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関連する概念動画

Distribution and Dispersion00:54

Distribution and Dispersion

20.8K
To understand intra-specific interactions in populations, scientists measure the spatial arrangement of species individuals. This geographic arrangement is known as the species distribution or dispersion. Highly territorial species exhibit a uniform distribution pattern, in which individuals are spaced at relatively equal distances from one another. Species that are highly tied to particular resources, such as food or shelter, tend to concentrate around those resources, and thus exhibit a...
20.8K
Population Growth00:57

Population Growth

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Population size is dynamic, increasing with birth rates and immigration, and decreasing with death rates and emigration. In ideal conditions with unlimited resources, populations can increase exponentially, which plots as a J-shaped growth rate curve of population size against time. This type of curve is characteristic of newly-introduced invasive species, or populations that have suffered catastrophic declines and are rebounding.
23.1K
What is Biodiversity?01:19

What is Biodiversity?

27.6K
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.
27.6K
Threats to Biodiversity01:50

Threats to Biodiversity

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There have been five major extinction events throughout geological history, resulting in the elimination of biodiversity, followed by a rebound of species that adapted to the new conditions. In the current geological epoch, the Holocene, there is a sixth extinction event in progress. This mass extinction has been attributed to human activities and is thus provisionally called the Anthropocene. In 2019 the human population reached 7.7 billion people and is projected to comprise 10 billion by...
21.7K
Ecological Niches02:02

Ecological Niches

22.3K
All organisms have a position within an ecosystem. The complete set of living and nonliving factors—including food resources, climate, and terrain—that define the position of a given organism are collectively referred to as the organism’s ecological niche.
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Habitat Fragmentation02:31

Habitat Fragmentation

15.7K
Habitat fragmentation describes the division of a more extensive, continuous habitat into smaller, discontinuous areas. Human activities such as land conversion, as well as slower geological processes leading to changes in the physical environment, are the two leading causes of habitat fragmentation. The fragmentation process typically follows the same steps: perforation, dissection, fragmentation, shrinkage, and attrition.
15.7K

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関連する実験動画

Updated: Apr 28, 2026

Modeling the Size Spectrum for Macroinvertebrates and Fishes in Stream Ecosystems
07:41

Modeling the Size Spectrum for Macroinvertebrates and Fishes in Stream Ecosystems

Published on: July 30, 2019

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空間的なスケールは,生産性-生物多様性関係の関係を決定する.

Jonathan M Chase1, Mathew A Leibold

  • 1Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA. jchase@pitt.edu

Nature
|March 29, 2002
PubMed
まとめ

種多様性のパターンは,観察の規模に依存する. 池では,局所的な多様性は生産性との状の関係を示し,地域的な多様性は線形的な傾向を示し,スケールに依存する生態学的動態を示しています.

科学分野:

  • エコロジー エコロジー エコロジー
  • 生物多様性 科学 科学 生物多様性
  • 環境科学 環境科学

背景:

  • グローバルな生物多様性の分布は不均一で,エネルギー利用と一次生産性の影響を受けています.
  • 主要生産性と種多様性の関係は変動し,しばしば状または線形として記述されます.
  • 空間的なスケールは,観察された生産性-多様性関係における不一致を説明する可能性がある.

研究 の 目的:

  • 池の生態系におけるスケール依存の生産性-多様性パターンを調査する.
  • 生産性-多様性関係の形が空間的スケールで変化するかどうかを判断する.
  • 地元と地域の視点が生態系パターンに及ぼす影響を調査する.

主な方法:

  • 池の生態系から得られた種の多様性および一次生産性のデータを分析.
  • 生産性-多様性関係を地方 (池間) と地域 (流域間) のスケールで比較する.
  • 地域内の種構成の不一致が生産性とどのように関係しているかを評価する.

主要な成果:

  • 地方規模 (池間) で,生産性と種多様性との間に状の関係が観察されました.
  • 地域規模 (流域間) で,生産性-多様性関係は正線形であった.

さらに関連する動画

Author Spotlight: Understanding Riverine Nitrogen Impacts and Primary Productivity for Effective Nutrient Management
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Author Spotlight: Understanding Riverine Nitrogen Impacts and Primary Productivity for Effective Nutrient Management

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JenaTron - An Experimental Approach to Study the Effects of Plant History and Soil History on Grassland Ecosystem Functioning
09:23

JenaTron - An Experimental Approach to Study the Effects of Plant History and Soil History on Grassland Ecosystem Functioning

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1.8K

関連する実験動画

Last Updated: Apr 28, 2026

Modeling the Size Spectrum for Macroinvertebrates and Fishes in Stream Ecosystems
07:41

Modeling the Size Spectrum for Macroinvertebrates and Fishes in Stream Ecosystems

Published on: July 30, 2019

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Author Spotlight: Understanding Riverine Nitrogen Impacts and Primary Productivity for Effective Nutrient Management
05:04

Author Spotlight: Understanding Riverine Nitrogen Impacts and Primary Productivity for Effective Nutrient Management

Published on: July 14, 2023

946
JenaTron - An Experimental Approach to Study the Effects of Plant History and Soil History on Grassland Ecosystem Functioning
09:23

JenaTron - An Experimental Approach to Study the Effects of Plant History and Soil History on Grassland Ecosystem Functioning

Published on: March 21, 2025

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  • 生産性の向上により,地域内での地元の種組成の格差が大きくなった.
  • 結論:

    • 生産性-多様性のパターンは規模に依存し,地方および地域レベルで異なる形を現しています.
    • 観測されたスケール依存は,生産性が異なる地元の種組成の変化によって引き起こされる.
    • 生態学の研究は,生物多様性のパターンと要因を正確に理解するために,空間的スケールを考慮する必要があります.