Aquaporins Group, Plant Nutrition Department, Centro de Edafología Y Biología Aplicada del Segura (CEBAS-CSIC), Campus Universitario de Espinardo, Edificio 25, 30100, Murcia, Spain.
Sci Rep. 2020 Dec 17;10(1):22240. doi: 10.1038/s41598-020-79250-w.
Melon (Cucumis melo L.) is a very important crop throughout the world and has great economic importance, in part due to its nutritional properties. It prefers well-drained soil with low acidity and has a strong demand for water during fruit set. Therefore, a correct water balance-involving aquaporins-is necessary to maintain the plants in optimal condition. This manuscript describes the identification and comparative analysis of the complete set of aquaporins in melon. 31 aquaporin genes were identified, classified and analysed according to the evolutionary relationship of melon with related plant species. The individual role of each aquaporin in the transport of water, ions and small molecules was discussed. Finally, qPCR revealed that almost all melon aquaporins in roots and leaves were constitutively expressed. However, the high variations in expression among them point to different roles in water and solute transport, providing important features as that CmPIP1;1 is the predominant isoform and CmTIP1;1 is revealed as the most important osmoregulator in the tonoplast under optimal conditions. The results of this work pointing to the physiological importance of each individual aquaporin of melon opening a field of knowledge that deserves to be investigated.
甜瓜(Cucumis melo L.)是一种在全世界都非常重要的作物,具有巨大的经济重要性,部分原因是其具有营养价值。它喜欢排水良好、酸度低的土壤,在果实形成期间对水有强烈的需求。因此,需要正确的水分平衡——涉及水通道蛋白——来维持植物处于最佳状态。本文描述了甜瓜中完整的水通道蛋白家族的鉴定和比较分析。根据甜瓜与相关植物物种的进化关系,鉴定、分类和分析了 31 个水通道蛋白基因。讨论了每个水通道蛋白在水、离子和小分子运输中的个体作用。最后,qPCR 显示,根和叶中的几乎所有甜瓜水通道蛋白均呈组成型表达。然而,它们之间表达的高度差异表明它们在水和溶质运输中具有不同的作用,为 CmPIP1;1 是主要同工型和 CmTIP1;1 在最佳条件下是质膜中最重要的渗透调节剂提供了重要特征。这项工作的结果表明,甜瓜每个水通道蛋白的生理重要性开辟了一个值得研究的知识领域。