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Low-temperature leaf photosynthesis of a Miscanthus germplasm collection correlates positively to shoot growth rate and specific leaf area

机译:芒草种质资源的低温叶片光合作用与芽的生长速率和比叶面积呈正相关

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摘要

>Background and Aims The C4 perennial grass miscanthus has been found to be less sensitive to cold than most other C4 species, but still emerges later in spring than C3 species. Genotypic differences in miscanthus were investigated to identify genotypes with a high cold tolerance at low temperatures and quick recovery upon rising temperatures to enable them to exploit the early growing season in maritime cold climates. Suitable methods for field screening of cold tolerance in miscanthus were also identified.>Methods Fourteen genotypes of M. sacchariflorus, M. sinensis, M. tinctorius and M. × giganteus were selected and grown under warm (24 °C) and cold (14 °C) conditions in a controlled environment. Dark-adapted chlorophyll fluorescence, specific leaf area (SLA) and net photosynthetic rate at a photosynthetically active radiation (PAR) of 1000 μmol m–2 s–1 (A1000) were measured. Photosynthetic light and CO2 response curves were obtained from 11 of the genotypes, and shoot growth rate was measured under field conditions.>Key Results A positive linear relationship was found between SLA and light-saturated photosynthesis (Asat) across genotypes, and also between shoot growth rate under cool field conditions and A1000 at 14 °C in a climate chamber. When lowering the temperature from 24 to 14 °C, one M. sacchariflorus exhibited significantly higher Asat and maximum photosynthetic rate in the CO2 response curve (Vmax) than other genotypes at 14 °C, except M. × giganteus ‘Hornum’. Several genotypes returned to their pre-chilling A1000 values when the temperature was increased to 24 °C after 24 d growth at 14 °C.>Conclusions One M. sacchariflorus genotype had similar or higher photosynthetic capacity than M. × giganteus, and may be used for cultivation together with M. × giganteus or for breeding new interspecies hybrids with improved traits for temperate climates. Two easily measured variables, SLA and shoot growth rate, may be useful for genotype screening of productivity and cold tolerance.
机译:>背景和目的人们发现,C4多年生禾草比大多数其他C4物种对寒冷的敏感性低,但在春季仍比C3物种晚。研究了猕猴的基因型差异,以鉴定在低温下具有高耐寒性并在温度升高时能快速恢复的基因型,从而使它们能够利用海上寒冷气候中的早期生长季节。还确定了合适的田间筛查黑果耐寒性的方法。>方法选择了14个基因型的糖蔗分枝杆菌,中华分枝杆菌,丁香分枝杆菌和大××的基因型,并在温暖(24° C)和寒冷(14°C)条件下的受控环境。光合有效辐射(PAR)为1000μmolm –2 s –1 (A1000)时,黑暗适应性叶绿素荧光,比叶面积(SLA)和净光合速​​率被测量。从11个基因型获得了光合光和CO 2响应曲线,并在田间条件下测量了枝条的生长速率。>关键结果 SLA与光饱和光合作用(Asat)之间呈正线性关系基因型,以及在寒冷田间条件下的枝条生长速率与气候室内14°C下的A1000之间。当温度从24降低到14°C时,除了14.C外,一株糖酵母(M.×giganteus'Hornum')的Asat值和最大的光合速率均高于其他基因型在14°C时的CO2响应曲线(Vmax)。在14°C下生长24 d后温度升高至24°C时,有几种基因型恢复到其冷藏前的A1000值。>结论 1个蔗糖M. sacchariflorus基因型具有与M相似或更高的光合能力。 × giganteus ,可以与 M 一起种植。 × giganteus 或用于培育具有改良性状的新种间杂交,以适应温带气候。 SLA和枝条生长率这两个易于测量的变量可能对生产力和耐寒性的基因型筛选有用。

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