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Biosemiotics: a new understanding of life

机译:生物符号学:对生活的新认识

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Biosemiotics is the idea that life is based on semiosis, i.e., on signs and codes. This idea has been strongly suggested by the discovery of the genetic code, but so far it has made little impact in the scientific world and is largely regarded as a philosophy rather than a science. The main reason for this is that modern biology assumes that signs and meanings do not exist at the molecular level, and that the genetic code was not followed by any other organic code for almost four billion years, which implies that it was an utterly isolated exception in the history of life. These ideas have effectively ruled out the existence of semiosis in the organic world, and yet there are experimental facts against all of them. If we look at the evidence of life without the preconditions of the present paradigm, we discover that semiosis is there, in every single cell, and that it has been there since the very beginning. This is what biosemiotics is really about. It is not a philosophy. It is a new scientific paradigm that is rigorously based on experimental facts. Biosemiotics claims that the genetic code (1) is a real code and (2) has been the first of a long series of organic codes that have shaped the history of life on our planet. The reality of the genetic code and the existence of other organic codes imply that life is based on two fundamental processes—copying and coding—and this in turn implies that evolution took place by two distinct mechanisms, i.e., by natural selection (based on copying) and by natural conventions (based on coding). It also implies that the copying of genes works on individual molecules, whereas the coding of proteins operates on collections of molecules, which means that different mechanisms of evolution exist at different levels of organization. This review intends to underline the scientific nature of biosemiotics, and to this purpose, it aims to prove (1) that the cell is a real semiotic system, (2) that the genetic code is a real code, (3) that evolution took place by natural selection and by natural conventions, and (4) that it was natural conventions, i.e., organic codes, that gave origin to the great novelties of macroevolution. Biological semiosis, in other words, is a scientific reality because the codes of life are experimental realities. The time has come, therefore, to acknowledge this fact of life, even if that means abandoning the present theoretical framework in favor of a more general one where biology and semiotics finally come together and become biosemiotics.
机译:生物符号学是指生命是基于符号学即标志和密码的思想。遗传密码的发现强烈地提出了这个想法,但是到目前为止,它对科学界的影响很小,在很大程度上被认为是哲学而不是科学。这主要是因为现代生物学假定符号和含义在分子水平上不存在,并且遗传密码在近40亿年中没有被任何其他有机密码所遵循,这意味着它是一个完全孤立的例外在生活史上这些想法有效地排除了有机世界中符号主义的存在,但存在反对所有这些的实验性事实。如果我们在没有当前范式前提的前提下研究生命的证据,就会发现符号化存在于每个单元中,并且从一开始就存在。这就是生物符号学的真正意义。这不是哲学。它是一种严格基于实验事实的新科学范式。 Biosemiotics声称,遗传密码(1)是真实密码,而(2)是构成有机生命史的一系列有机密码中的第一个。遗传密码的现实和其他有机密码的存在暗示着生命是基于两个基本过程(复制和编码)的,而这反过来又意味着进化是通过两种不同的机制发生的,即自然选择(基于复制) )和自然约定(基于编码)。它还暗示基因的复制作用于单个分子,而蛋白质的编码作用于分子的集合,这意味着在不同的组织水平上存在着不同的进化机制。这篇综述旨在强调生物符号学的科学性质,并为此目的,旨在证明(1)细胞是真正的符号系统,(2)遗传密码是真实的密码,(3)进化所需要的通过自然选择和自然约定来放置,以及(4)是自然约定,即有机密码,使宏观进化的伟大新颖性得以产生。换句话说,生物符号学是一种科学现实,因为生命准则是实验现实。因此,现在已经到了承认生命这一事实的时候了,即使那意味着放弃当前的理论框架,而转向生物学和符号学最终汇聚成为生物符号学的更为普遍的框架。

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