时间的变化趋势,分析了长期不施肥和常规施肥条件下,玉米、小麦和水稻产量、产量变异系数、可持续性指数、增产率及地力贡献指数的变化特征,并进一步探讨了增产率与土壤养分的关系。 【结果】 灌淤土上小麦产量随时间呈现递增的趋势,在2004年达到最高 (7.58 t/hm2),之后保持稳定,2016年约为初始年产量的3倍;玉米产量随时间一直呈递增趋势,2016年平均产量为9.8 t/hm2,约为初始年的两倍;水稻产量近年来变化不大。与不施肥相比,常规施肥下小麦、玉米 (28年间) 和水稻 (8年间) 分别平均增产3.43倍、3.20倍和1.21倍,产量可持续性指数分别提高了18.8%、148%和13.9%。监测以来,小麦和玉米农田的地力贡献指数略有下降,但变化不显著。水田的地力贡献指数以每年0.0125的速率增加。28年间,常规施肥使土壤全氮含量从0.4 g/kg提高到1.1 g/kg,有效磷和速效钾含量变化不大。小麦与玉米的增产率与土壤全氮含量呈显著直线正相关关系,小麦、玉米和水稻的平均氮肥农学效率分别为9.8、16.8和27.4 kg/kg。 【结论】 灌淤土上常规施肥 (主要是氮肥)有效提高了玉米、小麦和水稻的产量。土壤全氮含量呈增加趋势,有效磷和有效钾含量基本平稳。土壤肥力对玉米和小麦产量的贡献呈下降趋势,对水稻产量的贡献高且平稳。因此,灌淤土应在合理施用氮肥的同时,注重采取提升地力,实现作物的高产和高效。   相似文献   

18.
Wheat (Triticum aestivum L.), rice (Oryza sativa) and maize (Zea mays L.) are the most important cereals worldwide. However, in the last few years, soil has been submitted to both use and handling pressures due to the increase in agricultural practices, which are leading to its degradation. The use of plant growth-promoting rhizobacteria (PGPR) as inoculants constitutes a biological alternative for sustainable production. Pseudomonas aurantiaca SR1 was formulated as an inoculant in order to evaluate its growth promotion effect in the field when applied on maize and wheat seeds at the sowing time. P and N fertilization treatments were also included in the assays. P. aurantiaca SR1 colonized the root system of both crops and it persisted at appropriate population densities. It also showed a significant plant growth-promoting effect that was reflected in the yield. Another relevant finding was that both crops, when inoculated with P. aurantiaca SR1, presented higher yields with fertilization doses lower than those conventionally applied. This indicated its potential use as a reasonable alternative for crop production, with a minimization of the ecological impact.  相似文献   

19.
黄土高原旱地不同施肥对土壤肥力与产量的影响   总被引:11,自引:0,他引:11  
Long-term fertility experiments have become an important tool for investigating the sustainability of cropping systems. Therefore, a long-term (18-year) fertilization experiment was conducted in Changwu County, Shaanxi Province, China, to ascertain the effect of the long-term application of chemical fertilizers and manure on wheat yield and soil fertility in the Loess Plateau, so as to provide a scientific basis for sustainable land management. The experiment consisted of nine fertilizer treatments with three replicates arranged in a completely randomized design: 1) CK (no fertilizer); 2) N (N 120 kg ha-1); 3) P (P 26.2 kg ha-1); 4) NP (N 120, P 26.2 kg ha-1-2); 5) M (manure 75 t ha-1); 6) NM (N 120 kg ha-1, manure 75 t ha-1); 7) PM (P 26.2 kg ha-1, manure 75 t ha-1); 8) NPM (N 120 , P 26.2 kg ha-1, manure 75 t ha-1); and 9) fallow (no fertilizer, no crop). N fertilizer was applied in the form of urea and P was applied as calcium super phosphate. The results showed that precipitation had a large effect on the response of wheat yield to fertilization. Manure (M), NP, PM, NM, and NPM treatments significantly increased (P < 0.05) average yield. In the NP, PM, NM and NPM treatments, the percentage increases in yield due to fertilization were highest in normal years, and lowest in the drought years. Long-term P application enhanced soil available P markedly, and manure applications contributed more to soil fertility than chemical fertilizers alone. Chemical fertilizers applied together with manure distinctly improved soil fertility. The results also showed that the soil nutrient concentration changed mainly in the 0--60 cm layers and fertilization and planting only slightly affected soil nutrients below the 100 cm layers.  相似文献   

20.
为了研究我国华北平原低肥力土壤条件下秸秆还田和施钾肥对作物产量和钾素平衡的影响,于2008年10月~2011年10月在中国农业科学院高新技术园区国家测土施肥中心实验室试验基地(河北省廊坊市),通过3年6季的定位试验,比较了施钾与秸秆还田的增产效应、钾素吸收利用和作物土壤系统的钾素平衡状况。结果表明:在氮、磷肥充足的情况下,施用钾肥(NPK)、秸秆还田(NP+St)和秸秆还田配施钾肥(NPK+St),均有明显的增产效应,表现为NPK+StNPKNP+StNP;不同施钾措施在夏玉米上的增产效果优于冬小麦;同一作物秸秆还田结合施钾肥的增产效果最好,降低了年度间的产量变异系数,在获得高产的同时,年际间产量稳定,有利于稳产;施钾肥和秸秆还田可显著提高小麦和玉米的钾素吸收总量; NPK+St、NPK、NP+St处理的钾素表观平衡系数分别为1.26,0.42,0.92。秸秆还田和施钾肥有利于钾素的收支平衡,减轻作物对土壤钾素的消耗,缓解土壤钾素肥力下降的程度,可维持土壤钾素肥力的稳定。  相似文献   

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