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Pseudomonas fluorescens 134 as a Biological Control Agent (BCA) Model in Cell Immobilization Technology

机译:荧光假单胞菌134作为细胞固定技术中的生物控制剂(BCA)模型

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摘要

Antifungal activity against Rhizoctonia solani was achieved in vivo through the application of Pseudomonas fluorescens strain 134 encapsulated in sodium alginate beads of different sizes (0.5,1,and 2 mm).The activity was compared to that obtainable with chemical treatments and bead-derived liquid formulations.The latter was obtained by dissolving alginate beads of 1 and 0.5 mm in 1% Na-citrate solution before application,without any significant (P < 0.05) reduction of bacterial numbers during the dissolution process.The dry bead formulations were applied next to the seeds in plant inoculation experiments,resulting in a reduction of disease symptoms,which were markedly reduced when the liquid formulation was applied.Moreover,the rate of disease symptoms related to liquid formulations from both 1 and 0.5 mm beads was comparable (near to 10%) to that of chemical treatment.Pseudomonas fluorescens strain 134 delivered as both dry and liquid formulations was able to colonize cotton root at a population density of about 10~8 CFU/g fresh root,15 days after sowing.
机译:通过将荧光假单胞菌134菌株封装在大小不同(0.5、1和2 mm的海藻酸钠珠中)中,可在体内获得抗枯萎病菌的抗真菌活性,并将其与化学处理和珠源液体获得的活性进行比较后者是通过在使用前将1和0.5 mm的藻酸盐珠溶解在1%柠檬酸钠溶液中而获得的,而在溶解过程中细菌数量没有任何显着(P <0.05)减少。植物接种实验中的种子,减少了病害症状,当使用液体制剂时,症状明显减轻。此外,与液体制剂有关的1和0.5 mm珠粒的病害症状发生率相当(接近10荧光假单胞菌134菌株以干制剂和液态制剂均能在棉花根部定殖。播种15天后,其种群密度约为10〜8 CFU / g新鲜根。

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