Cold and desiccation stress induced changes in the accumulation and utilization of proline and trehalose in seasonal populations ofDrosophila immigrans.
Tamang, A. M., Kalra, B. & Parkash, R. (2017).Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 203, 304-313.
Targeted mutagenesis and functional analysis of adipokinetic hormone-encoding gene inDrosophila.
Sajwan, S., Sidorov, R., Stašková, T., Žaloudíková, A., Takasu, Y., Kodrík, D. & Zurovec, M. (2015).Insect Biochemistry and Molecular Biology, 61, 79-86.
Use of Drosophila as an Evaluation Method Reveals imp as a Candidate Gene for Type 2 Diabetes in Rat Locus Niddm22.
Kawasaki, K., Yamada, S., Ogata, K., Saito, Y., Takahama, A., Yamada, T., Matsumoto, K. & Kose, H. (2015).Journal of Diabetes Research, 2015, Article ID 758564.
Short-term adaptation during propagation improves the performance of xylose-fermentingSaccharomyces cerevisiaein simultaneous saccharification and co-fermentation.
Nielsen, F., Tomás-Pejó, E., Olsson, L. & Wallberg, O. (2015).Biotechnology for Biofuels, 8(1), 219.
Rapid effects of humidity acclimation on stress resistance inDrosophila melanogaster.
Aggarwal, D. D., Ranga, P., Kalra, B., Parkash, R., Rashkovetsky, E. & Bantis, L. E. (2013).Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 166(1), 81-90.
Starvation resistance and effects of diet on energy reserves in a predatory ground beetle (Merizodus soledadinus; Carabidae) invading the Kerguelen Islands.
Laparie, M., Larvor, V., Frenot, Y. & Renault, D. (2012).Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 161(2), 122-129.
Freezing tolerance and low molecular weight cryoprotectants in an invasive parasitic fly, the deer ked (Lipoptena cervi).
Nieminen, P., Paakkonen, T., Eerilä, H., Puukka, K., Riikonen, J., Lehto, V. P. & Mustonen, A. M. (2012).Journal of Experimental Zoology Part A: Ecological Genetics and Physiology, 317(1), 1-8.