Zaręba-Marchewka, K.; Szymańska-Czerwińska, M.; Livingstone, M.; Longbottom, D.; Niemczuk, K.
Whole Genome Sequencing and Comparative Genome Analyses of Chlamydia abortus Strains of Avian Origin Suggests That Chlamydia abortus Species Should Be Expanded to Include Avian and Mammalian Subgroups. Pathogens 2021, 10, 1405.
https://doi.org/10.3390/pathogens10111405
AMA Style
Zaręba-Marchewka K, Szymańska-Czerwińska M, Livingstone M, Longbottom D, Niemczuk K.
Whole Genome Sequencing and Comparative Genome Analyses of Chlamydia abortus Strains of Avian Origin Suggests That Chlamydia abortus Species Should Be Expanded to Include Avian and Mammalian Subgroups. Pathogens. 2021; 10(11):1405.
https://doi.org/10.3390/pathogens10111405
Chicago/Turabian Style
Zaręba-Marchewka, Kinga, Monika Szymańska-Czerwińska, Morag Livingstone, David Longbottom, and Krzysztof Niemczuk.
2021. "Whole Genome Sequencing and Comparative Genome Analyses of Chlamydia abortus Strains of Avian Origin Suggests That Chlamydia abortus Species Should Be Expanded to Include Avian and Mammalian Subgroups" Pathogens 10, no. 11: 1405.
https://doi.org/10.3390/pathogens10111405
APA Style
Zaręba-Marchewka, K., Szymańska-Czerwińska, M., Livingstone, M., Longbottom, D., & Niemczuk, K.
(2021). Whole Genome Sequencing and Comparative Genome Analyses of Chlamydia abortus Strains of Avian Origin Suggests That Chlamydia abortus Species Should Be Expanded to Include Avian and Mammalian Subgroups. Pathogens, 10(11), 1405.
https://doi.org/10.3390/pathogens10111405