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Beyond Arabidopsis. Translational Biology Meets Evolutionary Developmental Biology

机译:超越拟南芥。转化生物学与进化发育生物学相遇

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摘要

Developmental processes shape plant morphologies, which constitute important adaptive traits selected for during evolution. Identifying the genes that act in developmental pathways and determining how they are modified during evolution is the focus of the field of evolutionary developmental biology, or evo-devo. Knowledge of genetic pathways in the plant model Arabidopsis serves as the starting point for investigating how the toolkit of developmental pathways has been used and reused to form different plant body plans. One productive approach is to identify genes in other species that are orthologous to genes known to control developmental pathways in Arabidopsis and then determine what changes have occurred in the protein coding sequence or in the gene's expression to produce an altered morphology. A second approach relies on natural variation among wild populations or crop plants. Natural variation can be exploited to identify quantitative trait loci that underlie important developmental traits and, thus, define those genes that are responsible for adaptive changes. The possibility of applying comparative genomics approaches to Arabidopsis and related species promises profound new insights into the interplay of evolution and development.
机译:发育过程塑造植物的形态,构成了在进化过程中选择的重要适应性状。鉴定在发育途径中起作用的基因并确定它们在进化过程中如何被修饰是进化发育生物学或evo-devo领域的重点。植物模型拟南芥中遗传途径的知识是研究如何使用和重用发育途径的工具包以形成不同的植物体计划的起点。一种有效的方法是鉴定与已知控制拟南芥中发育途径的基因同源的其他物种中的基因,然后确定蛋白质编码序列或基因表达中发生了哪些变化以产生改变的形态。第二种方法依赖于野生种群或农作物之间的自然变异。可以利用自然变异来鉴定作为重要发育性状基础的定量性状基因座,从而定义负责适应性变化的那些基因。将比较基因组学方法应用于拟南芥和相关物种的可能性有望为进化与发展的相互作用提供深刻的新见解。

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