Photoperiodic diapause under the control of circadian clock genes in an insect T Ikeno, SI Tanaka, H Numata, SG Goto BMC biology 8, 1-9, 2010 | 219 | 2010 |
Heat-and cold-shock responses and temperature adaptations in subtropical and temperate species of Drosophila SG Goto, MT Kimura Journal of insect Physiology 44 (12), 1233-1239, 1998 | 177 | 1998 |
Roles of circadian clock genes in insect photoperiodism SG Goto Entomological Science 16 (1), 1-16, 2013 | 138 | 2013 |
Accumulation of Hsp70 mRNA under environmental stresses in diapausing and nondiapausing adults of Drosophila triauraria SG Goto, KM Yoshida, MT Kimura Journal of Insect Physiology 44 (10), 1009-1015, 1998 | 132 | 1998 |
Gene expression of heat-shock proteins (Hsp23, Hsp70 and Hsp90) during and after larval diapause in the blow fly Lucilia sericata SI Tachibana, H Numata, SG Goto Journal of Insect Physiology 51 (6), 641-647, 2005 | 131 | 2005 |
Short-day and long-day expression patterns of genes involved in the flesh fly clock mechanism: period, timeless, cycle and cryptochrome SG Goto, DL Denlinger Journal of Insect Physiology 48 (8), 803-816, 2002 | 125 | 2002 |
Circadian clock genes period and cycle regulate photoperiodic diapause in the bean bug Riptortus pedestris males T Ikeno, H Numata, SG Goto Journal of insect physiology 57 (7), 935-938, 2011 | 97 | 2011 |
Expression of Drosophila homologue of senescence marker protein-30 during cold acclimation SG Goto Journal of insect physiology 46 (7), 1111-1120, 2000 | 97 | 2000 |
A novel gene that is up-regulated during recovery from cold shock in Drosophila melanogaster SG Goto Gene 270 (1-2), 259-264, 2001 | 90 | 2001 |
Photoperiodic response requires mammalian-type cryptochrome in the bean bug Riptortus pedestris T Ikeno, H Numata, SG Goto Biochemical and Biophysical Research Communications 410 (3), 394-397, 2011 | 83 | 2011 |
Peripheral circadian clock for the cuticle deposition rhythm in Drosophila melanogaster C Ito, SG Goto, S Shiga, K Tomioka, H Numata Proceedings of the National Academy of Sciences 105 (24), 8446-8451, 2008 | 82 | 2008 |
Heat-shock-responsive genes are not involved in the adult diapause of Drosophila triauraria SG Goto, MT Kimura Gene 326, 117-122, 2004 | 80 | 2004 |
Phylogenetic utility of mitochondrial COI and nuclear Gpdh genes in Drosophila SG Goto, MT Kimura Molecular Phylogenetics and Evolution 18 (3), 404-422, 2001 | 80 | 2001 |
RNAi of the circadian clock gene period disrupts the circadian rhythm but not the circatidal rhythm in the mangrove cricket H Takekata, Y Matsuura, SG Goto, A Satoh, H Numata Biology letters 8 (4), 488-491, 2012 | 67 | 2012 |
Functional characterization of an aquaporin in the Antarctic midge Belgica antarctica SG Goto, BN Philip, NM Teets, Y Kawarasaki, RE Lee Jr, DL Denlinger Journal of Insect Physiology 57 (8), 1106-1114, 2011 | 65 | 2011 |
Molecular characterization of visual pigments in Branchiopoda and the evolution of opsins in Arthropoda K Kashiyama, T Seki, H Numata, SG Goto Molecular biology and evolution 26 (2), 299-311, 2009 | 62 | 2009 |
A nondiapausing variant of the flesh fly, Sarcophaga bullata, that shows arrhythmic adult eclosion and elevated expression of two circadian clock genes, period and timeless SG Goto, B Han, DL Denlinger Journal of Insect Physiology 52 (11-12), 1213-1218, 2006 | 62 | 2006 |
Molecular characterization of the circadian clock genes in the bean bug, Riptortus pedestris, and their expression patterns under long-and short-day conditions T Ikeno, H Numata, SG Goto Gene 419 (1-2), 56-61, 2008 | 61 | 2008 |
Involvement of the brain region containing pigment-dispersing factor-immunoreactive neurons in the photoperiodic response of the bean bug, Riptortus pedestris T Ikeno, H Numata, SG Goto, S Shiga Journal of Experimental Biology 217 (3), 453-462, 2014 | 57 | 2014 |
The clock gene period is essential for the photoperiodic response in the jewel wasp Nasonia vitripennis (Hymenoptera: Pteromalidae) A Mukai, SG Goto Applied Entomology and Zoology 51, 185-194, 2016 | 56 | 2016 |