已收录 268921 条政策
 政策提纲
  • 暂无提纲
Endophytic bacterial diversity of Avicennia marina helps to confer resistance against salinity stress in Solanum lycopersicum
[摘要] The current study aimed to explore the endophytic bacterial diversity of Avicennia marina and the potential roles of these endophytes in counteracting saline conditions in tomato plants. Molecular analysis revealed strains from Paenibacillus, Bacillus, Microbacterium , Citrobacter , Lysinibacillus, Halomonas, Virgibacillus , Exiguobacterium , and Vibrio . However, Bacillus pumilus AM11 and Exiguobacterium sp . AM25 showed significantly higher growth in saline media. In response to salinity stress, tomato plants treated with AM11 and AM25 showed significantly higher (∼15–23%) biomass, photosynthetic rate and pigment accumulation compared to controls. Salinity-exposed plants had significantly reduced growth and increased (three-fold) lipid peroxidation, whilst glutathione, catalase, and peroxidase activities were significantly reduced. In contrast, AM11, AM25, and methionine improved these physiochemical attributes. The study concludes that the application of bacterial endophytes from plants growing in saline conditions can offer other plants similar stress-resistance potential. Such halophytic bacterial strains can be used to improve plant growth in saline conditions.
[发布日期]  [发布机构] 
[效力级别]  [学科分类] 纳米科学和纳米技术
[关键词] Salinity;Avicennia marina;plant microbe interaction;endophyte;antioxidants;methionine [时效性] 
   浏览次数:1      统一登录查看全文      激活码登录查看全文