Institute for Agricultural Biosciences, Oklahoma State University, Ardmore, OK, 73401, USA.
Department of Biochemistry and Molecular Biology, Oklahoma State University, Stillwater, OK, 74078, USA.
Plant Cell Environ. 2018 May;41(5):898-907. doi: 10.1111/pce.12906. Epub 2017 Mar 30.
Plants have evolved complex molecular, cellular and physiological mechanisms to respond to environmental stressors. Because of the inherent complexity of this response, genetic manipulation to substantially improve water deficit tolerance, particularly in agricultural crops, has been largely unsuccessful, as the improvements are frequently accompanied by slower growth and delayed reproduction. Here, we ectopically express two abiotic stress-responsive bZIP AREB/ABF transcription factor orthologs, Arabidopsis ABF3 and Gossypium hirsutum ABF2D, in G. hirsutum, to compare the effects of exogenous and endogenous AREB/ABF transgene overexpression on dehydration resilience. Our results show that ectopic expression of each of these orthologs increases dehydration resilience, although these increases are accompanied by slower growth. These phenotypic effects are proportional to the ectopic expression level in the GhABF2D transgenic plants, while the phenotypes of all of the AtABF3 transgenic plants are similar, largely independent of ectopic expression level, possibly indicating differential post-transcriptional regulation of these transgenes. Our results indicate that overexpression of exogenous and endogenous ABF homologs in G. hirsutum substantially increases drought resilience, primarily through stomatal regulation, negatively impacting transpiration and photosynthetic productivity.
植物已经进化出复杂的分子、细胞和生理机制来应对环境胁迫。由于这种反应的固有复杂性,遗传操作在很大程度上未能显著提高水分亏缺耐受性,特别是在农业作物中,因为这些改进通常伴随着生长缓慢和繁殖延迟。在这里,我们在陆地棉中异位表达了两个非生物胁迫响应 bZIP AREB/ABF 转录因子同源物,拟南芥 ABF3 和陆地棉 ABF2D,以比较外源和内源性 AREB/ABF 转基因过表达对脱水恢复力的影响。我们的结果表明,这些同源物的异位表达都增加了脱水恢复力,尽管这些增加伴随着生长缓慢。这些表型效应与 GhABF2D 转基因植物中外源基因的异位表达水平成正比,而所有 AtABF3 转基因植物的表型相似,很大程度上独立于异位表达水平,可能表明这些转基因的转录后调控存在差异。我们的结果表明,外源和内源性 ABF 同源物在陆地棉中的过表达显著提高了耐旱性,主要通过气孔调节,负向影响蒸腾和光合生产力。