Department of Microbiology, Central Research Institute for Dryland Agriculture, Santoshnagar, Hyderabad, Andhra Pradesh, India.
Arch Microbiol. 2010 Oct;192(10):867-76. doi: 10.1007/s00203-010-0613-5. Epub 2010 Aug 11.
In this study we isolated and screened drought tolerant Pseudomonas isolates from arid and semi arid crop production systems of India. Five isolates could tolerate osmotic stress up to -0.73 MPa and possessed multiple PGP properties such as P-solubilization, production of phytohormones (IAA, GA and cytokinin), siderophores, ammonia and HCN however under osmotic stress expression of PGP traits was low compared to non-stressed conditions. The strains were identified as Pseudomonas entomophila, Pseudomonas stutzeri, Pseudomonas putida, Pseudomonas syringae and Pseudomonas monteilli respectively on the basis of 16S rRNA gene sequence analysis. Osmotic stress affected growth pattern of all the isolates as indicated by increased mean generation time. An increase level of intracellular free amino acids, proline, total soluble sugars and exopolysaccharides was observed under osmotic stress suggesting bacterial response to applied stress. Further, strains GAP-P45 and GRFHYTP52 showing higher levels of EPS and osmolytes (amino acids and proline) accumulation under stress as compared to non-stress conditions, also exhibited higher expression of PGP traits under stress indicating a relationship between stress response and expression of PGP traits. We conclude that isolation and screening of indigenous, stress adaptable strains possessing PGP traits can be a method for selection of efficient stress tolerant PGPR strains.
在这项研究中,我们从印度干旱和半干旱作物生产系统中分离和筛选了耐旱假单胞菌。有 5 个分离株能够耐受高达-0.73 MPa 的渗透压,并具有多种植物促生特性,如溶磷、产生植物激素(IAA、GA 和细胞分裂素)、铁载体、氨和 HCN,但在渗透压胁迫下,与非胁迫条件相比,PGP 特性的表达水平较低。根据 16S rRNA 基因序列分析,这些菌株分别被鉴定为食虫假单胞菌、施氏假单胞菌、恶臭假单胞菌、丁香假单胞菌和蒙特利假单胞菌。渗透压胁迫影响了所有分离株的生长模式,表现为平均世代时间增加。在渗透压胁迫下,观察到细胞内游离氨基酸、脯氨酸、总可溶性糖和胞外多糖的水平增加,表明细菌对施加的胁迫有反应。此外,与非胁迫条件相比,菌株 GAP-P45 和 GRFHYTP52 在胁迫下表现出更高水平的 EPS 和渗透物(氨基酸和脯氨酸)积累,以及更高水平的 PGP 特性表达,表明胁迫响应与 PGP 特性表达之间存在关系。我们得出结论,分离和筛选具有 PGP 特性的本土、适应压力的菌株可以作为选择有效耐胁迫 PGPR 菌株的方法。