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Modelling Plant Breeding Programs as Search Strategies on a Complex Response Surface

机译:将植物育种计划建模为复杂响应面上的搜索策略

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The concept of an adaptation (fitness) landscape has been used to explain evolutionary processes. The landscape is a response surface for the genetic space defined by a genotype-environment system and evolution of populations through natural selection a search for higher peaks in this space. This is an appealing framework for other disciplines interested in issues of search and optimisation. One such application is the genetic improvement of traits in plant breeding. Here, breeding programs can be viewed and analysed as search strategies that are used to explore the surface of an adaptation landscape to find higher adaptive positions. The current theoretical framework considers genetic improvement as a hill climbing process on a smooth single peaked adaptation landscape. However, there is strong evidence to suggest that due to the effects of genotype-by-environment (GxE) interactions and epis-tasis, the landscapes encountered by plant breeders are in fact rugged and multi-peaked. Simulation methodology was used to compare two selection strategies currently used in plant breeding and investigate their capacity to confront the difficulties associated with the influences of G x E interaction and epistasis: (ⅰ) selection of genotypes based on performance in a single environment (mass selection), and (ⅱ) selection of genotypes based on performance in several environments (multi-environment testing). A third selection strategy was proposed for genetic improvement on more complex adaptation landscapes. This selection strategy (shifting search strategy) was based on Wright's 'Shifting Balance Theory'.
机译:适应(健身)景观的概念已被用来解释进化过程。景观是用于通过基因型环境系统定义的遗传空间的响应面,通过自然选择在该空间中寻找更高峰的搜索。这是对对搜索和优化问题感兴趣的其他学科的吸引力框架。一种这样的应用是植物育种中具有特征的遗传改善。这里,可以查看和分析繁殖程序作为用于探索适应景观表面以找到更高的自适应位置的搜索策略。目前的理论框架认为遗传改善是在平滑的单一峰适应景观中的山坡攀岩过程中。然而,有强有力的证据表明,由于基因型 - 环境(GXE)相互作用和Epis-Tasis的影响,植物育种者遇到的景观实际上是粗糙和多峰的景观。模拟方法用于比较目前在植物育种中使用的两种选择策略,并调查它们对胃肠X E相互作用和外观影响的影响的能力:(Ⅰ)基于单一环境中性能的基因型选择(批量选择) ),(Ⅱ)基于几种环境中性能的基因型选择(多环境测试)。提出了第三种选择策略,以遗传改善更复杂的适应景观。这种选择策略(移位搜索策略)是基于Wright的“转移平衡理论”。

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