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Genotypic variability in the response to elevated CO2 of wheat lines differing in adaptive traits

机译:适应性状不同的小麦品系对CO2升高的响应的基因型变异

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Atmospheric CO2 levels have increased from similar to 280 ppm in the pre-industrial era to 391 ppm in 2012. High CO2 concentrations stimulate photosynthesis in C-3 plants such as wheat, but large variations have been reported in the literature in the response of yield and other traits to elevated CO2 (eCO(2)). Few studies have investigated genotypic variation within a species to address issues related to breeding for specific adaptation to eCO(2). The objective of this study was to determine the response to eCO(2) of 20 wheat lines which were chosen for their contrasting expression in tillering propensity, water soluble carbohydrate (WSC) accumulation in the stem, early vigour and transpiration efficiency. Experiments were performed in control environment chambers and in a glasshouse with CO2 levels controlled at either 420 ppm (local ambient) or 700 ppm (elevated). The results showed no indication of a differential response to eCO(2) for any of these lines and adaptive traits were expressed in a consistent manner in ambient and elevated CO2 environments. This implies that for these traits, breeders could expect consistent rankings in the future, assuming these results are validated under field conditions. Additional climate change impacts related to drought and high temperature are also expected to interact with these traits such that genotype rankings may differ from the unstressed condition.
机译:大气中的CO2水平已从工业化前时代的280 ppm增加到2012年的391 ppm。高浓度的CO2刺激了C-3植物(如小麦)的光合作用,但文献报道了产量响应方面的巨大差异和其他特征,以提高二氧化碳(eCO(2))。很少有研究调查物种内的基因型变异以解决与育种相关的问题,以适应eCO(2)。这项研究的目的是确定对20个小麦品系对eCO(2)的响应,这些小麦因在分prop倾向,茎中水溶性碳水化合物(WSC)积累,早期活力和蒸腾效率方面的差异表达而被选择。实验是在控制环境室和温室中进行的,二氧化碳水平控制在420 ppm(局部环境)或700 ppm(升高)下。结果表明,没有迹象表明对任何这些品系对eCO(2)的差异反应,适应性状在环境和升高的CO2环境中以一致的方式表达。这意味着对于这些性状,假设这些结果在田间条件下得到了验证,育种者将有望在未来获得一致的排名。与干旱和高温有关的其他气候变化影响也有望与这些性状相互作用,从而使基因型排名可能与无压力条件不同。

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