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Tonicity in Animals00:59

Tonicity in Animals

The tonicity of a solution determines if a cell gains or loses water in that solution. The tonicity depends on the permeability of the cell membrane for different solutes and the concentration of nonpenetrating solutes in the solution within and outside of the cell. If a semipermeable membrane hinders the passage of some solutes but allows water to follow its concentration gradient, water moves from the side with low osmolarity (i.e., less solute) to the side with higher osmolarity (i.e.,...
Comparative Excretory Systems02:24

Comparative Excretory Systems

Animals have evolved different strategies for excretion, the removal of waste from the body. Most waste must be dissolved in water to be excreted, so an animal’s excretory strategy directly affects its water balance.
Limits to Natural Selection01:38

Limits to Natural Selection

Organisms that are well-adapted to their environment are more likely to survive and reproduce. However, natural selection does not lead to perfectly adapted organisms. Several factors constrain natural selection.For one, natural selection can only act upon existing genetic variation. Hypothetically, redtusks may enhance elephant survival by deterring ivory-seeking poachers. However, if there are no gene variants—or alleles—for redtusks, natural selection cannot increase the prevalence of...
What is Evolutionary History?02:35

What is Evolutionary History?

Scientists record evolutionary history by analyzing fossil, morphological, and genetic data. The fossil record documents the history of life on Earth and provides evidence for evolution. However, both fossil and living organisms offer evidence that outlines Earth’s evolutionary history.Phylogenetic trees illustrate the evolutionary relationships among these organisms. Scientists infer organisms’ common ancestry by evaluating shared morphological and genetic characteristics. Together, the fossil...
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.
Evolution of New Traits in Microbes01:24

Evolution of New Traits in Microbes

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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Updated: Jul 16, 2026

In Vivo Modeling of the Morbid Human Genome using Danio rerio
12:31

In Vivo Modeling of the Morbid Human Genome using Danio rerio

Published on: August 24, 2013

貝殻の組成は,軟体生物の大規模な進化パターンに実質的な影響を与えない.

Susan M Kidwell1

  • 1Department of Geophysical Sciences, University of Chicago, 5734 South Ellis Avenue, Chicago, IL 60637, USA. skidwell@uchicago.edu

Science (New York, N.Y.)
|February 12, 2005
PubMed
まとめ

化石記録は,殻の組成によって大きく左右されないかもしれません. 海洋バイバル属の寿命は,殻の構成とほとんど関係がないことを示しており,保存可能性が化石パターンに弱い影響を与えていることを示唆しています.

科学分野:

  • パレオントロジー・パレオントロジー
  • マリン・バイオロジー マリン・バイオロジー
  • 地質化学 地質化学

背景:

  • 化石記録は,進化の歴史を理解するために極めて重要です.
  • 骨格の残骸の保存可能性は,特に殻の組成においてバイアスを導入することができます.
  • 海洋双弁動物は5億年以上にわたり,貝殻の組成が大きく変化してきた.

研究 の 目的:

  • 貝殻の組成と海洋双弁生物の属性の持続時間との関係を調査する.
  • 殻の保存性による化石記録における潜在的なバイアスを評価する.
  • 貝殻の組成が,海洋生物の進化パターンの知覚に影響するかどうかを判断する.

主な方法:

  • 海洋バイバル類の化石記録の分析.
  • 属の持続時間と殻の組成データとの相関研究.
  • 殻の反応性とその化石化への影響の評価.

主要な成果:

  • 海洋バイバル属の寿命と貝殻の組成との間に重要な関連性はほとんど見つかりませんでした.
  • 観察された関係は,反応性貝殻タイプの好ましい損失からの予想されるバイアスと大きく相違していました.
  • 保存可能性のバイアスは,海洋バイバル化石記録において弱く,またはランダムに分布しているように見えます.

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Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
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Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants

Published on: March 6, 2018

Automated Behavioral Analysis of Large C. elegans Populations Using a Wide Field-of-view Tracking Platform
07:20

Automated Behavioral Analysis of Large C. elegans Populations Using a Wide Field-of-view Tracking Platform

Published on: November 28, 2018

関連する実験動画

Last Updated: Jul 16, 2026

In Vivo Modeling of the Morbid Human Genome using Danio rerio
12:31

In Vivo Modeling of the Morbid Human Genome using Danio rerio

Published on: August 24, 2013

Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
07:08

Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants

Published on: March 6, 2018

Automated Behavioral Analysis of Large C. elegans Populations Using a Wide Field-of-view Tracking Platform
07:20

Automated Behavioral Analysis of Large C. elegans Populations Using a Wide Field-of-view Tracking Platform

Published on: November 28, 2018

結論:

  • 海洋双弁生物の化石記録は,殻の組成に関連する保存可能性バイアスによって著しく歪められていない可能性が高い.
  • 海洋生物における観測された時間パターンは,おそらく本物の生物学的信号を反映している.
  • この発見は,殻を持つ生物の進化の傾向を研究するための化石データの信頼性を裏付けている.