Is evolution Darwinian or/and Lamarckian?

Эволюция является дарвиновской и/или ламарковской?
Yuri I. Wolf, Eugene V. Koonin
2009-01-01

CRISPR-Cas systemLamarckian evolutionhorizontal gene transfernatural selectionstress-induced mutagenesis
BACKGROUND: The year 2009 is the 200th anniversary of the publication of Jean-Bapteste Lamarck's Philosophie Zoologique and the 150th anniversary of Charles Darwin's On the Origin of Species. Lamarck believed that evolution is driven primarily by non-randomly acquired, beneficial phenotypic changes, in particular, those directly affected by the use of organs, which Lamarck believed to be inheritable. In contrast, Darwin assigned a greater importance to random, undirected change that provided material for natural selection. THE CONCEPT: The classic Lamarckian scheme appears untenable owing to the non-existence of mechanisms for direct reverse engineering of adaptive phenotypic characters acquired by an individual during its life span into the genome. However, various evolutionary phenomena that came to fore in the last few years, seem to fit a more broadly interpreted (quasi)Lamarckian paradigm. The prokaryotic CRISPR-Cas system of defense against mobile elements seems to function via a bona fide Lamarckian mechanism, namely, by integrating small segments of viral or plasmid DNA into specific loci in the host prokaryote genome and then utilizing the respective transcripts to destroy the cognate mobile element DNA (or RNA). A similar principle seems to be employed in the piRNA branch of RNA interference which is involved in defense against transposable elements in the animal germ line. Horizontal gene transfer (HGT), a dominant evolutionary process, at least, in prokaryotes, appears to be a form of (quasi)Lamarckian inheritance. The rate of HGT and the nature of acquired genes depend on the environment of the recipient organism and, in some cases, the transferred genes confer a selective advantage for growth in that environment, meeting the Lamarckian criteria. Various forms of stress-induced mutagenesis are tightly regulated and comprise a universal adaptive response to environmental stress in cellular life forms. Stress-induced mutagenesis can be construed as a quasi-Lamarckian phenomenon because the induced genomic changes, although random, are triggered by environmental factors and are beneficial to the organism. CONCLUSION: Both Darwinian and Lamarckian modalities of evolution appear to be important, and reflect different aspects of the interaction between populations and the environment.
1
CRISPR-Cas defense integrates viral or plasmid DNA into specific host loci and uses resulting transcripts to target cognate mobile elements, constituting a bona fide Lamarckian mechanism.
2
Horizontal gene transfer is characterized as quasi-Lamarckian inheritance because environmental conditions influence both transfer rates and the genes acquired.
3
Stress-induced mutagenesis is described as a regulated, broadly universal adaptive response to environmental stress in cellular organisms.
4
The classic Lamarckian mechanism is considered untenable because no mechanism directly reverse-engineers acquired adaptive phenotypes into the genome.
5
The piRNA pathway appears to use a similar adaptive sequence-acquisition principle to defend animal germ lines against transposable elements.

Evolutionary processes and mechanisms in cellular life forms, including prokaryotic and animal systems

The roles and mechanisms of Darwinian random variation, natural selection, and (quasi-)Lamarckian inheritance in evolution, including CRISPR-Cas defense, piRNA-mediated transposon defense, horizontal gene transfer, and stress-induced mutagenesis

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2009-01-01
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Yuri I. Wolf
Eugene V. Koonin
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