UBC Botanical Garden & Centre for Plant Research, University of British Columbia, 2357 Main Mall, Vancouver, BC, V6T 1Z4, Canada.
Plant Science Graduate Program, University of British Columbia, 2357 Main Mall, Vancouver, BC, V6T 1Z4, Canada.
New Phytol. 2011 Jun;190(4):1045-1057. doi: 10.1111/j.1469-8137.2011.03650.x. Epub 2011 Mar 1.
Polyploidy has occurred throughout plant evolution and can result in considerable changes to gene expression when it takes place and over evolutionary time. Little is known about the effects of abiotic stress conditions on duplicate gene expression patterns in polyploid plants. We examined the expression patterns of 60 duplicated genes in leaves, roots and cotyledons of allotetraploid Gossypium hirsutum in response to five abiotic stress treatments (heat, cold, drought, high salt and water submersion) using single-strand conformation polymorphism assays, and 20 genes in a synthetic allotetraploid. Over 70% of the genes showed stress-induced changes in the relative expression levels of the duplicates under one or more stress treatments with frequent variability among treatments. Twelve pairs showed opposite changes in expression levels in response to different abiotic stress treatments. Stress-induced expression changes occurred in the synthetic allopolyploid, but there was little correspondence in patterns between the natural and synthetic polyploids. Our results indicate that abiotic stress conditions can have considerable effects on duplicate gene expression in a polyploid, with the effects varying by gene, stress and organ type. Differential expression in response to environmental stresses may be a factor in the preservation of some duplicated genes in polyploids.
多倍体在植物进化过程中普遍存在,当它发生时,以及在进化过程中,会导致基因表达发生相当大的变化。关于非生物胁迫条件对多倍体植物中重复基因表达模式的影响,人们知之甚少。我们使用单链构象多态性分析检测了 60 个重复基因在异源四倍体棉叶、根和子叶中的表达模式,这些基因对五种非生物胁迫处理(热、冷、干旱、高盐和水淹没)有反应,还检测了 20 个在合成异源四倍体中的基因。超过 70%的基因在一种或多种胁迫处理下,其重复基因的相对表达水平发生了胁迫诱导的变化,而且在不同处理之间经常发生变化。有 12 对基因对不同的非生物胁迫处理表现出相反的表达水平变化。在合成异源多倍体中也发生了胁迫诱导的表达变化,但天然多倍体和合成多倍体之间的模式几乎没有对应关系。我们的结果表明,非生物胁迫条件会对多倍体中的重复基因表达产生相当大的影响,其影响因基因、胁迫和器官类型而异。对环境胁迫的差异表达可能是多倍体中一些重复基因得以保留的一个因素。