ライフサイクル,フィットネス分離,多細胞性の進化
Katrin Hammerschmidt1, Caroline J Rose1, Benjamin Kerr2
1New Zealand Institute for Advanced Study and Allan Wilson Centre for Molecular Ecology &Evolution, Massey University, Auckland 0745, New Zealand.
Nature
|November 7, 2014
まとめ
初期の生命は,生命周期の中で"詐欺師"の細胞を受け入れ,多細胞性につながることで,協力性を進化させた. この戦略は,チート・プーリングとは異なり,集団的進化と個性を育成した.
科学分野:
- 進化生物学の進化生物学について
- 多細胞性の起源について
- 微生物の進化について
背景:
- 協力は,多細胞生物にとって不可欠である.
- "詐欺師"細胞に対する集団的整合性を維持することは,進化の重要な課題です.
- 生命周期の初期に浮気が果たす役割は議論されている.
研究 の 目的:
- 初期の集団が詐欺師に対してどのように誠実さを保ったかを調査する.
- 協力の進化におけるライフサイクルの役割を探求する.
- ダーウィンの個性の出現を理解するために.
主な方法:
- 細菌の協力の実験的進化.
- バクテリア集団の選択的増殖は,異なるライフサイクル体制の下で行われます.
- 集団的および個々の細胞の適性を分析する.
主要な成果:
- 詐欺師を擁する集団は,発達的なスイッチを進化させた.
- この抱擁は,分離した集団と細胞のフィットネスにつながった.
- チート・プーリング・レジミンは,そのような発展や分離をもたらさなかった.
結論:
- 生命周期の中で浮気者を受け入れることは,多細胞性の進化を容易にする.
- 開発戦略は,集団的フィットネスと個人のフィットネスを切り離すための鍵です.
- この研究は,ダーウィンの個人性への移行に光を当てています.
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