Biological Evolution in a Changing Environment - Towards an Engineering Hypothesis — различия между версиями

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(Новая: I speculated before that the fertilised ovum prior to zygote development is a possible system for genetic or organic mutations [three]. In the fertilised ovum the biochemical 'fusion' of...)
 
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I speculated before that the fertilised ovum prior to zygote development is a possible system for genetic or organic mutations [three]. In the fertilised ovum the biochemical 'fusion' of the male and woman pronuclei will take area by means of a organic spindle and vitality transfer to/from the atmosphere, top to the generation of the zygote genome. Assuming that the biochemical reactions involved in the fusion procedure are considerably-from-equilibrium in relation to the atmosphere, we may possibly be in a position to implement the chaos idea of the renowned thermodynamicist Ilya Prigogine, as follows.
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No one can dispute Darwin's contributions to our knowledge of evolution as a phenomenon, but there is increasing skepticism about the theory or method - normal choice - by which evolution is said to take spot. The principle of natural selection includes two separate processes, i.e. the mutation procedure (by which a genetic or, more broadly, a organic mutation takes place) and the assortment process (which will take spot afterwards, and decides regardless of whether the mutated organism survives the problems of a shifting environment). In this case the setting plays a part in the variety process and not the mutation approach. Different theories of evolution posit that the atmosphere performs a position directly in the process of organic mutation, and as such the variety method is not significant. This would recommend that evolution might be much much more rapid than formerly considered, especially in the context of a shifting environment.
  
In engineering conditions we can outline a organic technique as a shut method that interacts with the setting (surroundings) by indicates of mass transfer (e.g. through a cell membrane) and/or strength transfer (e.g. operate done by or on the environment). Prigogine and co-employees proved that in some situations a closed system can exhibit chaotic conduct when it exists in a far-from-equilibrium condition relative to environmental situations (i.e. when there is a big thermodynamic driving force for mass and/or strength transfer amongst the technique and the environment). Theoretical developments in the discipline of non-equilibrium thermodynamics expose that sophisticated, ordered chemical buildings can be made in these kinds of programs [four]. It follows that the chemical construction of the zygote genome fashioned in the fertilised ovum might be dependent upon environmental conditions. Any variation in the environmental conditions would result in altered complexity or composition of the zygote genome.
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There is frustrating evidence that the setting is not merely a limiting aspect in the survival of mutated organisms, but instead is a source of extraneous content and strength in the processes that outcome in mutations in the initial spot. I will briefly overview two these kinds of processes prior to I propose an engineering hypothesis. Horizontal gene transfer, e.g. by implies of viruses, is a single illustration of environmental interference in the genomes of organisms. Interestingly, this would entail that all organisms within a species who were infected by a particular virus may possibly mutate at the very same time. This is in contradiction with the tree-of-life hypothesis underpinning the idea of normal selection [1]. Secondly, the groundbreaking operate of Moshe Szyf and co-employees in the subject of epigenetics has demonstrated that environmental contaminants can change genes 'on' or 'off' in the mammalian embryo. This study implies that specific environmental pressures on the systems biology of the embryo can guide to specific hereditary qualities [2].
  
In summary, it is proposed that the fusion of the male and woman pronuclei in the fertilised ovum is a chaotic process in accordance with Ilya Prigogine's concept. The reordering of parental genes into the zygote genome is sensitive to environmental conditions any variation in environmental situations results in altered chemical complexity or composition. This is a all-natural method of organic mutation in which the surroundings performs a immediate position, in contrast to Darwin's theory of normal assortment.
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The purpose of this report is to progress an engineering hypothesis of a connection amongst environmental circumstances and organic mutations. I speculated earlier that the fertilised ovum prior to zygote development is a possible method for genetic or biological mutations [3]. In the fertilised ovum the biochemical 'fusion' of the male and female pronuclei requires spot by indicates of a organic spindle and vitality transfer to/from the surroundings, foremost to the production of the zygote genome. Assuming that the biochemical reactions involved in the fusion method are significantly-from-equilibrium in relation to the setting, we might be ready to use the chaos idea of the renowned thermodynamicist Ilya Prigogine, as follows.
  
References[1] Graham Lawton, "Why Darwin was wrong about the tree of life", New Scientist, Concern 2692, 21 Jan 2009[2] Valerie Brown, "Atmosphere grow to be heredity", Miller-McCune, fourteen July 2008[three] M. Sahibzada, "Evolution by normal design - the merging of father or mother genes in the fertilised ovum", Ezine Content articles, nine July 2007[four] D. Kondepudi and I. Prigogine, "Present day Thermodynamics: From Heat Engines to Dissipative Structures", Chichester: John Wiley, 1998
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In engineering phrases we can outline a organic system as a shut method that interacts with the atmosphere (surroundings) by indicates [http://ValerieBrownHomes.com valerie brown]  of mass transfer (e.g. via a cell membrane) and/or energy transfer (e.g. work accomplished by or on the atmosphere). Prigogine and co-personnel proved that in some instances a closed method can exhibit chaotic conduct when it exists in a much-from-equilibrium point out relative to environmental situations (i.e. when there is a huge thermodynamic driving power for mass and/or vitality transfer in between the method and the surroundings). Theoretical developments in the subject of non-equilibrium thermodynamics reveal that complicated, ordered chemical buildings can be created in such methods [4]. It follows that the chemical construction of the zygote genome formed in the fertilised ovum may be dependent on environmental circumstances.
 
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Several people in the scientific neighborhood are questioning Darwin's idea of evolution by organic choice. No one can dispute Darwin's contributions to our understanding of evolution as a phenomenon, but there is growing skepticism about the theory or procedure - natural assortment - by which evolution is said to get area. The idea of natural choice entails two separate procedures, i.e. the mutation approach (by which a genetic or, far more broadly, a biological mutation takes place) and the variety process (which takes location later on, and determines whether or not the mutated organism survives the challenges of a shifting atmosphere). In this circumstance the surroundings plays a position in the choice approach and not the mutation process. In engineering conditions we can outline a organic program as a closed system that interacts with the setting (environment) by signifies [http://ValerieBrownHomes.com real estate agent in las vegas]  of mass transfer (e.g.
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Текущая версия на 15:07, 31 марта 2013

No one can dispute Darwin's contributions to our knowledge of evolution as a phenomenon, but there is increasing skepticism about the theory or method - normal choice - by which evolution is said to take spot. The principle of natural selection includes two separate processes, i.e. the mutation procedure (by which a genetic or, more broadly, a organic mutation takes place) and the assortment process (which will take spot afterwards, and decides regardless of whether the mutated organism survives the problems of a shifting environment). In this case the setting plays a part in the variety process and not the mutation approach. Different theories of evolution posit that the atmosphere performs a position directly in the process of organic mutation, and as such the variety method is not significant. This would recommend that evolution might be much much more rapid than formerly considered, especially in the context of a shifting environment.

There is frustrating evidence that the setting is not merely a limiting aspect in the survival of mutated organisms, but instead is a source of extraneous content and strength in the processes that outcome in mutations in the initial spot. I will briefly overview two these kinds of processes prior to I propose an engineering hypothesis. Horizontal gene transfer, e.g. by implies of viruses, is a single illustration of environmental interference in the genomes of organisms. Interestingly, this would entail that all organisms within a species who were infected by a particular virus may possibly mutate at the very same time. This is in contradiction with the tree-of-life hypothesis underpinning the idea of normal selection [1]. Secondly, the groundbreaking operate of Moshe Szyf and co-employees in the subject of epigenetics has demonstrated that environmental contaminants can change genes 'on' or 'off' in the mammalian embryo. This study implies that specific environmental pressures on the systems biology of the embryo can guide to specific hereditary qualities [2].

The purpose of this report is to progress an engineering hypothesis of a connection amongst environmental circumstances and organic mutations. I speculated earlier that the fertilised ovum prior to zygote development is a possible method for genetic or biological mutations [3]. In the fertilised ovum the biochemical 'fusion' of the male and female pronuclei requires spot by indicates of a organic spindle and vitality transfer to/from the surroundings, foremost to the production of the zygote genome. Assuming that the biochemical reactions involved in the fusion method are significantly-from-equilibrium in relation to the setting, we might be ready to use the chaos idea of the renowned thermodynamicist Ilya Prigogine, as follows.

In engineering phrases we can outline a organic system as a shut method that interacts with the atmosphere (surroundings) by indicates valerie brown of mass transfer (e.g. via a cell membrane) and/or energy transfer (e.g. work accomplished by or on the atmosphere). Prigogine and co-personnel proved that in some instances a closed method can exhibit chaotic conduct when it exists in a much-from-equilibrium point out relative to environmental situations (i.e. when there is a huge thermodynamic driving power for mass and/or vitality transfer in between the method and the surroundings). Theoretical developments in the subject of non-equilibrium thermodynamics reveal that complicated, ordered chemical buildings can be created in such methods [4]. It follows that the chemical construction of the zygote genome formed in the fertilised ovum may be dependent on environmental circumstances.