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首页> 外文期刊>Canadian Journal of Plant Science >Leaf photosynthetic properties and biomass accumulation of selected western Canadian spring wheat cultivars
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Leaf photosynthetic properties and biomass accumulation of selected western Canadian spring wheat cultivars

机译:选定西加拿大春小麦品种的叶片光合特性和生物量积累

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Current studies indicate wheat straw as a viable source for the production of cellulosic ethanol. Since photosynthetic performance impacts the overall success of the mature plant, this study aimed to measure the photosynthetic vigour of 11 spring wheat cultivars during field development as well as their biomass composition at maturity to determine which would be optimum for ethanol production. All cultivars had similar maximal quantum yields of photosystem II photochemistry (F-V/F-M), normalized difference vegetation index and biomass composition in the field. However, differences were observed in photosynthetic rate, with McKenzie having the highest light-saturated maximal rate of CO2 uptake (A(max)) and apparent quantum yield of CO2 uptake (Phi(app) CO2), while also having the best water use efficiency. Snowbird was found to have the lowest CO2-compensation point (Gamma*) and A(max). Upon subjecting wheat samples to photoinhibitory conditions, McKenzie and Kyle were found to be the most resistant and susceptible, respectively, with a difference of 11% in F-V/F-M. Abundance of xanthophyll pigments were not found to be a contributing cause to differential photoinhibitory resistance as there was not a noticeable difference between cultivars. Although some cultivars were found to have enhanced photosynthetic traits over others, these were slight and did not contribute to changes in plant biomass. However, McKenzie did present a higher cellulose content, which would be favourable for ethanol production.
机译:目前的研究表明,小麦秸秆作为生产纤维素乙醇的可行源。由于光合性能影响成熟植物的总体成功,这项研究旨在测量田野发育期间11个春小麦品种的光合活力,以及它们在成熟时的生物质组成,以确定哪个是乙醇生产的最佳。所有品种都具有相似的最大量子产量的光化学II光化学(F-V / F-M),常规化差异植被指数和该领域的生物质组成。然而,以光合速率观察到差异,McKenzie具有最高的光饱和最大速率的CO 2吸收(A(最大))和表观量子产率的CO2摄取(PHI(APP)CO2),同时也具有最佳的用水效率。发现雪鸟具有最低的CO2补偿点(GAMMA *)和(MAX)。在将小麦样本进行光素气条件下,发现McKenzie和Kyle分别是最抗性和敏感的,在F-V / F-M中差异为11%。由于品种之间没有明显的差异,未发现丰富的曲噻吩颜料是对差异的光素抑制抗性的贡献原因。虽然发现一些品种具有增强的光合性状,但这些都有轻微的,并且没有有助于植物生物质的变化。然而,McKenzie确实存在更高的纤维素含量,这将有利于乙醇生产。

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