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用于缓解玉米碱性胁迫的促植物生长耐碱产碱杆菌属和芽孢杆菌属菌株的特性分析

Characterization of plant growth-promoting alkalotolerant Alcaligenes and Bacillus strains for mitigating the alkaline stress in Zea mays.

作者信息

Dixit Vijay Kant, Misra Sankalp, Mishra Shashank Kumar, Tewari Shri Krishna, Joshi Namita, Chauhan Puneet Singh

机构信息

CSIR- National Botanical Research Institute, Rana Pratap Marg, Lucknow, 226 001, India.

Department of Environmental Science, Kanya Gurukul Campus, Gurukul Kangri University, Haridwar, 249404, India.

出版信息

Antonie Van Leeuwenhoek. 2020 Jul;113(7):889-905. doi: 10.1007/s10482-020-01399-1. Epub 2020 Mar 9.

Abstract

Intensification of sodic soil due to increasing pH is an emerging environmental issue. The present study aimed to isolate and characterise alkaline stress-tolerant and plant growth-promoting bacterial strains from moderately alkaline soil (pH 8-9), strongly alkaline soil (pH 9-10), and very strongly alkaline soil (> 10). Total 68 bacteria were isolated, and screened for multiple plant growth promoting (PGP) attributes. Out of total, 42 isolates demonstrating at least three plant growth promoting PGP traits selected for further assays. Then out of 42, 15 bacterial isolates were selected based on enhanced maize plant growth under greenhouse experiment, and 16S rRNA gene sequencing revealed Bacillus spp. as a dominant genus. Furthermore, based on improved seed germination percentage and biomass of maize (Zea mays L.) under alkaline stress conditions Alcaligenes sp. NBRI NB2.5, Bacillus sp. NBRI YE1.3, and Bacillus sp. NBRI YN4.4 bacterial strains were selected, and evaluated for growth-promotion and alkaline stress amelioration under greenhouse condition. Amongst the selected 3 plant growth promoting rhizobacterial (PGPR) strains, Bacillus sp. NBRI YN4.4 significantly improved the photosynthetic pigments and soluble sugar content, and decreased proline level in inoculated maize plants as compared to uninoculated control under stress conditions. Moreover, significantly enhanced soil enzymes such as dehydrogenase, alkaline phosphatase and betaglucosidase due to inoculation of Bacillus sp. NBRI YN4.4 in maize plants grown in alkaline soil attributes to its role in improving the soil health. Therefore, alkaline stress-tolerant PGPR NBRI YN4.4 can be useful for developing strategies for the reclamation of saline/sodic soils and improving the plant growth and soil health in sustainable manner.

摘要

由于pH值升高导致的盐碱土强化是一个新出现的环境问题。本研究旨在从适度碱性土壤(pH 8 - 9)、强碱性土壤(pH 9 - 10)和极强碱性土壤(> 10)中分离并鉴定耐碱性胁迫和促进植物生长的细菌菌株。共分离出68株细菌,并对其多种促进植物生长(PGP)特性进行了筛选。其中,42株表现出至少三种促进植物生长的PGP特性的菌株被选作进一步分析。然后,在这42株中,基于温室试验中玉米植株生长增强,挑选出15株细菌分离株,16S rRNA基因测序显示芽孢杆菌属为优势属。此外,基于碱性胁迫条件下玉米(Zea mays L.)种子发芽率和生物量的提高,挑选出产碱菌属菌株NBRI NB2.5、芽孢杆菌属菌株NBRI YE1.3和芽孢杆菌属菌株NBRI YN4.4,并在温室条件下对其促进生长和缓解碱性胁迫的能力进行评估。在所选的3株植物根际促生细菌(PGPR)菌株中,与胁迫条件下未接种的对照相比,芽孢杆菌属菌株NBRI YN4.4显著提高了接种玉米植株的光合色素和可溶性糖含量,并降低了脯氨酸水平。此外,在碱性土壤中生长的玉米植株中接种芽孢杆菌属菌株NBRI YN4.4后,脱氢酶、碱性磷酸酶和β - 葡萄糖苷酶等土壤酶显著增强,这归因于其在改善土壤健康方面的作用。因此,耐碱性胁迫的PGPR菌株NBRI YN4.4可用于制定盐碱土改良策略,并以可持续方式改善植物生长和土壤健康。

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