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1.
J Biosci ; 2013 Nov; 38(4): 789-795
Artigo em Inglês | IMSEAR | ID: sea-161866

RESUMO

Trees of Myrica sp. grow abundantly in the forests of Meghalaya, India. These trees are actinorhizal and harbour nitrogen-fixing Frankia in their root nodules and contribute positively towards the enhancement of nitrogen status of forest areas. They can be used in rejuvenation of mine spoils and nitrogen-depleted fallow lands generated due to slash and burn agriculture practiced in the area. We have studied the association of amplicon restriction patterns (ARPs) of Myrica ribosomal RNA gene and internal transcribed spacer (ITS) region and nitrogenase activity of its root nodules. We found that ARPs thus obtained could be used as markers for early screening of seedlings that could support strains of Frankia that fix atmospheric nitrogen more efficiently.

2.
Rev. colomb. biotecnol ; 7(1): 66-75, jul. 2005. tab, graf
Artigo em Espanhol | LILACS | ID: lil-606123

RESUMO

El uso desmedido de fertilizantes químicos nitrogenados y pesticidas ha traído graves consecuencias ambientales, por lo que se ha prestado gran atención al estudio de la microbiota nativa de los cultivos y sus beneficios a la planta, incluyendo la caña de azúcar. Este trabajo se realizó con el objetivo de caracterizar la microbiota nativa de la caña de azúcar. Se utilizaron 5 cepas bacterianas y 50 aislados provenientes del interior de este cultivo. Se determinó la actividad nitrogenasa y la influencia de la fuente de carbono, nitrógeno y el pH en la misma, mediante cromatografía gaseosa. Se detectó la producción de ácido indolacético por Dot-Immunobinding y el método de Salkowski. Del total de cepas y aislados, 19 mostraron actividad nitrogenasa, con valores entre 100 y 5000 //g/mL, y 6, Gluconacetobacter diazotrophicus PAl-5, Gluconacetobacter diazotrophicus 1-05, Gluconacetobacter diazotrophicus 4-02, aislado 17, aislado 30 y aislado 305; además, tienen la capacidad de producir AIA (valores entre 1,7 y 2,5 JMg/mL). Se demostró que las fuentes nutricionales y el pH del medio de cultivo influyen sobre la actividad nitrogenasa de las cepas representativas de la comunidad endófita.


Excessive application of chemical nitrogen fertilisers and pesticides has badly affected the environment. This has led to great interest being shown in studying a crop’s native microbial community and its benefit for plants. This paper was thus aimed at characterising sugarcane’s endophytic microbial community. 5 sugar cane strains and 50 isolates were used. Gas chromatography was used for measuring nitrogenase activity and the influence of carbon and nitrogen sources and pH on cultures. Indol acetic (IAA) production was detected by Dot-Immunobinding and Salkowski’s method. These results show that 19 strains and isolates had nitrogenase activity, values ranging from 100 to 5000 /zg/mL; 6 of them produced IAA (values ranging from 1,7 to 2,5 //g/mL): Gluconacetobacter iazotrophicus PAl-5, Gluconacetobacter diazotrophicus 1-05, Gluconacetobacter diazotrophicus 4-02, 17, 30 and 305. It was demonstrated that culture medium nutrient sources and pH affectedthe nitrogenase activity of the strains representing the endophytic community.


Assuntos
Nitrogenase , Uso de Praguicidas , Saccharum/efeitos adversos , Saccharum/microbiologia , Saccharum/toxicidade , Ácido Hidroxi-Indolacético
3.
J Biosci ; 1981 Jun; 3(2): 117-124
Artigo em Inglês | IMSEAR | ID: sea-160104

RESUMO

A slow growing nitrogen-fixing strain of Vigna radiata var. aureus (mung bean) Rhizobium which expressed nitrogenase activity in a synthetic medium was isolated from its native population. Mutants with decreased and increased nitrogenase activity were derived from this strain by treatment with acridine orange and ethidium bromide. These mutants were tested for symbiotic effectivity in vivo. The effectivity of mutants with decreased nitrogenase activity in the culture medium was lower than the parent strain; however, the effectivity of mutants with higher nitrogenase activity did not increase above that of the parent. This suggests that the plant is perhaps a limiting factor in the full expression of rhizobial nitrogenase in the nodules.

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