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- photoperiodic、photoperiodicity、photoperiodism
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English Journal
- Adaptation of oxidative phosphorylation to photoperiod-induced seasonal metabolic states in migratory songbirds.
- Trivedi AK1, Malik S2, Rani S2, Kumar V3.
- Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.Comp Biochem Physiol A Mol Integr Physiol.2015 Jun;184:34-40. doi: 10.1016/j.cbpa.2015.01.011. Epub 2015 Jan 28.
- Eukaryotic cells produce chemical energy in the form of ATP by oxidative phosphorylation of metabolic fuels via a series of enzyme mediated biochemical reactions. We propose that the rates of these reactions are altered, as per energy needs of the seasonal metabolic states in avian migrants. To inve
- PMID 25636903
- Localization of quantitative trait loci for diapause and other photoperiodically regulated life history traits important in adaptation to seasonally varying environments.
- Tyukmaeva VI1,2, Veltsos P2, Slate J3, Gregson E3,4, Kauranen H1, Kankare M1, Ritchie MG2, Butlin RK3,5, Hoikkala A1.
- Molecular ecology.Mol Ecol.2015 Jun;24(11):2809-19. doi: 10.1111/mec.13202. Epub 2015 May 19.
- Seasonally changing environments at high latitudes present great challenges for the reproduction and survival of insects, and photoperiodic cues play an important role in helping them to synchronize their life cycle with prevalent and forthcoming conditions. We have mapped quantitative trait loci (Q
- PMID 25877951
- Photoperiodic effects on seasonal physiology, reproductive status and hypothalamic gene expression in young male F344 rats.
- Tavolaro FM1, Thomson LM, Ross AW, Morgan PJ, Helfer G.
- Journal of neuroendocrinology.J Neuroendocrinol.2015 Feb;27(2):79-87. doi: 10.1111/jne.12241.
- Seasonal or photoperiodically sensitive animals respond to altered day length with changes in physiology (growth, food intake and reproductive status) and behaviour to adapt to predictable yearly changes in the climate. Typically, different species of hamsters, voles and sheep are the most studied a
- PMID 25443173
Japanese Journal
- 出葉転換点および幼穂形成始期により分画したイネの成長相における 感光性評価
- 薮田 伸,箱山 晋,稲福 さゆり [他],福澤 康典,川満 芳信
- 日本作物学会紀事 84(1), 64-68, 2015
- イネの短日に対する応答,いわゆる感光性は出穂の促進として広く知られており,短日処理により出穂が促進された期間を可消栄養成長相として捉え,その大小で感光性を評価してきた.しかし,著者らの研究から感光性が存在するとされてきた可消栄養成長相の他,生殖成長相においてもその存在が示唆されたため,従来法に代えて成長相ごとの感光性を許容した成長相の分画法を考案した.すなわち基本栄養成長相を播種~出葉転換点,可消 …
- NAID 130004829747
- 日本産タンポキンウワバにおける幼生期の生態・形態に関する知見--光周誘導される幼虫休眠および潜在的な年2化性についての考察
- 34. DNAメチル化による光周的花成関連遺伝子の発現制御(口頭発表)
- 近藤 洋,加藤 朗,伊藤 紀美子,岡崎 桂一,竹能 清俊
- 植物化学調節学会研究発表記録集 (42), 47, 2007-10-05
- … Accordingly, we compared the genomic DNA extracted from photoperiodically induced P. …
- NAID 110006474727
Related Links
- SPECIFIC RNA FROM PHOTOPERIODICALLY INDUCED COTYLEDONS OF PHARBITIS NIL. YOSHIDA K. Biological Institute, Faculty of Science, Nagoya University. UMEMURA K. Biological Institute, Faculty of Science, Nagoya University ...
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