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Natural Selection and Adaptation01:15

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Natural selection, a fundamental concept in evolutionary biology, is the mechanism by which evolution is driven, favoring organisms that are best adapted to their environments. This process enhances their chances of survival and reproduction. Adaptation, a key outcome of this process, involves genetic modifications that optimize an organism's functionality under specific environmental challenges, such as extreme cold or thinner air at high altitudes.
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Although the genetic makeup of an organism plays a major role in determining the phenotype, there are also several environmental factors, such as temperature, oxygen availability, presence of mutagens, that can alter an organism’s phenotype.
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Among the three main modes of HGT—transformation, conjugation, and transduction—transduction is unique in that it is mediated by bacteriophages, or bacterial viruses.Transduction occurs in two ways. Generalized transduction occurs during the lytic cycle of a bacteriophage infection. In this process, bacteriophages infect bacterial cells, replicate within them, and ultimately cause cell lysis, releasing newly assembled virions. Occasionally, random fragments of the bacterial genome...
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Natural selection influences the frequencies of particular alleles and phenotypes within populations in several different ways. Primarily, natural selection can be directional, stabilizing, or disruptive. Directional selection favors one extreme trait and shifts the population towards that phenotype while selecting against individuals displaying alternate traits. Stabilizing selection favors an intermediate trait with a narrow range of variation. Deviation from the optimal phenotype towards an...
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Updated: Feb 23, 2026

Author Spotlight: Understanding Microbe Adaptation Using Innovative Techniques for Exploring Thermophilic Evolution
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Adaptation to a novel family environment involves both apparent and cryptic phenotypic changes.

Matthew Schrader1, Benjamin J M Jarrett2, Darren Rebar2,3

  • 1Department of Biology, The University of the South, Sewanee, TN 37383, USA msschrad@sewanee.edu.

Proceedings. Biological Sciences
|September 8, 2017
PubMed
Summary

Cryptic evolution, where one evolutionary change masks another, was observed in burying beetles adapting to new social conditions. This adaptation revealed a hidden increase in larval mass, demonstrating evolutionary environmental deterioration.

Keywords:
burying beetleco-adaptationcryptic evolutionexperimental evolutionparental caresocial evolution

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Area of Science:

  • Evolutionary biology
  • Behavioral ecology
  • Animal behavior

Background:

  • Cryptic evolution occurs when evolutionary changes are masked by environmental shifts.
  • Evolutionary environmental deterioration is a type of cryptic evolution where one trait's evolution masks another's.
  • Detecting evolutionary environmental deterioration is challenging, with few documented examples.

Purpose of the Study:

  • To investigate cryptic evolution in experimental burying beetle (Nicrophorus vespilloides) populations.
  • To identify instances of evolutionary environmental deterioration in a novel social environment lacking parental care.
  • To understand how adaptation to social changes can mask other evolutionary trajectories.

Main Methods:

  • Experimental evolution with burying beetle populations adapting to the absence of post-hatching parental care.
  • Monitoring breeding success and larval density across generations.
  • Analyzing changes in the reaction norm relating larval mass to larval density.

Main Results:

  • Burying beetle populations rapidly adapted to the removal of parental care.
  • Adaptation led to increased breeding success and larval density.
  • These increases masked a concurrent, cryptic rise in mean larval mass over generations.

Conclusions:

  • The study presents a likely case of evolutionary environmental deterioration in Nicrophorus vespilloides.
  • Changes in social interactions can mask evolutionary shifts in other traits, such as body size.
  • Cryptic evolution may be common in social animals due to interacting evolutionary pressures.