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排序方式: 共有991条查询结果,搜索用时 31 毫秒
21.
C. FERNANDES da SILVA E. BALLESTER J. MONSERRAT L. GERACITANO W. WASIELESKY JR P.C. ABREU 《Aquaculture Nutrition》2008,14(6):507-514
The nutritional quality of biofilm, a microbial community associated to an organic matrix, was evaluated in artificial substrate (polyethylene screen) in net cages during 30 days in the Patos Lagoon estuary, Southern Brazil. During this period, samples of biofilm were collected each 5 days for analysis of chlorophyll a, microorganisms abundance, dry weight, protein and lipid contents. During the study, chlorophyll a varied from 0.38 to 2.75 μg cm?2; dry weight between 7.16 and 17.63 mg cm?2; protein content from 0.43 to 1.76 mg cm?2 and lipid concentration between 1.21 and 4.23 mg cm?2. The variation of lipid in the biofilm was closely related to the abundance of free heterotrophic bacteria (34.25–56.54 × 106 cells cm?2), filamentous cyanobacteria (7.5–15.9 × 106 filaments cm?2), flagellates (6.92–12.89 × 106 cells cm?2) and mainly nematodes (29–1,414 organisms cm?2), while protein content varied similarly to the abundance of unicellular centric diatoms (52.10–179.81 × 103 cells cm?2), and nematodes. This information will allow a better management of food supply to raised aquatic organism with the utilization of natural productivity in the culture systems, with considerable decrease in production costs. 相似文献
22.
以黄土高原旱作区马铃薯不同连作年限土壤为研究对象,采用空间代替时间序列方法,对撂荒(CK1)、小麦/豌豆/马铃薯轮作(CK2)、连作2 a、连作4 a和连作6 a等不同连作年限的土壤容重、结构分维、总有机碳、酶活性与微生物数量及变化规律进行研究。结果表明:(1)不同处理土壤容重差异显著,连作6 a土壤容重最小;(2)连作可以改变土壤中不同粒级团聚体的比例,各处理中>4 mm粒径的土壤含量最高;(3)马铃薯长期连作显著降低土壤有机碳含量,连作6 a土壤总有机碳含量较撂荒降低14.27%; (4)马铃薯主要生育期内土壤转化酶、过氧化氢酶变化动态呈“S”型曲线,脲酶呈“M”型变化趋势,3种酶活性与土壤肥力因子均呈极显著正相关,与土壤容重呈极显著负相关;(5)细菌是连作土壤中优势菌,真菌和放线菌也占一定比重;细菌、真菌和放线菌数量在0~10 cm土层显著高于10~20 cm土层;马铃薯长期连作显著降低土壤微生物数量,群落结构随连作年限明显改变。 相似文献
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24.
生物菌肥和钾肥配施对苹果钾素吸收及果实品质的影响 总被引:1,自引:0,他引:1
为了研究生物菌肥和钾肥对苹果果实品质及生长发育的协同作用,以7 a生'瓦里短枝'(Vallee spur Del)为研究对象,设置T1(K2O 420 kg·hm-2)、T2(生物菌肥2520 kg·hm-2)、T3(生物菌肥2520 kg·hm-2+K2O 294 kg·hm-2)、T4(生物菌肥2520 kg·hm... 相似文献
25.
Phosphate-solubilizing microorganisms associated with the rhizosphere of mangroves in a semiarid coastal lagoon 总被引:14,自引:0,他引:14
P. Vazquez G. Holguin M. E. Puente A. Lopez-Cortes Y. Bashan 《Biology and Fertility of Soils》2000,30(5-6):460-468
The phosphate-solubilizing potential of the rhizosphere microbial community in mangroves was demonstrated when culture media
supplemented with insoluble, tribasic calcium phosphate, and incubated with roots of black (Avicennia germinans L.) and white [Laguncularia racemosa (L.) Gaertn.] mangrove became transparent after a few days of incubation. Thirteen phosphate-solubilizing bacterial strains
were isolated from the rhizosphere of both species of mangroves: Bacillus amyloliquefaciens, Bacillus licheniformis, Bacillus atrophaeus, Paenibacillus macerans, Vibrio proteolyticus, Xanthobacter agilis, Enterobacter aerogenes, Enterobacter taylorae, Enterobacter asburiae, Kluyvera cryocrescens, Pseudomonas stutzeri, and Chryseomonas luteola. One bacterial isolate could not be identified. The rhizosphere of black mangroves also yielded the fungus Aspergillus niger. The phosphate-solubilizing activity of the isolates was first qualitatively evaluated by the formation of halos (clear zones)
around the colonies growing on solid medium containing tribasic calcium phosphate as a sole phosphorus source. Spectrophotometric
quantification of phosphate solubilization showed that all bacterial species and A. niger solubilized insoluble phosphate well in a liquid medium, and that V. proteolyticus was the most active solubilizing species among the bacteria. Gas chromatographic analyses of cell-free spent culture medium
from the various bacteria demonstrated the presence of 11 identified, and several unidentified, volatile and nonvolatile organic
acids. Those most commonly produced by different species were lactic, succinic, isovaleric, isobutyric, and acetic acids.
Most of the bacterial species produced more than one organic acid whereas A. niger produced only succinic acid. We propose the production of organic acids by these mangrove rhizosphere microorganisms as a
possible mechanism involved in the solubilization of insoluble calcium phosphate.
Received: 21 April 1999 相似文献
26.
27.
在日光温室内,采用田间试验的方法,研究不同施肥处理对西红柿土壤酶活性和土壤微生物数量的影响。结果表明:施有机肥、化肥、有机肥 叶面肥处理土壤磷酸酶活性增加,施化肥 叶面肥处理比施化肥处理土壤磷酸酶活性增加;施有机肥处理土壤脲酶活性增强;施化肥 叶面肥处理土壤磷酸酶活性比施有机肥 叶面肥处理降低;施肥对蔗糖酶和过氧化氢酶活性的影响较小。施有机肥处理土壤细菌、真菌和放线菌数量增加,施化肥处理土壤细菌数量降低,土壤真菌和放线菌数量增加。 相似文献
28.
多氯联苯复合污染土壤的土著微生物修复强化措施研究 总被引:10,自引:1,他引:10
通过室内模拟试验,以不同C源、C/N比、水分及通透性为调控因子,对多氯联苯(PCBs)长期复合污染土壤的土著微生物强化修复进行了初步研究。结果表明,PCBs长期复合污染土壤中,在土壤水分含量为田间持水量的60%时,加入淀粉、葡萄糖和琥珀酸钠均在一定程度上增加了细菌和真菌数量,从而促进土壤中PCBs的土著微生物降解。不同种类的C源对PCBs污染土壤的土著微生物降解效果存在明显差异,且其降解效果与C源的施用剂量密切相关。当淀粉加入量为C1.0g/kg土时,土壤中PCBs的降解效果较好,而葡萄糖和琥珀酸钠加入量为C0.2g/kg土时,PCBs的降解效果明显。土壤C/N比为10:1的处理效果优于C/N比为25:1和40:1。土壤人为翻动有利于PCBs污染土壤中细菌和真菌的生长,提高土著微生物的代谢活性,从而促进土壤中PCBs的自然降解。这为进一步探讨加速土壤中PCBs降解的最适条件和研发POPs污染土壤的生物修复技术提供了科学依据。 相似文献
29.
Ved Prakash Ranjan Bhattacharyya Govindan Selvakumar Samaresh Kundu Hari Shanker Gupta 《植物养料与土壤学杂志》2007,170(2):224-233
This study aims to examine the effects of long‐term fertilization and cropping on some chemical and microbiological properties of the soil in a 32 y old long‐term fertility experiment at Almora (Himalayan region, India) under rainfed soybean‐wheat rotation. Continuous annual application of recommended doses of chemical fertilizer and 10 Mg ha–1 FYM on fresh‐weight basis (NPK + FYM) to soybean (Glycine max L.) sustained not only higher productivity of soybean and residual wheat (Triticum aestivum L.) crop, but also resulted in build‐up of total soil organic C (SOC), total soil N, P, and K. Concentration of SOC increased by 40% and 70% in the NPK + FYM–treated plots as compared to NPK (43.1 Mg C ha–1) and unfertilized control plots (35.5 Mg C ha–1), respectively. Average annual contribution of C input from soybean was 29% and that from wheat was 24% of the harvestable aboveground biomass yield. Annual gross C input and annual rate of total SOC enrichment from initial soil in the 0–15 cm layer were 4362 and 333 kg C ha–1, respectively, for the plots under NPK + FYM. It was observed that the soils under the unfertilized control, NK and N + FYM treatments, suffered a net annual loss of 5.1, 5.2, and 15.8 kg P ha–1, respectively, whereas the soils under NP, NPK, and NPK + FYM had net annual gains of 25.3, 18.8, and 16.4 kg P ha–1, respectively. There was net negative K balance in all the treatments ranging from 6.9 kg ha–1 y–1 in NK to 82.4 kg ha–1 y–1 in N + FYM–treated plots. The application of NPK + FYM also recorded the highest levels of soil microbial‐biomass C, soil microbial‐biomass N, populations of viable and culturable soil microbes. 相似文献
30.
为探讨填料生物膜在养殖尾水处理中对水体氮循环的影响机制,采用16S rRNA基因扩增子测序和宏基因组测序技术,对填料生物膜、水体细菌的群落结构及其与氮循环相关的功能基因丰度差异特征进行了研究。结果显示,填料生物膜微生物主要参与氮代谢活动。在属水平上,Pseudomonas、Spirochaeta、Opitutus和Syntrophus是填料生物膜氮素转化过程的重要功能微生物类群。与水体相比,填料生物膜的碳代谢活动能力较强(P<0.05);填料生物膜上固氮功能基因nifH、硝化功能基因hao、反硝化和异化硝酸盐功能基因napA、nirS、norB、norC、nrfA、nirB和氮代谢调控基因ntrC及其相应的关键酶均显著高于周围水体(P<0.05),且对含氮污染物有显著去除效果。研究表明,养殖尾水处理系统内复合填料生物膜具有比周围水环境更强的氮周转能力,主要通过关键功能物种介导的固氮和反硝化作用实现养殖尾水氮素的转化和迁移。研究结果作为野外实验证据,可为复合填料生物膜系统在水产养殖尾水治理中的应用提供理论依据。 相似文献