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整合生理和分子特征将有助于提高对高丛蓝莓品种抗旱性的认识。

Integration of Physiological and Molecular Traits Would Help to Improve the Insights of Drought Resistance in Highbush Blueberry Cultivars.

作者信息

Balboa Karen, Ballesteros Gabriel I, Molina-Montenegro Marco A

机构信息

Bachillerato en Ciencias, Facultad de Ciencias, Universidad Santo Tomás, Av. Circunvalación Poniente #1855, Talca 3460000, Chile.

Instituto de Ciencias Biológicas, Universidad de Talca, Campus Talca 3460000, Chile.

出版信息

Plants (Basel). 2020 Oct 29;9(11):1457. doi: 10.3390/plants9111457.

Abstract

Water deficit or drought is one of the most severe factors limiting plant yield or fruit quality. Thus, water availability for irrigation is decisive for crop success, such as the case of highbush blueberry ( L.). Therefore, drought stress may compromise blueberry production due to lower fruit weight or fruit yield. Despite this, it is unclear if there is any difference in the response of blueberry cultivars to water deficit, either in terms of physiological and molecular parameters, or in terms of their sensitivity or resistance to drought. In this study, we determined the effect of drought on different physiological parameters in blueberry plants (relative water content (RWC), photochemical efficiency of photosystem II Fv/Fm), Carbon Isotopic Discrimination, and proline content) in six cultivars. We also explored molecular responses in terms of gene expression coding for late embryogenesis abundant proteins. Finally, we estimated cultivar water deficit resistance using an integrative model based on physiological results. Upon water deficit conditions, we found reductions in Fv/Fm, RWC, and isotopic discrimination of C (ΔC), while proline content increased significantly for all cultivars. Additionally, we also found differences in the estimated water deficit resistance index. These results indicate differences in water deficit resistance, possibly due to variations in cultivars' genetic composition.

摘要

水分亏缺或干旱是限制植物产量或果实品质的最严重因素之一。因此,灌溉用水的可获得性对作物的成功至关重要,比如高丛蓝莓(Vaccinium corymbosum L.)的情况。所以,干旱胁迫可能会因果实重量降低或果实产量减少而影响蓝莓生产。尽管如此,尚不清楚蓝莓品种对水分亏缺的响应在生理和分子参数方面,或者在对干旱的敏感性或抗性方面是否存在差异。在本研究中,我们测定了干旱对六个蓝莓品种植株不同生理参数(相对含水量(RWC)、光系统II的光化学效率Fv/Fm、碳同位素歧视以及脯氨酸含量)的影响。我们还从编码晚期胚胎发生丰富蛋白的基因表达方面探究了分子响应。最后,我们基于生理结果使用一个综合模型估算了品种的水分亏缺抗性。在水分亏缺条件下,我们发现所有品种的Fv/Fm、RWC和碳同位素歧视(ΔC)均降低,而脯氨酸含量显著增加。此外,我们还发现估算的水分亏缺抗性指数存在差异。这些结果表明水分亏缺抗性存在差异,可能是由于品种遗传组成的差异所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1188/7693893/28a749215691/plants-09-01457-g001.jpg

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