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関連する概念動画

Circadian Rhythms and Gene Regulation02:19

Circadian Rhythms and Gene Regulation

The biological clock is involved in many aspects of regulating complex physiology in all animals. It was in 1935 when German zoologists, Hans Kalmus and Erwin Bünning, discovered the existence of circadian rhythm in Drosophila melanogaster. However, the internal molecular mechanisms behind the circadian clock remained a mystery until 1984, when Jeffrey C. Hall, Michael Rosbash, and Michael W. Young discovered the expression of the Per gene oscillating over a 24-hour cycle. In subsequent years,...
Circadian Rhythms and Gene Regulation02:19

Circadian Rhythms and Gene Regulation

The biological clock is involved in many aspects of regulating complex physiology in all animals. It was in 1935 when German zoologists, Hans Kalmus and Erwin Bünning, discovered the existence of circadian rhythm in Drosophila melanogaster. However, the internal molecular mechanisms behind the circadian clock remained a mystery until 1984, when Jeffrey C. Hall, Michael Rosbash, and Michael W. Young discovered the expression of the Per gene oscillating over a 24-hour cycle. In subsequent years,...
Biological Clocks and Seasonal Responses02:45

Biological Clocks and Seasonal Responses

The circadian—or biological—clock is an intrinsic, timekeeping, molecular mechanism that allows plants to coordinate physiological activities over 24-hour cycles called circadian rhythms. Photoperiodism is a collective term for the biological responses of plants to variations in the relative lengths of dark and light periods. The period of light-exposure is called the photoperiod.
Chronopharmacokinetics: Circadian Rhythms and Influence on Drug Response01:15

Chronopharmacokinetics: Circadian Rhythms and Influence on Drug Response

Circadian rhythms are cyclic changes that are crucial in plasma drug concentrations. Various standard circadian parameters, including core body temperature, heart rate, and other cardiovascular factors, directly impact disease states and the therapeutic response to drug therapy.
The time of drug administration is an important factor to consider, as it can influence the toxic dose of a drug. For example, a study conducted by Prins et al. in 1997 examined the effects of the timing of...
Human Genetics01:28

Human Genetics

Human genetics provides a profound framework for understanding the interplay between genetic predispositions and human psychology. At the heart of this discipline lies the study of how genes influence physical traits, behaviors, and susceptibility to diseases. Each person carries a unique genetic code that subtly or significantly shapes their psychological and behavioral landscape.
The complex relationship between genetics and psychology is observable through common biological components such...
Behavioral Genetics and Its Designs01:23

Behavioral Genetics and Its Designs

Behavior genetics explores how genetic inheritance influences human behavior. It focuses on how genes, passed from parents to offspring, contribute to the development of behavioral traits and tendencies. This branch of genetics seeks to understand the complex interplay between inherited genetic factors and environmental influences in shaping our behaviors.
The primary methodologies used in behavior genetics include family studies, twin studies, and adoption studies, each providing unique...

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関連する実験動画

Updated: Jun 28, 2026

Monitoring Cell-autonomous Circadian Clock Rhythms of Gene Expression Using Luciferase Bioluminescence Reporters
10:38

Monitoring Cell-autonomous Circadian Clock Rhythms of Gene Expression Using Luciferase Bioluminescence Reporters

Published on: September 27, 2012

行動の根底にある遺伝子を探す:昼夜リズムから学ぶこと

Joseph S Takahashi1, Kazuhiro Shimomura, Vivek Kumar

  • 1Howard Hughes Medical Institute, Northwestern University, Evanston, IL 60208, USA. j-takahashi@northwestern.edu

Science (New York, N.Y.)
|November 8, 2008
PubMed
まとめ

フォワード遺伝学では,遺伝子を行動と結びつけることで,昼夜リズムを制御する遺伝子を成功裏に特定しました. これらの方法は,現在,不安や学習などの他の複雑な行動を研究するために適用できます.

科学分野:

  • 神経科学は神経科学である.
  • 遺伝学 遺伝学とは
  • クロノバイオロジー クロノバイオロジー

背景:

  • 前進的な遺伝子スクリーンは,複雑な生物システムの解剖に役立っています.
  • 複雑な分子メカニズムによって支配される昼夜リズムは,行動に重大な遺伝的影響を及ぼします.

研究 の 目的:

  • 昼間の時計のメカニズムを解明する上での前向きな遺伝学の成功の背後にある理由を探求する.
  • これらの遺伝的アプローチの適用性を他の複雑な行動に実証する.

主な方法:

  • 前向きの遺伝子スクリーンを活用して,昼夜リズムに影響を与える遺伝子を特定する.
  • 遺伝子,細胞プロセス,神経回路,観察可能な行動の間のつながりを分析する.
  • サーカディアンリズム研究から他の行動領域に成功した方法論を抽出する.

主要な成果:

  • Forward geneticsは,ドロソフィラや哺乳類のようなモデル生物の昼夜時計と行動の基礎となる重要な遺伝子を成功裏に発見しました.
  • 特定の遺伝子,細胞機能,神経経路,および昼間の出力間の明確なリンクを確立しました.
  • 単一の遺伝子が行動に実質的な影響を与える可能性があることを実証した.

さらに関連する動画

In Vitro Bioluminescence Assay to Characterize Circadian Rhythm in Mammary Epithelial Cells
11:56

In Vitro Bioluminescence Assay to Characterize Circadian Rhythm in Mammary Epithelial Cells

Published on: September 28, 2017

Recording and Analysis of Circadian Rhythms in Running-wheel Activity in Rodents
05:46

Recording and Analysis of Circadian Rhythms in Running-wheel Activity in Rodents

Published on: January 24, 2013

関連する実験動画

Last Updated: Jun 28, 2026

Monitoring Cell-autonomous Circadian Clock Rhythms of Gene Expression Using Luciferase Bioluminescence Reporters
10:38

Monitoring Cell-autonomous Circadian Clock Rhythms of Gene Expression Using Luciferase Bioluminescence Reporters

Published on: September 27, 2012

In Vitro Bioluminescence Assay to Characterize Circadian Rhythm in Mammary Epithelial Cells
11:56

In Vitro Bioluminescence Assay to Characterize Circadian Rhythm in Mammary Epithelial Cells

Published on: September 28, 2017

Recording and Analysis of Circadian Rhythms in Running-wheel Activity in Rodents
05:46

Recording and Analysis of Circadian Rhythms in Running-wheel Activity in Rodents

Published on: January 24, 2013

結論:

  • 前向きの遺伝学は,複雑な行動の遺伝的構造を解剖するための強力な戦略です.
  • サーカディアン研究で成功した原則と方法は,不安,中毒,学習と記憶の遺伝的根拠を調査するために適応することができます.