Application of rice (Oryza sativa L.) root endophytic diazotrophic Azotobacter sp. strain Avi2 (MCC 3432) can increase rice yield under green house and field condition
Author:
Funder
Indian Council of Agricultural Research
Publisher
Elsevier BV
Subject
Microbiology
Reference35 articles.
1. Improvement in nitrogen use efficiency: physiological and molecular approaches;Abrol;Curr. Sci.,1999
2. Plant-associated Bacillus modulates the expression of auxin-responsive genes of rice and modifies the root architecture;Ambreetha;Rhizosphere,2018
3. Chlorophyll fluorescence as a selection criterion for grain yield in durum wheat under Mediterranean conditions;Araus;Field Crops Res.,1998
4. A new report on rapid, cheap and easily extractable mass spore production of Beauveria bassiana using recyclable polyurethane foams as support medium;Banik;J. Microbiol Biotech. Res.,2014
5. Characterization of N2-fixing plant growth promoting endophytic and epiphytic bacterial community of Indian cultivated and wild rice (Oryza spp.) genotypes;Banik;Planta,2016
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