首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Quantitative trait loci associated with natural diversity in water-use efficiency and response to soil drying in Brachypodium distachyon
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Quantitative trait loci associated with natural diversity in water-use efficiency and response to soil drying in Brachypodium distachyon

机译:短枝Bra的水分利用效率和对土壤干燥的响应与自然多样性相关的数量性状基因座

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摘要

All plants must optimize their growth with finite resources. Water use efficiency (WUE) measures the relationship between biomass acquisition and transpired water. In the present study, we performed two experiments to understand the genetic basis of WUE and other parameters of plant-water interaction under control and water-limited conditions. Our study used two inbred natural accessions of Brachy-podium distachyon, a model grass species with close phylogenetic affinity to temperate forage and cereal crops. First, we identify the soil water content which causes a reduction in leaf relative water content and an increase in WUE. Second, we present results from a large phenotyping experiment utilizing a recombinant inbred line mapping population derived from these same two natural accessions. We identify QTLs associated with environmentally-insensitive genetic variation in WUE, including a pair of epistatically interacting loci. We also identify QTLs associated with constitutive differences in biomass and a QTL describing an environmentally-sensitive difference in leaf carbon content. Finally, we present a new linkage map for this mapping population based on new SNP markers as well as updated genomic positions for previously described markers. Our studies provide an initial characterization of plant-water relations in B. distachyon and identify candidate genomic regions involved in WUE. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:所有植物都必须利用有限的资源优化其生长。用水效率(WUE)衡量生物量获取与蒸发水之间的关系。在本研究中,我们进行了两个实验以了解WUE的遗传基础以及在控制和限水条件下植物与水相互作用的其他参数。我们的研究使用了Brachy-podium distachyon的两个自交自然种,这是一种与温带草料和谷类作物具有密切系统亲和力的模型草种。首先,我们确定导致叶片相对含水量减少和WUE增加的土壤含水量。其次,我们提出了一个大型表型实验的结果,该实验利用了从这两个相同的天然种质衍生而来的重组自交系作图群体。我们确定与WUE,包括一对上位相互作用位点对环境不敏感的遗传变异相关的QTL。我们还确定了与生物量组成差异相关的QTL和描述了叶片碳含量对环境敏感的差异的QTL。最后,我们基于新的SNP标记以及先前描述的标记的更新的基因组位置,针对此作图群体提出了一个新的连锁图。我们的研究提供了B. distachyon中植物与水的关系的初步表征,并确定了参与WUE的候选基因组区域。 (C)2016 Elsevier Ireland Ltd.保留所有权利。

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