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首页> 外文期刊>Scientific reports. >Aluminum stress differentially affects physiological performance and metabolic compounds in cultivars of highbush blueberry
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Aluminum stress differentially affects physiological performance and metabolic compounds in cultivars of highbush blueberry

机译:铝应力差异地影响高骨髓栽培品种的生理性能和代谢化合物

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Aluminum (Al) toxicity is one of the major factors that limit the growth and production of crops in acid soils. Highbush blueberry (Vaccinium corymbosum L.) cultivars differing in resistance to Al toxicity regarding root growth and photosynthetic performance were used. In this study, we compared the physiological and metabolic strategies to cope with Al toxicity among the highbush blueberry cultivars [two new ones (Camellia and Cargo) and three established ones (Brigitta (Al-resistant), Star and Duke)]. Aluminum concentration in roots and leaves increased in all cultivars after 24 and 48?h of exposure to Al, but less so in roots of cultivar Camellia and leaves of cultivar Cargo. These two cultivars displayed minor effects of Al exposure in terms of photosynthetic activity in comparison with the established cultivars. Furthermore, Cargo did not vary fluorescence parameters, whereas Camellia exhibited a decrease in effective quantum yield (ΦPSII) and electron transport rate (ETR) and a change in non-photochemical quenching (NPQ) and maximum quantum yield (Fv/Fm) under Al after 48?h. The Al treatment increased total phenols in leaves of Brigitta, Cargo, and Camellia, whereas antioxidant activity increased in Star and Cargo after 48?h. Aluminum exposure decreased malate concentration in roots of all cultivars, but no change was noted in fumarate concentration. The antioxidant activity correlated with photosynthetic performance and the total phenol concentration in the leaves of new cultivars exposed to Al, suggesting enhanced resistance in the short-term experiment. The principal component analysis separated the new from the established cultivars. In conclusion, the new cultivars appear to be more Al-resistant than the established ones, with Star being most Al-sensitive. Regarding the Al-resistance mechanisms of the new cultivars, it is suggested that Camellia could have a root Al-exclusion mechanism under Al toxicity. This mechanism could be explained by low Al concentration in roots, suggesting that this cultivar could exude organic acid, allowing to chelate Al in the rhizosphere. Nonetheless, further researches are needed to confirm this assumption.
机译:铝(Al)毒性是限制酸性土壤中农作物的生长和生产的主要因素之一。使用了对根生长和光合性能的抗毒性抗性不同的高碱基蓝莓(vAlcinium corymbosum L.)品种。在这项研究中,我们将生理和代谢策略与高骨蓝莓品种中的毒性进行了比较[两个新的(山茶花和货物)和三个成熟的策略(Brigitta(抗性),明星和公爵)]。铝浓度在根部和叶片的根部浓度增加24和48℃,但在Al暴露于Al的情况下,但在山茶花的根源和品种货物的叶子中较少。这两个品种与既定品种相比,在光合活性方面展示了Al暴露的微小影响。此外,货物没有变化荧光参数,而赛茶花表现出有效量子产率(φPSII)和电子传输速率(ETR)的降低以及在A1下的非光化学猝灭(NPQ)和最大量子产率(FV / FM)的变化48岁后Al治疗在Brigitta,货物和山茶的叶子中增加了总酚,而48℃的抗氧化活性在星形和货物中增加。铝暴露在所有品种的根部下降降低阳性浓度,但在富马酸盐浓度下没有提出任何变化。抗氧化活性与光合作用的抗氧化活性和暴露于Al的新品种叶片中的总苯酚浓度,表明短期实验中的抗性增强。主要成分分析与已建立的品种分开。总之,新品种似乎比建立的品种更具抗性,恒星是最敏感的。关于新品种的抗性机制,建议山茶花可以在毒性下具有根铝算法机制。该机制可以通过根部的低族浓度来解释,表明该品种可以散发有机酸,允许在根际中螯合Al。尽管如此,需要进一步的研究来证实这种假设。

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