Morcillo, R.J.L.; VÃlchez, J.I.; Zhang, S.; Kaushal, R.; He, D.; Zi, H.; Liu, R.; Niehaus, K.; Handa, A.K.; Zhang, H.
Plant Transcriptome Reprograming and Bacterial Extracellular Metabolites Underlying Tomato Drought Resistance Triggered by a Beneficial Soil Bacteria. Metabolites 2021, 11, 369.
https://doi.org/10.3390/metabo11060369
AMA Style
Morcillo RJL, VÃlchez JI, Zhang S, Kaushal R, He D, Zi H, Liu R, Niehaus K, Handa AK, Zhang H.
Plant Transcriptome Reprograming and Bacterial Extracellular Metabolites Underlying Tomato Drought Resistance Triggered by a Beneficial Soil Bacteria. Metabolites. 2021; 11(6):369.
https://doi.org/10.3390/metabo11060369
Chicago/Turabian Style
Morcillo, Rafael J. L., Juan I. VÃlchez, Song Zhang, Richa Kaushal, Danxia He, Hailing Zi, Renyi Liu, Karsten Niehaus, Avtar K. Handa, and Huiming Zhang.
2021. "Plant Transcriptome Reprograming and Bacterial Extracellular Metabolites Underlying Tomato Drought Resistance Triggered by a Beneficial Soil Bacteria" Metabolites 11, no. 6: 369.
https://doi.org/10.3390/metabo11060369
APA Style
Morcillo, R. J. L., VÃlchez, J. I., Zhang, S., Kaushal, R., He, D., Zi, H., Liu, R., Niehaus, K., Handa, A. K., & Zhang, H.
(2021). Plant Transcriptome Reprograming and Bacterial Extracellular Metabolites Underlying Tomato Drought Resistance Triggered by a Beneficial Soil Bacteria. Metabolites, 11(6), 369.
https://doi.org/10.3390/metabo11060369