Ben Mefteh, F.; Frikha, F.; Daoud, A.; Chenari Bouket, A.; Luptakova, L.; Alenezi, F.N.; Al-Anzi, B.S.; Oszako, T.; Gharsallah, N.; Belbahri, L.
Response Surface Methodology Optimization of an Acidic Protease Produced by Penicillium bilaiae Isolate TDPEF30, a Newly Recovered Endophytic Fungus from Healthy Roots of Date Palm Trees (Phoenix dactylifera L.). Microorganisms 2019, 7, 74.
https://doi.org/10.3390/microorganisms7030074
AMA Style
Ben Mefteh F, Frikha F, Daoud A, Chenari Bouket A, Luptakova L, Alenezi FN, Al-Anzi BS, Oszako T, Gharsallah N, Belbahri L.
Response Surface Methodology Optimization of an Acidic Protease Produced by Penicillium bilaiae Isolate TDPEF30, a Newly Recovered Endophytic Fungus from Healthy Roots of Date Palm Trees (Phoenix dactylifera L.). Microorganisms. 2019; 7(3):74.
https://doi.org/10.3390/microorganisms7030074
Chicago/Turabian Style
Ben Mefteh, Fedia, Fakher Frikha, Amal Daoud, Ali Chenari Bouket, Lenka Luptakova, Faizah N. Alenezi, Bader S. Al-Anzi, Tomasz Oszako, Neji Gharsallah, and Lassaad Belbahri.
2019. "Response Surface Methodology Optimization of an Acidic Protease Produced by Penicillium bilaiae Isolate TDPEF30, a Newly Recovered Endophytic Fungus from Healthy Roots of Date Palm Trees (Phoenix dactylifera L.)" Microorganisms 7, no. 3: 74.
https://doi.org/10.3390/microorganisms7030074
APA Style
Ben Mefteh, F., Frikha, F., Daoud, A., Chenari Bouket, A., Luptakova, L., Alenezi, F. N., Al-Anzi, B. S., Oszako, T., Gharsallah, N., & Belbahri, L.
(2019). Response Surface Methodology Optimization of an Acidic Protease Produced by Penicillium bilaiae Isolate TDPEF30, a Newly Recovered Endophytic Fungus from Healthy Roots of Date Palm Trees (Phoenix dactylifera L.). Microorganisms, 7(3), 74.
https://doi.org/10.3390/microorganisms7030074