从根瘤土壤中分离的细菌对水稻植物生长的可持续促进作用

Bikash Behera, Kumudini Mahto, Saikh Md Awesh Azam, R. Mishra, B. Sethi, Biswaranjan Pradhan, Santosh Kumar Singh, Tapaswini Hota, Harishankar Dey
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摘要

本研究从豆科植物(Phaseolus vulgaris)的根瘤土壤中收集并鉴定了 16 个细菌分离株,分别命名为 BB-1 至 BB-16。在这 16 个细菌分离物中,有 6 个细菌分离物显示出磷酸盐溶解能力的阳性活性,3 个细菌分离物显示出氨生产的阳性活性,6 个细菌分离物显示出吲哚乙酸(IAA)生产的阳性活性,3 个细菌分离物可以溶解钾肥,3 个细菌分离物产生纤维素酶,6 个细菌分离物显示出几丁质酶的阳性活性,5 个细菌分离物检测出淀粉酶的阳性活性,4 个细菌分离物显示出蛋白酶的阳性活性。细菌分离物中只有 BB-7 能产生氰化氢(HCN)。土曲霉和红青霉菌等真菌病原体对大多数细菌分离物具有抗性,而细菌分离物 BB-3 则对红青霉菌表现出敏感性。它们的定量磷酸盐溶解能力为 47.5-77.8 微克/毫升,氨产量为 2.45-3.45 毫克/升,IAA 产量为 22.5-29.5 微克/毫升。在 16 个细菌分离物中,有一个细菌分离物 BB-7 在大多数测试中均呈阳性,经鉴定为盘菌。该分离菌的植物生长促进活性表明,与对照水稻植株相比,接种了 P. agglomerans 培养物的水稻盆栽根系和芽的生长量更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainable Rice Plant Growth Promotion by Bacteria Isolated from Rhizosphere Soil
In the present study, sixteen bacterial isolates were collected and identified from the rhizosphere soil of the bean plant (Phaseolus vulgaris), named BB-1 to BB-16. Out of the sixteen bacterial isolates, six isolates showed positive activity of phosphate solubilization ability, three bacterial isolates were found positive for ammonia production, six were positive for Indole acetic acid (IAA) production, three could solubilize potash, three bacterial isolates produced cellulase, six exhibited positive for chitinase, five were tested positive for amylase and four bacterial isolates were positive for protease activity. Hydrogen Cyanide (HCN) production was noticed by the bacterial isolates BB-7only. The fungal pathogen such as Aspergillus terreus, and Penicillium rubidurum was resistant to most bacterial isolates, whereas bacterial isolate BB-3 showed sensitivity against Penicillium rubidurum. Their quantitative phosphate solubilization ability was 47.5-77.8 µg/ml, ammonia production was between 2.45 - 3.45 mg/l, and IAA production was 22.5 -29.5 µg/ml. Of the sixteen bacterial isolates, one bacterial isolate, BB-7, was positive for most of the tests and identified as Pantoea agglomerans. Plant growth-promoting activity of the isolate showed that in comparison to the control rice plant, higher root and shoot growth was achieved in rice pot inoculated with P. agglomerans culture
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