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What is Biodiversity?01:19

What is Biodiversity?

Biodiversity describes the variety of living things at multiple organizational levels: genetic, species and ecosystem diversity. Species diversity includes all branches of the evolutionary tree from single-celled prokaryotic organisms, bacteria, and archaea, to the eukaryotic kingdoms: plants; animals; fungi; and protists. To date, there have been about 1.75 million species identified, and new species are discovered every week.
Understanding Species and Reproductive Barriers01:17

Understanding Species and Reproductive Barriers

A species is a group of organisms that interbreed and produce fertile offspring. Typically, individuals of the same species appear similar and share common characteristics due to their highly similar genomes. However, not all organisms that look alike are members of the same species. Various mechanisms keep most species discrete. While some mechanisms prevent reproductive behavior and fertilization (pre-zygotic isolation), others prevent the production of fertile offspring after mating has...
Formation of Species01:31

Formation of Species

Speciation describes the formation of one or more new species from one or sometimes multiple original species. The resulting species are discrete from the parent species, and barriers to reproduction will typically exist. There are two primary mechanisms, speciation with and without geographic isolation—allopatric and sympatric speciation, respectively.Allopatric SpeciationIn allopatric speciation, gene flow between two populations of the same species is prevented by a geographic barrier, like...
Mutation, Gene Flow, and Genetic Drift01:09

Mutation, Gene Flow, and Genetic Drift

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).Mechanisms of Genetic VariationThe original sources of genetic variation are mutations,...
Genetics of Speciation02:16

Genetics of Speciation

Speciation is the evolutionary process resulting in the formation of new, distinct species—groups of reproductively isolated populations.The genetics of speciation involves the different traits or isolating mechanisms preventing gene exchange, leading to reproductive isolation. Reproductive isolation can be due to reproductive barriers that have effects either before or after the formation of a zygote. Pre-zygotic mechanisms prevent fertilization from occurring, and post-zygotic mechanisms...
The Evidence for Evolution02:55

The Evidence for Evolution

Genetic variations accumulating within populations over generations give rise to biological evolution. Evolutionary changes can result in the formation of novel varieties and entire new species. These changes are responsible for the diverse forms of life inhabiting the planet. The evidence for evolution suggests that all living organisms descended from common ancestors.The collection of fossils within sedimentary rocks give a record of common ancestry and often depicts the history of evolution.

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Experimental Protocol for Manipulating Plant-induced Soil Heterogeneity
08:16

Experimental Protocol for Manipulating Plant-induced Soil Heterogeneity

Published on: March 13, 2014

種の多様性は,種種化を促す力となる.

Brent C Emerson1, Niclas Kolm

  • 1Centre for Ecology, Evolution and Conservation, School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK. b.emerson@uea.ac.uk

Nature
|April 23, 2005
PubMed
まとめ

種の多様性は,種の増殖を促進することによって,その増殖を促す可能性があります. この研究では,島々での種数の増加は,島々の物理的な特徴を考慮しても,より高い多様化率と相関することが判明しました.

科学分野:

  • 進化の生態学 進化の生態学とは
  • アイランド・バイオジオグラフィー
  • 保護生物学の保護生物学
  • 仕様 研究 研究 仕様

背景:

  • 種多様性のパターンを理解することは,生態学と保全の核心的な問題です.
  • 島生物地理学理論は,移民,絶滅,地域,近隣の役割を強調しています.
  • 種の発生は生物多様性の主要な原動力として認識されているが,その多様性との関係はあまり探求されていない.

研究 の 目的:

  • 種多様性そのものが種の進化を促すという未知の仮説を検証する.
  • 種多様性と島々の多様化率との正の関係を検証する.
  • 種の数が増えると多様化が増加するかどうかを判断する.

主な方法:

  • カナリア諸島とハワイ諸島の植物と節足類のデータを活用した.
  • 多様性指数は,各島における特有種の比率として定義した.
  • 種数の影響を隔離するために,島の重要な物理的特徴を統計的に制御します.

主要な成果:

  • 島の種数とその多様化率との間に強い正の関係が見られた.
  • 固有の種の割合 (多様化の指標) は,総種数とともに著しく増加した.

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関連する実験動画

Last Updated: Jul 14, 2026

Experimental Protocol for Manipulating Plant-induced Soil Heterogeneity
08:16

Experimental Protocol for Manipulating Plant-induced Soil Heterogeneity

Published on: March 13, 2014

Deploying Community Scientists to Conduct Nondestructive Genetic Sampling of Rare Butterfly Populations
07:17

Deploying Community Scientists to Conduct Nondestructive Genetic Sampling of Rare Butterfly Populations

Published on: October 28, 2022

A Concoction Pipeline for Generating Molecular Operational Taxonomic Units (MOTUs) Among Riparian and Aquatic Beetles
10:23

A Concoction Pipeline for Generating Molecular Operational Taxonomic Units (MOTUs) Among Riparian and Aquatic Beetles

Published on: July 11, 2025

  • この関係は,島の面積,孤立度,その他の物理的特徴を考慮した後も持続した.
  • 結論:

    • 種多様性は,さらなる多様化 (種種化) を促進する重要な要因であるようです.
    • この発見は,多様性がより多くの多様性を生み出すフィードバック・ループを支えている.
    • これは,生物多様性のパターンを理解し,島の生態系における保全戦略を伝える上で重要な意味を持つ.