Screening of endophytic isolates for plant growth promotion in rice

dc.contributor.advisorJupinder Kaur
dc.contributor.authorSimran
dc.date.accessioned2021-07-28T05:20:40Z
dc.date.available2021-07-28T05:20:40Z
dc.date.issued2021
dc.description.abstractThe present investigation was conducted to study the effect of endophytic bacterial culture on root architecture, microbial activities, growth and yield of rice crop (variety PB1509 and PR121). To achieve this objective, bacterial cultures were characterized biochemically for oxidase, catalase, MRVP and citrate utilization. All the cultures were positive for catalase and citrate utilization except the bacterial culture RB11, which was not able to utilize citrate as carbon source. 5% bacterial culture were found positive for MR test, whereas, 70 % bacterial cultures were found positive for VP test. All the bacterial cultures were screened for PGP traits. Out of 18 bacterial cultures, 16 bacterial cultures were able to solubilize phosphate. Significant higher phosphate solubilization index (3.4 mm) was observed for the bacterial culture RB18. Among 18 bacterial cultures, 6 bacterial cultures were able to form clear zone on minimal media supplemented with zinc oxide. Significant higher zinc solubilization index (4.5 mm) was observed for bacterial culture RB5 followed by RB1 (4.3 mm). Ten bacterial cultures were able to produce ammonia and 6 bacterial cultures were able to produce HCN. Among 6 bacterial cultures, Maximum production of HCN was showed by bacterial culture RB6 and RB7. Three bacterial cultures were able to form fluorescent yellow coloured zones on Chrome-azurol S (CAS) agar plates, indicating production of siderophore. Significant higher halozone diameter (12.1 mm) was produced by bacterial culture RB1 followed by RB4 (12 mm). Out of 18 bacterial cultures, 16 tested positive for ACC deaminase activity. All the bacterial cultures were able to produce IAA. Significant higher amount of IAA (39.77 µg/ml) was produced by bacterial culture RB18 followed by bacterial culture RB16 (35.33 µg/ml) and RB4 (34.44 µg/ml) in the medium not supplemented with tryptophan. In the medium supplemented with tryptophan, the bacterial culture RB18 produced significant higher amount of IAA (53.55 µg/ml) followed by RB16 (48.55 µg/ml) and RB6 (48.48 µg/ml). The production of gibberellic acid was also recorded. It ranged between 1.68 µg/ml - 20.65 µg/ml. Significant higher amount of gibberellic acid (20.65 µg/ml) was produced by bacterial culture RB18 followed by RB16 (17.32 µg/ml) and RB11 (13.49 µg/ml). On the basis of multiple PGP traits, 4 bacterial cultures were selected (Enterobacter sp., Rhizobium sp. Enterobacter sp. and Azospirillum sp.) to test their biofertilizer potential using rice crop as host. Among the 4 selected bacterial cultures, the Azospirillum sp. was able to significantly enhance the no. of roots, root thickness, area and volume of roots. The growth and yield of rice obtained from Azospirillum sp. was significantly higher as compared to un-inoculated rice crop and the crop treated with other bacterial cultures. The Azospirillum sp. showed non-significant difference with PAU recommended biofertilizer for rice crop. The microbial population was found to be significantly improved with the use of biofertilizer as compared to uninoculated control. The bacterial culture Azospirillum sp. was found to be best culture in terms of PGP traits, growth and yield of rice crop.en_US
dc.identifier.citationSimran (2021). Screening of endophytic isolates for plant growth promotion in rice (Unpublished M.Sc. thesis). Punjab Agricultural University, Ludhiana, Punjab, India.en_US
dc.identifier.urihttps://krishikosh.egranth.ac.in/handle/1/5810170963
dc.keywordsFunctional characterization, Fertilizer, Endophytic bacterial culture, Microbial population, Rice crop, PB1509, PR121.en_US
dc.language.isoEnglishen_US
dc.pages101en_US
dc.publisherPunjab Agricultural University, Ludhianaen_US
dc.research.problemScreening of endophytic isolates for plant growth promotion in riceen_US
dc.subMicrobiologyen_US
dc.themeScreening of endophytic isolates for plant growth promotion in riceen_US
dc.these.typeM.Scen_US
dc.titleScreening of endophytic isolates for plant growth promotion in riceen_US
dc.typeThesisen_US
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