A new sight in partiality and in wholeness on the organism idiotype action

Gospodin Coney Cunicula
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引用次数: 0

Abstract

In this work is *given, with a dose of conditionality, a new concept for the ingredients of the results of action of one or another combination of the genetic determinants. First is the action of the so cold non-Mendelian -, cytoplasmic -, or preferred by the author of this article extrachromosomal inheritance  (heredity), valid for all the bionta, exluding the species of pre-cellular organisms. That is why, the sum of the action of these genetic determinants is *named ech-zigosis and ech-osis or eci-zigosis and eci-osis, and *designated with the symbol  d eci.                                        The second sum of actions is the *named as hemizygosis or hemisis, *marked with the symbol  d hem. The third sum of actions is named homosis  or - **homozygosis,  here *designated as  d hom. And the fourth sum of actions is - the heterozygosis or heterosis, here *symbolized as     d het. The last three single summary effects are *joined together, and *named with the terms ch-osis and ch-zygosis or ci-osis and ci-zygosis, and their total sum is *marked with the symbol  d ci. *New terms are also implemented for the summary effect of the whole or holistic combination of the hereditary determinants - holozygosis or holosis. For the pre-cellular organisms are suitable only the terms hemisis and holosis. But the terms ech-osis or eci-osis, hemisis , ch-osis or ci-osis and holosis are suitable for all the species of prokaryotes, and during all the phases from the *so-named stadium of gametobiont, being either *androgametobiont or *gynogametobiont, from the particular contiguous windings (generations) of the screw lines of the survivals of the birth populations of eukaryotes, either diploid, auto- or allopolyploid. The terms ech-zigosis (eci-zigosis), hemizygosis, homozygosis, heterozygosis, ch-zygosis (ci-zygosis) and holozygosis are suitable during all the phases from the *so-named stadium of zygotobiont from the particular contiguous windings (generations) of the screw lines of the survivals of the birth populations of eukaryotes, either diploid, auto- or allopolyploid, while in these circumstances the terms homosis and heterosis have not to be used. This whole or holistic effect is *designated with the symbol   e hol  , and is composed by the sum of the four summary single effects and by the addition of all possible interactions between them. Interactions are *labeled with the symbol  b with subscripts for the respective double, triple or quadruple combination of ech (eci), ch (ci), hem, hom and het. Mathematical expressions of the holozygosis - or the holosis in any definite environment are *given with the respective specific equations for the pre-cellular organisms, for the prokaryotes or during all the phases of the aforementioned stadium of gametobiont of the eukaryotes, and during all the phases of the aforementioned stadium of zygotobiont of the eukaryotes. This new concept is also a theoretical basis, allows to create: Firstly, effective, far more perfect, and at the same time much more efficient and significantly more effective new - and advanced classical technologies for melioration of the heredity of the managed amphimictic bionts. Secondly, it is a foundation for the creation of new systems with similar merits for the preservation in orthobiosis of genetic resources at least from the amphimictic bionts both in economic practice and in nature. And this is essentially a solution, at least in this aspect, to the problem of biodiversity conservation, in which amphimictic bionts are emblematic or dominant organisms.
对有机体独特型作用的片面与整体性的新认识
在这项工作中,带着一定的条件性,给出了一个新的概念,即由一个或另一个遗传决定因素组合而成的作用结果的成分。首先是如此冷的作用,非孟德尔-,细胞质-,或首选的这篇文章的作者染色体外遗传(遗传),适用于所有生物群,不包括物种的前细胞生物。这就是为什么,这些遗传决定因素的作用的总和被命名为ech-zigosis和ech-osis或eci-zigosis和eci-osis,并以符号d - eci来指定。第二种作用的总和被称为半合作用或半合作用,用符号表示。第三种作用的总和称为同型或- **纯合作用,在这里*表示为d **。第四个作用是杂合子或杂种优势,这里*用d表示。后三个单一的汇总效应*连接在一起,用ch-osis和ch-zygosis或ci-osis和ci-zygosis来命名,它们的总和用符号d - ci来标记。*新术语也被用于遗传决定因素的整体或整体组合的总体效应-全合子或全裂。对于细胞前生物,只适用于半球和全胞。但是术语异体分裂或异体分裂、半体分裂、半体分裂或异体分裂和整体分裂适用于所有的原核生物物种,并且在所谓的配子体运动场的所有阶段,无论是雌雄同体还是雌雄同体,从真核生物出生群体的幸存的螺旋线的特定连续的线圈(世代),无论是二倍体、自体还是异源多倍体。无论是二倍体、自异体多倍体还是同种异体多倍体,真核生物出生群体中幸存的特定连续螺旋(世代)中所谓的合子体体的所有阶段,都适用于术语卵形(卵形)、半合子(卵形)、纯合子(卵形)、纯合子(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)、卵形(卵形)和卵形(卵形),而在这些情况下,不使用术语同种异体(卵形)和杂种优势(卵形)。这种整体或整体效果*用符号e - hol来表示,它是由四个总结的单一效果的总和和它们之间所有可能的相互作用的总和组成的。相互作用用符号b *标记,下标分别表示ech (eci)、ch (ci)、hem、homm和het的双、三或四组组合。对于细胞前生物、原核生物或上述真核生物配子体体育场的所有阶段,以及上述真核生物合子体育场的所有阶段,都给出了在任何特定环境下的全合子或全合子的数学表达式。这个新概念也是一个理论基础,允许创建:首先,有效的,更完美的,同时更有效的和显著更有效的新的和先进的经典技术来改善管理的两性生物的遗传。其次,它是创建具有类似优点的新系统的基础,至少在经济实践和自然界中保存来自两性生物的遗传资源。这本质上是一个解决方案,至少在这个方面,解决了生物多样性保护的问题,在这个问题上,两栖生物是象征性的或显性的生物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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