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In a population that is not at Hardy-Weinberg equilibrium, the frequency of alleles changes over time. Therefore, any deviations from the five conditions of Hardy-Weinberg equilibrium can alter the genetic variation of a given population. Conditions that change the genetic variability of a population include mutations, natural selection, non-random mating, gene flow, and genetic drift (small population size).
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The genomes of eukaryotes are punctuated by long stretches of sequence which do not code for proteins or RNAs. Although some of these regions do contain crucial regulatory sequences, the vast majority of this DNA serves no known function. Typically, these regions of the genome are the ones in which the fastest change, in evolutionary terms, is observed, because there is typically little to no selection pressure acting on these regions to preserve their sequences.
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Evolution of New Traits in Microbes01:24

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Microorganisms evolve rapidly due to their large population sizes and short generation times, often exhibiting measurable changes within days under laboratory conditions. Natural selection acts on standing genetic variation, enabling the retention and amplification of beneficial traits that confer fitness advantages in changing environments.Adaptive Pigment Regulation in RhodobacterIn Rhodobacter, a genus of purple non-sulfur bacteria, light-harvesting pigments such as bacteriochlorophyll and...
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Procedure for Adaptive Laboratory Evolution of Microorganisms Using a Chemostat
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単一の遺伝子の複数の変異を通して,複数の特性の適応的進化.

Catherine R Linnen1, Yu-Ping Poh, Brant K Peterson

  • 1Department of Biology, University of Kentucky, Lexington, KY 40506, USA. catherine.linnen@uky.edu

Science (New York, N.Y.)
|March 16, 2013
PubMed
まとめ

鹿ネズミは自然淘汰によってネブラスカの砂丘でカモフラージュのためにより軽いコートを進化させた. この適応は,アグウティ遺伝子内の複数の変異を伴うため,有害な副作用を最小限に抑え,局所適応を促進します.

科学分野:

  • 進化生物学の進化生物学について
  • 遺伝学 遺伝学とは
  • 動物の色付け 動物の色付け

背景:

  • 適応性フェノタイプの変化は,正確な変異によって引き起こされる.
  • これらの変異を理解することは,進化のメカニズムの鍵です.
  • 鹿のネズミの毛皮の色の変動は,その環境と関連しています.

研究 の 目的:

  • 鹿のネズミの浅い毛色の遺伝的根拠を調査するために.
  • 肉食動物に対する光の色調の選択的優位性を決定する.
  • 複数の突然変異が局所適応にどのように貢献するのかを理解する.

主な方法:

  • 捕食を評価するために,プラスティリンモデルを使用したフィールド研究.
  • 混在した鹿ネズミ集団における色差の分析.
  • コート色の特徴と関連したアグウティロカス内の遺伝領域の識別.

主要な成果:

  • 浅いコートの色は,視覚的に狩猟する捕食者に対して有意な選択的利点を提供します.
  • 軽いサンドヒルズの現象型は,複数の異なる特徴で構成されています.
  • Agouti locus内の複数の変異に対する独立した選択は,局所的な適応を駆動する.

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結論:

  • 鹿のマウスの局所的な適応は,アグウティの場所内の複数の変異に対する独立した選択の結果である.
  • それぞれの変異は,適応性のあるフェノタイプに特定の影響を及ぼし,プレイオトロプ的影響を最小限に抑えます.
  • このメカニズムは,重要なトレードオフなしに適応を可能にします.