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Hipocrates Aristoteles
Hipocrates Aristoteles

... •The F1 offspring showed only one of the two parental traits, and always the same trait. •Results were always the same regardless of which parent donated the pollen (was male). •The trait not shown in the F1 reappeared in the F2 in about 25% of the offspring. •Traits remained unchanged when passed t ...
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... will appear in the next generation. Offspring that are hybrid for a trait will have only the dominant trait in the phenotype. “One trait will “hide” the other trait.” ...
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... their offspring. In addition to the differential investment of mothers versus fathers in the rearing of offspring, there are also a number of germline factors that are transmitted unequally from one parent or the other that contribute significantly to offspring development. This article shall review ...
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...  Heterogeneity in the Impulsivity Phenotype  Behavioral (phenotypic) expression of impulsivity may derive from several sources • Brain injuries, exposure to teratogens such as alcohol, early traumatic experiences including social deprivation, child abuse, and neglect, or genetic vulnerabilities th ...
Chapter 6 and 9 - Wando High School
Chapter 6 and 9 - Wando High School

... 18. How does meiosis keep a constant number of chromosomes in each generation? If two diploid gametes fused, each offspring would have double the chromosome number as the parent. Meiosis reduces the chromosome number by half in gametes so when they fuse together the zygote has the same number as the ...
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Transgenerational epigenetic inheritance



Transgenerational epigenetic inheritance is the transmittance of information from one generation of an organism to the next (e.g., human parent–child transmittance) that affects the traits of offspring without alteration of the primary structure of DNA (i.e., the sequence of nucleotides) or from environmental cues. The less precise term ""epigenetic inheritance"" may be used to describe both cell–cell and organism–organism information transfer. Although these two levels of epigenetic inheritance are equivalent in unicellular organisms, they may have distinct mechanisms and evolutionary distinctions in multicellular organisms.Four general categories of epigenetic modification are known: self-sustaining metabolic loops, in which a mRNA or protein product of a gene stimulates transcription of the gene; e.g. Wor1 gene in Candida albicans structural templating in which structures are replicated using a template or scaffold structure on the parent; e.g. the orientation and architecture of cytoskeletal structures, cilia and flagella, prions, proteins that replicate by changing the structure of normal proteins to match their own chromatin marks, in which methyl or acetyl groups bind to DNA nucleotides or histones thereby altering gene expression patterns; e.g. Lcyc gene in Linaria vulgaris described below RNA silencing, in which small RNA strands interfere (RNAi) with the transcription of DNA or translation of mRNA; known only from a few studies, mostly in Caenorhabditis elegansFor some epigenetically influenced traits, the epigenetic marks can be induced by the environment and some marks are heritable, leading some to view epigenetics as a relaxation of the rejection of soft inheritance of acquired characteristics.
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