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太湖磷转化细菌与水体磷形态关系 被引量:12
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作者 冯胜 秦伯强 高光 《湖泊科学》 EI CAS CSCD 北大核心 2008年第4期428-436,共9页
太湖水体中不同形态磷含量与磷转化细菌的关系研究结果显示:太湖水体中总磷和活性磷的含量分别为0.113mg/L和0.011mg/L;无机磷和有机磷分解菌在底泥中达6.73×105cells/g,而在水体中仅为71cells/ml,且存在明显的时间和空间差异;根... 太湖水体中不同形态磷含量与磷转化细菌的关系研究结果显示:太湖水体中总磷和活性磷的含量分别为0.113mg/L和0.011mg/L;无机磷和有机磷分解菌在底泥中达6.73×105cells/g,而在水体中仅为71cells/ml,且存在明显的时间和空间差异;根据菌落形态特征,分离筛选了3株有代表性的无机磷转化菌和7株占优势的有机磷分解菌.3株无机磷转化菌经鉴定分别与巨大芽孢杆菌(Bacillusmegaterium)、假单孢菌(Pseudomonassp.)和类芽孢杆菌(Paenibacillussp.)比较接近.而7株有机磷分解菌则分别与为苏云金芽孢杆菌(Bacillusthurigiensis)、短小芽孢杆菌(Bacilluspumilus)、芽孢杆菌(Bacillussp.)、无芽孢杆菌(Bacteriumsp.)、氧化微杆菌(Microbacteriumoxydans)腊状芽孢杆菌(Bacilluscereus)、简单芽孢杆菌(Bacillussimples)接近;太湖水体中磷分解细菌主要归属于芽孢杆菌属(Bacillus)和假单孢菌属(Pseudomonas),对细菌降解性能进行研究的结果显示:无机磷分解细菌对太湖水体活性磷的贡献显著大于有机磷分解细菌的贡献率. 展开更多
关键词 磷分解细菌 太湖
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Isolation and Characterization of Phosphate-Solubilizing Bacteria from Seagrass Rhizosphere Soil 被引量:3
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作者 Upasana Ghosh Ponnambalam Subhashini +3 位作者 Elangovan Dilipan Subramanian Raja Thirunavukarassu Thangaradjou Lakshmanan Kannan 《Journal of Ocean University of China》 SCIE CAS 2012年第1期86-92,共7页
Phosphate-solubilizing bacterial strains(6 Nos.) were isolated from the rhizosphere soils of two seagrasses(Halophila ovalis(R.Br.) Hook and Halodule pinifolia(Miki) Hartog) in the Vellar estuary.Experimental studies ... Phosphate-solubilizing bacterial strains(6 Nos.) were isolated from the rhizosphere soils of two seagrasses(Halophila ovalis(R.Br.) Hook and Halodule pinifolia(Miki) Hartog) in the Vellar estuary.Experimental studies found that the strain PSSG6 was effective in phosphate solubilization with Phosphate Solubilization efficiency index E = 375 ± 8.54,followed by the strain PSSG5 with Phosphate Solubilization efficiency index E = 275 ± 27.3.Of the 6 strains isolated,the strains PSSG4 and PSSG5 be-longed to the genus Bacillus,and PSSG1,PSSG2 and PSSG3 were identified as Citrobacter sp.,Shigella sp.,and Klebsiella sp.,respectively,by conventional method,and PSSG6 was identified as Bacillus circulans using conventional and molecular methods. 展开更多
关键词 phosphate solubilization Halodule pinifolia Halophila ovalis Bacillus circulans bio-fertilizer
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The Ability of Phosphate Solubilizing Bacteria Isolated from Coffee Plant Rhizosphere and Their Effects on Robusta Coffee Seedlings
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作者 John Bako Baon Sri Wedhastri Andi Kumiawan 《Journal of Agricultural Science and Technology(A)》 2012年第9期1064-1070,共7页
Phosphate solubilizing bacteria isolated from rhizosphere of coffee plants may play an important role in improving phosphate availability for the plants. However, one of the factors influencing the degree of phosphate... Phosphate solubilizing bacteria isolated from rhizosphere of coffee plants may play an important role in improving phosphate availability for the plants. However, one of the factors influencing the degree of phosphate solubilization by these bacteria is the ability of the microorganisms to utilize phosphate. The objective of this study was to determine the ability of phosphate solubilizing bacteria isolated from coffee plant rhizosphere and their effects on robusta coffee seedling growth. This research was carried out by taking soil samples from Andungsari (Bondowoso District) and Kaliwining (Jember District) coffee plantations, both located in East Java. Liquid medium of Pikovskaya was used for isolation of phosphate solubilizing bacteria from the soil samples. Results of this study showed that 12 phosphate solubilizing bacteria were obtained from this isolation, eight isolates from Andungsari and four isolates from Kaliwining. Selection of those bacteria isolates was based on the qualitative ability in phosphate solubilizing by measuring the clear zone surrounding the colonies and quantitatively by measuring the solubilized phosphate using spectrophotometer. The results showed that four isolates, in the order of PFpKW1, PFpC61, PFsC62a, and PFsB 11, had the highest qualitative ability in solubilizing phosphate, while for the highest quantitative ability the order was PFpKW 1, PFpC61, PFsC62a, and PFsB 11. In a green house study, inoculation of these selected isolates onto Robusta coffee seedlings positively enhanced the coffee seedling growth. Phenotypic test indicated that the four isolates are similar to the genus of Pseudomonas. 展开更多
关键词 Phosphate solubilizing bacteria RHIZOSPHERE Robusta coffee seedlings.
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