Morcillo, Rafael J. L.; Vilchez, Juan, I.; Zhang, Song; Kaushal, Richa; He, Danxia; Zi, Hailing; Liu, Renyi; Niehaus, Karsten; Handa, Avtar K.; Zhang, Huiming: Plant Transcriptome Reprograming and Bacterial Extracellular Metabolites Underlying Tomato Drought Resistance Triggered by a Beneficial Soil Bacteria. In: Metabolites. Jg.11 H. 6. 2021
Inhalt
- Results and Discussion
- Bacillus Megaterium TG1-E1 Increases Drought Resistance in Tomato Seedlings
- Bacillus Megaterium TG1-E1 Induces Transcriptomic Reprograming of in Tomato Plants under Drought Stress
- Hyperosmotic Stress Induces TG1-E1 Production of Extracellular Metabolites Including Potential Osmoprotectants
- Materials and Methods
- Plant Materials and Growth Conditions
- Bacterial Culture and Inoculation
- Monitoring of Plant Growth
- Bacteria Root Colonization
- Quantification of Chlorophyll Contents and Photosynthesis Efficiency
- Bacterial Extracellular Metabolite Collection and GC-MS Analysis
- RNAseq Analysis
- Statistical Analysis
- Conclusions
- References
