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Contrasting response of biomass and grain yield to severe drought in Cappelle Desprez and Plainsman V wheat cultivars

机译:Cappelle Desprez和Plainsman V小麦品种对严重干旱的生物量和谷物产量的对比响应

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摘要

We report a case study of natural variations and correlations of some photosynthetic parameters, green biomass and grain yield in Cappelle Desprez and Plainsman V winter wheat (Triticum aestivum L.) cultivars, which are classified as being drought sensitive and tolerant, respectively. We monitored biomass accumulation from secondary leaves in the vegetative phase and grain yield from flag leaves in the grain filling period. Interestingly, we observed higher biomass production, but lower grain yield stability in the sensitive Cappelle cultivar, as compared to the tolerant Plainsman cv. Higher biomass production in the sensitive variety was correlated with enhanced water-use efficiency. Increased cyclic electron flow around PSI was also observed in the Cappelle cv. under drought stress as shown by light intensity dependence of the ratio of maximal quantum yields of Photosystem I and Photosystem II, as well by the plot of the Photosystem I electron transport rate as a function of Photosystem II electron transport rate. Higher CO2 uptake rate in flag leaves of the drought-stressed Plainsman cv. during grain filling period correlates well with its higher grain yield and prolonged transpiration rate through spikes. The increase in drought factor (DFI) and performance (PI) indices calculated from variable chlorophyll fluorescence parameters of secondary leaves also showed correlation with higher biomass in the Cappelle cultivar during the biomass accumulation period. However, during the grain filling period, DFI and PI parameters of the flag leaves were higher in the tolerant Plainsman V cultivar and showed correlation with grain yield stability. Our results suggest that overall biomass and grain yield may respond differentially to drought stress in different wheat cultivars and therefore phenotyping for green biomass cannot be used as a general approach to predict grain yield. We also conclude that photosynthetic efficiency of flag and secondary leaves is correlated with grain yield and green biomass, respectively. In addition, secondary trait associated mechanisms like delayed senescence and higher water-use efficiency also contribute to biomass stability. Our studies further prove that photosynthetic parameters could be used to characterize environmental stress responses.
机译:我们报告了一个案例研究,这些自然变量与Cappelle Desprez和Plainsman V冬小麦(Triticum aestivum L.)品种的一些光合参数,绿色生物量和谷物产量之间的相关性,分别被划分为干旱敏感型和耐旱型。我们监测了营养期次生叶片的生物量积累和灌浆期旗叶的产量。有趣的是,与宽容的Plainsman简历相比,我们在敏感的Cappelle品种中观察到了更高的生物量产量,但谷物产量稳定性却较低。敏感品种较高的生物量生产与提高的用水效率相关。在Cappelle cv中,还观察到PSI周围循环电子流量增加。在干旱胁迫下,如光强度与光系统I和光系统II的最大量子产率之比的关系以及光系统I电子传输速率与光系统II电子传输速率的关系图所示。干旱胁迫的Plainsman cv的旗叶中较高的CO2吸收率。籽粒灌浆期的高产与其较高的籽粒产量和通过穗的长期蒸腾速率密切相关。根据次生叶片可变叶绿素荧光参数计算得出的干旱因子(DFI)和性能指数(PI)的增加,也表明与Cappelle品种在生物量积累期间较高的生物量相关。然而,在籽粒灌浆期,耐性Plainsman V品种旗叶的DFI和PI参数较高,并且与籽粒产量稳定性相关。我们的结果表明,不同小麦品种的整体生物量和谷物产量可能对干旱胁迫反应不同,因此绿色生物量的表型不能用作预测谷物产量的通用方法。我们还得出结论,旗叶和次生叶片的光合作用效率分别与谷物产量和绿色生物量相关。此外,次生性状相关的机制,如延迟衰老和更高的用水效率,也有助于生物量的稳定性。我们的研究进一步证明,光合作用参数可用于表征环境胁迫响应。

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