Department of Microbiology, Akal College of Basic Sciences, Eternal University, Baru Sahib, Sirmour, 173101, India.
Department of Biotechnology, Dr. Khem Singh Gill Akal College of Agriculture, Eternal University, Baru Sahib, Sirmour, 173101, India.
Braz J Microbiol. 2023 Mar;54(1):371-383. doi: 10.1007/s42770-023-00913-7. Epub 2023 Feb 6.
Low-temperature stress can seriously impair plant physiology. Chilling injury leads to a complex array of cellular dysfunctions, and symptoms include chlorosis, sterility, loss of vigor, wilting, and even death of the plants. Furthermore, phosphorus limitations additionally halt the growth of plants. Low-temperature adaptive plant growth-promoting microbes through various direct and indirect mechanisms help in the survival of plants under stress conditions. The present investigation deals with isolation of P-solubilizing psychrotrophic bacteria from diverse cultivars of wheat grown in the Keylong region of Himachal Pradesh. A total of 33 P-solubilizing bacterial isolates were obtained. P-solubilizers were screened for different plant growth-promoting (PGP) attributes of K and Zn solubilization, production of IAA, siderophores, and different hydrolytic enzymes. Among 33 P-solubilizers, 8 efficient strains exhibiting multiple PGP attributes were used as bioinoculants for wheat under low-temperature stress in different in vitro and in vivo experiments. The psychrotrophic bacterial isolates positively influenced the growth and physiological parameters as well as nutrient uptake and yield of wheat and efficiently alleviated low-temperature stress. The potential of low-temperature stress adaptive and PGP microbes can be utilized in agricultural sector for amelioration of low-temperature stress and plant growth promotion. The present study deals with the isolation of psychrotrophic P-solubilizers with multiple PGP attributes and their role in alleviation of cold stress in wheat.
低温胁迫会严重损害植物的生理机能。冷害会导致一系列复杂的细胞功能障碍,其症状包括黄化、不育、活力丧失、萎蔫,甚至植物死亡。此外,磷素限制还会阻碍植物的生长。低温适应型植物促生微生物通过各种直接和间接的机制,帮助植物在胁迫条件下生存。本研究从喜玛拉雅邦基隆地区不同品种的小麦中分离出了具有解磷能力的嗜冷菌。共获得 33 株解磷细菌分离株。对解磷菌进行了不同的植物促生(PGP)特性筛选,包括 K 和 Zn 的溶解、IAA、铁载体和不同水解酶的产生。在 33 株解磷菌中,有 8 株表现出多种 PGP 特性的高效菌株被用作生物接种剂,在不同的体外和体内实验中用于小麦的低温胁迫。这些嗜冷细菌分离株对小麦的生长和生理参数、养分吸收和产量都有积极的影响,并有效地缓解了低温胁迫。低温胁迫适应型和 PGP 微生物的潜力可以在农业领域中得到利用,以改善低温胁迫和促进植物生长。本研究涉及到具有多种 PGP 特性的嗜冷解磷菌的分离及其在缓解小麦冷胁迫中的作用。