PGPR-Mediated Salt Tolerance in Maize by Modulating Plant Physiology, Antioxidant Defense, Compatible Solutes Accumulation and Bio-Surfactant Producing Genes

被引:162
作者
Ali, Baber [1 ]
Wang, Xiukang [2 ]
Saleem, Muhammad Hamzah [3 ]
Sumaira, Aqsa [4 ]
Hafeez, Aqsa [1 ]
Afridi, Muhammad Siddique [5 ]
Khan, Shahid [6 ,7 ]
Zaib-Un-Nisa, Antonio Teixeira do [8 ]
Ullah, Izhar [1 ]
Amaral Junior, Antonio Teixeira do [7 ,9 ]
Alatawi, Aishah
Ali, Shafaqat [10 ,11 ]
机构
[1] Quaid i Azam Univ, Dept Plant Sci, Islamabad 45320, Pakistan
[2] Yanan Univ, Coll Life Sci, Yanan 716000, Peoples R China
[3] Huazhong Agr Univ, Coll Plant Sci & Technol, Wuhan 430070, Peoples R China
[4] Quaid i Azam Univ, Dept Biotechnol, Islamabad 45320, Pakistan
[5] Fed Univ Lavras UFLA, Dept Plant Pathol, BR-37200900 Lavras, MG, Brazil
[6] Univ Swabi, Dept Agr, Ambar 94640, Swabi, Pakistan
[7] Univ Estadual Norte Fluminense Darcy Ribeiro UENF, Ctr Ciencias & Tecnol Agr, Lab Melhoramento Genet Vegetal, BR-28013602 Campos Dos Goytacazes, RJ, Brazil
[8] Cotton Res Inst, Multan 60000, Pakistan
[9] Univ Tabuk, Biol Dept, Fac Sci, Tabuk 71421, Saudi Arabia
[10] Govt Coll Univ, Dept Environm Sci, Faisalabad 38000, Pakistan
[11] China Med Univ, Dept Biol Sci & Technol, Taichung 40402, Taiwan
来源
PLANTS-BASEL | 2022年 / 11卷 / 03期
基金
中国国家自然科学基金;
关键词
abiotic stresses; agriculture; halo-tolerant bacteria; plant-microbe interactions; salinity stress; GROWTH-PROMOTING RHIZOBACTERIA; CICER-ARIETINUM L; ZEA-MAYS L; OXIDATIVE STRESS; SOIL-SALINITY; ACC-DEAMINASE; BIOFILM FORMATION; DROUGHT STRESS; BACTERIA; OSMOLYTES;
D O I
10.3390/plants11030345
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Salinity stress is a barrier to crop production, quality yield, and sustainable agriculture. The current study investigated the plant growth promotion, biochemical and molecular characterization of bacterial strain Enterobacter cloacae PM23 under salinity stress (i.e., 0, 300, 600, and 900 mM). E. cloacae PM23 showed tolerance of up to 3 M NaCl when subjected to salinity stress. Antibiotic-resistant Iturin C (ItuC) and bio-surfactant-producing genes (sfp and srfAA) were amplified in E. cloacae PM23, indicating its multi-stress resistance potential under biotic and abiotic stresses. Moreover, the upregulation of stress-related genes (APX and SOD) helped to mitigate salinity stress and improved plant growth. Inoculation of E. cloacae PM23 enhanced plant growth, biomass, and photosynthetic pigments under salinity stress. Bacterial strain E. cloacae PM23 showed distinctive salinity tolerance and plant growth-promoting traits such as indole-3-acetic acid (IAA), siderophore, ACC deaminase, and exopolysaccharides production under salinity stress. To alleviate salinity stress, E. cloacae PM23 inoculation enhanced radical scavenging capacity, relative water content, soluble sugars, proteins, total phenolic, and flavonoid content in maize compared to uninoculated (control) plants. Moreover, elevated levels of antioxidant enzymes and osmoprotectants (Free amino acids, glycine betaine, and proline) were noticed in E. cloacae PM23 inoculated plants compared to control plants. The inoculation of E. cloacae PM23 significantly reduced oxidative stress markers under salinity stress. These findings suggest that multi-stress tolerant E. cloacae PM23 could enhance plant growth by mitigating salt stress and provide a baseline and ecofriendly approach to address salinity stress for sustainable agriculture.
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页数:26
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