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人类行为遗传学中的进化与路径模型。

Evolution and path models in human behavioral genetics.

作者信息

Carey G

机构信息

Department of Psychology, University of Colorado, Boulder 80309-0447.

出版信息

Behav Genet. 1991 Sep;21(5):433-44. doi: 10.1007/BF01066722.

Abstract

The evolutionary implications of the path-analysis model most often used in human behavior genetics are examined. With directional selection, a model of pure vertical environmental transmission does not respond in a fully adaptive fashion. Unless the coefficients of transmission are exactly 0.50, the population mean will not equilibrate at the selective optimum over time. If there is both genetic and vertical environmental transmission, then the population mean can equilibrate at the selective optimum. In the presence of genetic transmission, vertical environmental transmission increases population fitness and has a strong effect on the rapid movement of the mean toward the selective optimum. This raises the intriguing paradox of why empirical evidence suggests that vertical environmental transmission is usually small when it possesses such important fitness properties.

摘要

本文研究了人类行为遗传学中最常用的路径分析模型的进化意义。在定向选择的情况下,纯垂直环境传递模型不会以完全适应性的方式做出反应。除非传递系数恰好为0.50,否则群体均值不会随着时间的推移在选择最优值处达到平衡。如果同时存在遗传传递和垂直环境传递,那么群体均值可以在选择最优值处达到平衡。在存在遗传传递的情况下,垂直环境传递会提高群体适应性,并对均值朝着选择最优值的快速移动产生强烈影响。这就引出了一个有趣的悖论:为什么实证证据表明,垂直环境传递在具有如此重要的适应性属性时,其作用通常却很小。

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