Zubair Muhammad, Hanif Alvina, Farzand Ayaz, Sheikh Taha Majid Mahmood, Khan Abdur Rashid, Suleman Muhammad, Ayaz Muhammad, Gao Xuewen
Department of Plant Pathology, College of Plant Protection, Nanjing Agricultural University, Key Laboratory of Integrated Management of Crop Diseases and Pests, Ministry of Education, Nanjing 210095, China.
Department of Plant Pathology, University of Agriculture, Faisalabad P.O. Box 38040, Pakistan.
Microorganisms. 2019 Sep 10;7(9):337. doi: 10.3390/microorganisms7090337.
Abiotic stress in plants pose a major threat to cereal crop production worldwide and cold stress is also notorious for causing a decrease in plant growth and yield in wheat. The present study was designed to alleviate cold stress on plants by inoculating psychrophilic PGPR bacteria belonging to Bacillus genera isolated from extreme rhizospheric environments of Qinghai-Tibetan plateau. The genetic screening of psychrophilic spp. CJCL2, RJGP41 and temperate FZB42 revealed presence of genetic features corresponding to cold stress response, membrane transport, signal transduction and osmotic regulation. Subsequently, the time frame study for the expression of genes involved in these pathways was also significantly higher in psychrophilic strains as analyzed through qPCR analysis at 4 ℃. The inoculated cold tolerant Bacillus strains also aided in inducing stress response in wheat by regulating abscisic acid, lipid peroxidation and proline accumulation pathways in a beneficial manner. Moreover, during comparative analysis of growth promotion in wheat all three Bacillus strains showed significant results at 25 ℃. Whereas, psychrophilic Bacillus strains CJCL2 and RJGP41 were able to positively regulate the expression of phytohormones leading to significant improvement in plant growth under cold stress.
植物中的非生物胁迫对全球谷类作物生产构成重大威胁,冷胁迫也因导致小麦植株生长和产量下降而臭名昭著。本研究旨在通过接种从青藏高原极端根际环境中分离出的属于芽孢杆菌属的嗜冷植物根际促生细菌来缓解植物的冷胁迫。对嗜冷菌株CJCL2、RJGP41和嗜温菌株FZB42的基因筛选显示,存在与冷胁迫响应、膜转运、信号转导和渗透调节相对应的遗传特征。随后,通过在4℃下进行qPCR分析,嗜冷菌株中参与这些途径的基因表达的时间框架研究结果也显著更高。接种的耐寒芽孢杆菌菌株还通过以有益的方式调节脱落酸、脂质过氧化和脯氨酸积累途径,帮助小麦诱导胁迫反应。此外,在对小麦生长促进的比较分析中,所有三种芽孢杆菌菌株在25℃时均显示出显著结果。而嗜冷芽孢杆菌菌株CJCL2和RJGP41能够正向调节植物激素的表达,从而在冷胁迫下显著促进植物生长。