Journal of biological rhythms. 2025 Mar 24:7487304251327871. doi: 10.1177/07487304251327871 Q22.92024
Direct Temperature Responses of Bmal1 and Per2 in Reindeer Fibroblasts: Insight Into a Unique Circadian Clock Adaptation to Polar Environments
驯鹿成纤维细胞中Bmal1和Per2对温度的直接反应:极地环境中独特的生物钟适应性解析 翻译改进
作者单位 +展开
作者单位
DOI: 10.1177/07487304251327871 PMID: 40125938
摘要 中英对照阅读
相关内容
-
The Variety and Inscrutability of Polar Environments as a Resource of Biotechnologically Relevant Molecules
极地环境的多样性和不可预测性作为生物技术相关分子的资源
Microorganisms. 2020 Sep 16;8(9):1422.
-
Aromatic donor-acceptor interactions in non-polar environments
非极性环境下的芳香给体-受体相互作用
Chemical communications (Cambridge, England). 2015 May 14;51(39):8265-8.
-
Characterization and genomic analysis of two novel psychrotolerant Acidithiobacillus ferrooxidans strains from polar and subpolar environments
来自极地和亚极地环境的两种新型耐冷酸性硫化铁氧化菌株的表征及基因组分析
Frontiers in microbiology. 2022 Aug 24:13:960324.
-
Polychlorinated naphthalenes in polar environments--a review
极地环境中多氯化萘的研究进展综述
The Science of the total environment. 2010 Jul 1;408(15):2919-35.
-
Biological timekeeping in polar environments: lessons from terrestrial vertebrates
极地环境中的生物节律:从陆生脊椎动物中获得的启示
The Journal of experimental biology. 2023 Dec 1;226(23):jeb246308.
-
The microbial diversity of Polar environments is a fertile ground for bioprospecting
极地环境微生物多样性是生物筛选的沃土
Marine genomics. 2012 Dec:8:15-22.
-
Thermodynamic stability of hydrogen-bonded systems in polar and nonpolar environments
氢键体系在极性与非极性环境中的热力学稳定性
Journal of computational chemistry. 2010 Jul 30;31(10):2046-55.
-
Draft genome sequencing of Naganishia species isolated from the polar environments
南极环境中分离出的Naganishia菌种的基因组草图测序
Microbiology resource announcements. 2023 Oct 19;12(10):e0038823.