花椰菜促生根瘤菌的分离、鉴定与鉴定。

Archives of basic and applied medicine Pub Date : 2018-02-01 Epub Date: 2018-05-13
Khan F M, Inamul H, Nimatullah, Tariq S, Muhammad F, Ohia C, Tauseef A
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引用次数: 0

摘要

生物肥料目前被认为是合成肥料的有效和环境安全的替代品。近年来,许多根瘤菌在许多植物的生长中得到了商业利用,特别是作为生长促进剂。本研究对采自巴基斯坦伊斯兰堡ChattaBakhtawar的花椰菜(Brasicca oleracea)的根际、根面和根内菌圈进行了分离。提取根瘤菌,并与生物肥料的组成保持一致。采用Luria-Bertini (LB)培养基分离根细菌菌株,通过研究在培养基上生长的菌落的许多形态特征来鉴定根细菌。这些特征包括形状、高度、边缘、不透明度和颜色;这些是定期记录的。根瘤菌的确认;进行生化试验。对14株CF-ES-4、CF-ES-5A、CF-ES-5B、CF-ES-5C、CF-ES-6A、CF-ES-6B、CF-RP-4C、CF-RP-4B、CF-RP-6、CF-RP-5A、CF-RP-4、CF-RS -4、CF-RS-5和CF-RS-6进行革兰氏染色,革兰氏阴性11株,革兰氏阳性3株。磷酸盐阴性菌株为:CF-RP-4C、CF-RS-8、CF-RP-4A、CF-ES-4、CF-RS-7、CF-ES-5C、CF-RP-6,而磷酸盐阳性菌株为CF-RP-5A、CF-RP-5B、CF-ES-5B、CF-ES-5A、CF-RP-4B、CF-ES-6B、CF-RS-4和CF-RS-6;这些证实了根瘤菌的特性。综上所述,本研究为目前对根瘤菌固氮作用的认识增加了更多的信息;这对提高花椰菜等经济作物的产量有一定的参考价值。因此,在农民在农业实践中采用之前,建议将菌株鉴定到物种水平并进行实地研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Isolation, Characterisation and Identification of Plant Growth Promoting Rhizobacteria from Cauliflower (<i>Brassica oleracea</i>).

Isolation, Characterisation and Identification of Plant Growth Promoting Rhizobacteria from Cauliflower (<i>Brassica oleracea</i>).

Isolation, Characterisation and Identification of Plant Growth Promoting Rhizobacteria from Cauliflower (<i>Brassica oleracea</i>).

Isolation, Characterisation and Identification of Plant Growth Promoting Rhizobacteria from Cauliflower (Brassica oleracea).

Bio-fertilizers are currently being considered as effective and environmentally-safe alternatives to synthetic fertilizers. In recent years, the use of many Rhizobia in the growth of many plants has found commercial utilization in developing countries especially as growth promoters. This study was conducted to isolate Rhizobacteria from the rhizosphere, rhizoplane and endorhizosphere of cauliflower (Brasicca oleracea) collected from ChattaBakhtawar, Islamabad, Pakistan. Extraction of rhizobacteria was done and the composition was maintained accordingly as for biofertilizers. Luria-Bertini (LB) media was used to isolate rhizobacterial strains and the identification of rhizobacteria was done by studying many morphological characteristics of colonies growing on the media. These characteristics include Form, Elevation, Margin, Opacity and Colour; these were recorded periodically. For the confirmation of rhizobacteria; biochemical tests were performed. Gram staining was done for 14 strains CF-ES-4, CF-ES-5A, CF-ES-5B, CF-ES-5C, CF-ES-6A, CF-ES-6B, CF-RP-4C, CF-RP-4B, CF-RP-6, CF-RP-5A, CF-RP-4, CF-RS -4, CF-RS-5, and CF-RS-6: Among these, 11 strains were Gram negative while the 3 strains CF-RP-5A, CF-ES-5A and CF-RP-4 were Gram positive. The strains which were phosphate negative were: CF-RP-4C, CF-RS-8, CF-RP-4A, CF-ES-4, CF-RS-7, CF-ES-5C, CF-RP-6 while the CF-RP-5A CF-RP-5B, CF-ES-5B, CF-ES-5A, CF-RP-4B, CF-ES-6B, CF-RS-4 and CF-RS-6 strains were phosphate positive; these confirmed qualities of rhizobacteria. Taken together, the present investigation adds more information to current understanding of Nitrogen-fixing by rhizobacteria; and will be useful for the commercialization of these strains to improve the yield of economic plants like cauliflower. Thus, identification of strains to species level and field studies are recommended before adoption by farmers in agricultural field practices.

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