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混合菌群发酵马尾藻作为海藻肥料的研究 总被引:1,自引:0,他引:1
从马尾藻原位分离发酵菌群,采用分子生物学手段分析鉴定菌种组成,获得发酵菌株4株分别为巨大芽孢杆菌(Bacillus megaterium),非脱羧勒克氏菌(Leclerciaadecarboxylata),鞘氨醇单胞菌(Sphingomonasleidyi)以及赖氨酸芽孢杆菌(Lysinibacillusmacroides);控制4菌株接种比例进行马尾藻发酵,监测发酵过程中菌种生物量、褐藻酸含量及褐藻寡糖含量变化规律,结果表明,马尾藻经发酵36 h生成聚合度2-5的褐藻寡糖,并伴随菌种二次生长及pH下降等易于观察检测的参数变化;含褐藻寡糖的发酵原液稀释600倍后,能够明显促进小麦种子萌发及根生长,与清水对照相比萌发率提高26%,根系长度增长37%。本研究为微生物发酵法生产海藻肥料提供了可行案例,证实该方法简单有效,可操作性强,有广阔的应用前景,为将来实现海藻发酵肥工业化生产提供理论支持和数据支撑。 相似文献
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Algal organic materials (AOMs) are one critical factor affecting the efficiency of modified clays used for the mitigation of harmful algal blooms (HABs). This study was conducted to develop a deeper understanding of the mechanisms and factors affecting the adsorption of AOMs onto modified clays. Sodium alginate (polysaccharide) and kaolinite modified with polyaluminium chloride (PACl) were used as AOMs and modified clay model substances, respectively, and the effects of modifier dosage, contact time, solution pH and ionic strength were investigated through batch adsorption experiments. Kinetics revealed that the alginate adsorption rate was described well by a pseudo-second order model. PACl effectively enhanced the adsorption capacity of kaolinite and increased the adsorption rate, and the optimum additive amount of PACl was 5%. The experimental data fitted both the Freundlich and Langmuir adsorption equations well. The adsorption thermodynamics for alginate onto modified clays suggests that alginate adsorption is a spontaneous process. The adsorption of alginate onto modified clays was highly dependent on pH, with a decrease in adsorption observed with increased pH to 9.48, but the opposite was true above pH 9.48. Finally, adsorption increased with increasing ionic strength. 相似文献
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为获得古罗糖醛酸(Guluronate)含量高的细菌胞外褐藻多糖,利用PCR从海洋细菌Pseudomonassp.QDA中克隆了其甘露糖醛酸C-5差向异构酶基因(algG),连接入质粒pMF 54Km,构建了重组表达载体pMF54 Km-algG。利用三亲接合法将pMF54 Km-algG转入菌株QDA中,获得algG过量表达重组菌株QDA-G1。H-NMR测定结果表明,QDA-G所产的褐藻多糖中β-D-甘露糖醛酸(M)与它的C-5差向异构体α-L-古罗糖醛酸(G)的比值为0.38,G的质量分数达到74.2%,比野生菌株QDA提高了26.4%。且重组菌株遗传稳定性良好,连续传代20代后,M/G的比值无明显变化。 相似文献
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HU Xiaoke JIANG Xiaolu* GUAN Huashi Fishery College Ocean University of China Qingdao P..R.China 《中国海洋大学学报(英文版)》2003,2(1)
1 Introduction Protoplastsserveasabasicandversatiletoolforge neticengineeringandbiochemicalresearchforseveralreasons :theymayregeneratetheirwallsandprovideamodelsystemforstudyingwallbiogenesis ,theirlysisprovidesagentlemeansofpreparingsubcellularor ganelles ,andthemembraneexpositionallowsgeneticmanipulationsinvolvingfusionoruptakeofnucleicacidstobepossible .Theseadvantagesarelessachiev ablewhenusingintactcells (Liciaetal.,1999) .Incomparisonwithlandplantsandunicellularalgae ,on lylimitedrepo… 相似文献
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乙酰褐藻酸丙二酯的制备与表征 总被引:1,自引:0,他引:1
为了改变褐藻酸丙二酯的溶解性,本文以氢碘酸为催化剂,将褐藻酸丙二酯与乙酐反应,制备了乙酰褐藻酸丙二酯。生成物不溶于水,可溶于多种中等极性的有机溶剂。本文用IR,~1H-NMR,HGPC对其进行了表征,并对反应条件对产率的影响进行了探讨。 相似文献
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Takushi Niki Miwa Shimizu Ayako Fujishiro Junji Kinoshita 《Journal of Oceanography》2007,63(5):873-877
During time-series observations in Sagami Bay, Japan, the concentration of dissolved dimethylsulfoniopropionate (DMSPd), a precursor of dimethylsulfide (DMS), was negatively correlated with salinity. In the laboratory, low-salinity shock reduced
DMS production rates of the natural bacterial community and induced rapid DMSP release from a dinophyte, Heterocapsa triquetra, suggesting that low-salinity shock reduced DMSPd consumption but enhanced DMSPd production, which agrees with the negative correlation between DMSPd and salinity observed in Sagami bay. In addition, low-salinity shock did not affect DMSP lyase activity of H. triquetra. Low-salinity shock would increase the contribution from algae in DMS production, leading to an increase in potential DMS
productivity in the environment. 相似文献
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对海洋来源的Vibro sp.QY102的产褐藻胶裂解酶的发酵条件进行研究。结果表明,该菌株最适液体培养基成分为(w/v):0.5%褐藻酸钠;0.4%蛋白胨;0.3%KH2PO4;0.7%K2HPO4.3H2O;2%NaCl;0.01%MgSO4.7H2O,pH=6.0。按3%的接种量接入培养基,30℃150 r/min振荡培养120 h,产酶达到10.2 U/mL,为优化前的4.5倍。Mg2 是该菌株产酶所必需的,这在其他褐藻胶裂解酶生产菌株中未见报道。该菌株产酶发酵条件的研究,为褐藻胶裂解酶的大规模制备及应用奠定了基础。 相似文献
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以双功能褐藻胶裂解酶 (Pseudoalteromonas sp.strain No. 2 72 )分别降解均聚古罗糖醛酸(PG)和均聚甘露糖醛酸 (PM) ,经 Bio- Gel- P6和 POROS- HQ2 0分离得到 2种三糖纯品 ,经 ESI- MS,1 H- NMR,1 3 C- NMR,1 H- 1 H COSY,1 H- 1 3 C HMQC确定其结构为 Δ4,5-古罗糖醛酸 - α(1→ 4 ) - L-古罗糖醛酸 -α(1→ 4 ) - L -古罗糖醛酸 (简写为Δ GG)和Δ4,5-甘露糖醛酸 -β (1→ 4 ) - D-甘露糖醛酸 -β (1→ 4 ) - D-甘露糖醛酸 (ΔMM) ,为进一步从事构效关系研究提供结构信息。 相似文献
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