Seo, G.W.; Jo, Y.H.; Seong, J.H.; Park, K.B.; Patnaik, B.B.; Tindwa, H.; Kim, S.-A.; Lee, Y.S.; Kim, Y.J.; Han, Y.S.
The Silencing of a 14-3-3ɛ Homolog in Tenebrio molitor Leads to Increased Antimicrobial Activity in Hemocyte and Reduces Larval Survivability. Genes 2016, 7, 53.
https://doi.org/10.3390/genes7080053
AMA Style
Seo GW, Jo YH, Seong JH, Park KB, Patnaik BB, Tindwa H, Kim S-A, Lee YS, Kim YJ, Han YS.
The Silencing of a 14-3-3ɛ Homolog in Tenebrio molitor Leads to Increased Antimicrobial Activity in Hemocyte and Reduces Larval Survivability. Genes. 2016; 7(8):53.
https://doi.org/10.3390/genes7080053
Chicago/Turabian Style
Seo, Gi Won, Yong Hun Jo, Jeong Hwan Seong, Ki Beom Park, Bharat Bhusan Patnaik, Hamisi Tindwa, Sun-Am Kim, Yong Seok Lee, Yu Jung Kim, and Yeon Soo Han.
2016. "The Silencing of a 14-3-3ɛ Homolog in Tenebrio molitor Leads to Increased Antimicrobial Activity in Hemocyte and Reduces Larval Survivability" Genes 7, no. 8: 53.
https://doi.org/10.3390/genes7080053
APA Style
Seo, G. W., Jo, Y. H., Seong, J. H., Park, K. B., Patnaik, B. B., Tindwa, H., Kim, S.-A., Lee, Y. S., Kim, Y. J., & Han, Y. S.
(2016). The Silencing of a 14-3-3ɛ Homolog in Tenebrio molitor Leads to Increased Antimicrobial Activity in Hemocyte and Reduces Larval Survivability. Genes, 7(8), 53.
https://doi.org/10.3390/genes7080053