Muries Beatriz, Faize Mohamed, Carvajal Micaela, Martínez-Ballesta María Del Carmen
Dpto Nutrición Vegetal, Centro de Edafología y Biología Aplicada del Segura, Campus de Espinardo, 30100 Murcia, Spain.
Mol Biosyst. 2011 Apr;7(4):1322-35. doi: 10.1039/c0mb00285b. Epub 2011 Feb 14.
Plant aquaporins belong to a large superfamily of conserved proteins called the major intrinsic proteins (MIPs). There is limited information about the diversity of MIPs and their water transport capacity in broccoli (Brassica oleracea) plants. In this study, the cDNAs of isoforms of Plasma Membrane Intrinsic Proteins (PIPs), a class of aquaporins, from broccoli roots have been partially sequenced. Thus, sequencing experiments led to the identification of eight PIP1 and three PIP2 genes encoding PIPs in B. oleracea plants. The occurrence of different gene products encoding PIPs suggests that they may play different roles in plants. The screening of their expression as well as the expression of two specific PIP2 isoforms (BoPIP2;2 and BoPIP2;3), in different organs and under different salt-stress conditions in two varieties, has helped to unravel the function and the regulation of PIPs in plants. Thus, a high degree of BoPIP2;3 expression in mature leaves suggests that this BoPIP2;3 isoform plays important roles, not only in root water relations but also in the physiology and development of leaves. In addition, differences between gene and protein patterns led us to consider that mRNA synthesis is inhibited by the accumulation of the corresponding encoded protein. Therefore, transcript levels, protein abundance determination and the integrated hydraulic architecture of the roots must be considered in order to interpret the response of broccoli to salinity.
植物水通道蛋白属于一个被称为主要内在蛋白(MIPs)的保守蛋白大家族。关于西兰花(甘蓝)植株中MIPs的多样性及其水分运输能力的信息有限。在本研究中,已对西兰花根中一类水通道蛋白——质膜内在蛋白(PIPs)亚型的cDNA进行了部分测序。因此,测序实验导致在甘蓝植株中鉴定出8个编码PIP1的基因和3个编码PIP2的基因。编码PIPs的不同基因产物的出现表明它们可能在植物中发挥不同作用。对它们在两个品种的不同器官以及不同盐胁迫条件下的表达以及两种特定PIP2亚型(BoPIP2;2和BoPIP2;3)的表达进行筛选,有助于揭示PIPs在植物中的功能和调控机制。因此,BoPIP2;3在成熟叶片中的高表达表明该BoPIP2;3亚型不仅在根的水分关系中起重要作用,而且在叶片的生理和发育中也起重要作用。此外,基因和蛋白质模式之间的差异使我们认为mRNA合成受到相应编码蛋白积累的抑制。因此,为了解释西兰花对盐胁迫的响应,必须考虑转录水平、蛋白质丰度测定以及根的综合水力结构。