Maestrini Pierluigi, Giordani Tommaso, Lunardi Andrea, Cavallini Andrea, Natali Lucia
Department of Agricultural Plant Biology, Genetics Section, University of Pisa, Via Matteotti 1/B, I-56124 Pisa, Italy.
Plant Cell Physiol. 2004 Dec;45(12):1838-47. doi: 10.1093/pcp/pch213.
Seagrasses such as Posidonia oceanica (L.) Delile are marine phanerogams, widespread in various seas, where they form large prairies representing dynamic substrates exceeding the area of the sediment surface several times over and allowing settlement of epiphyte organisms. Studying mechanisms involved in water transport in marine plants, we isolated two aquaporin-encoding genes, PoPIP1;1 and PoTIP1;1, showing high similarity to plasma membrane- and tonoplast-intrinsic protein-encoding genes, respectively. PoPIP1;1 is unique in the genome of P. oceanica, while PoTIP1;1 belongs to an aquaporin subfamily of at least four members. PoPIP1;1 and PoTIP1;1 encode functional proteins, as indicated by expression experiments in Xenopus oocytes. Both genes are constitutively expressed in the leaves, with higher levels of transcripts in young than in differentiated leaf tissues. Variations of salt concentration in aquarium determined different PoPIP1;1 and PoTIP1;1 transcript accumulation, indicating the existence of adaptation mechanisms related to gene expression also in marine plants, i.e. adapted to very high salt concentrations. Hyposalinity induced lower levels of PIP1 transcripts, while hypersalinity determined more PIP1 transcripts than normal salinity. TIP1 transcripts increased in response to both hypo- and hypersalinity after 2 days of treatment and went back to control levels after 5 d.
像地中海海神草(Posidonia oceanica (L.) Delile)这样的海草是海洋显花植物,广泛分布于各个海域,在那里它们形成大片草甸,构成了动态基质,其面积比沉积物表面面积大几倍,为附生生物提供了栖息场所。在研究海洋植物水分运输机制的过程中,我们分离出了两个水通道蛋白编码基因,PoPIP1;1和PoTIP1;1,它们分别与质膜内在蛋白编码基因和液泡膜内在蛋白编码基因高度相似。PoPIP1;1在地中海海神草基因组中是独一无二的,而PoTIP1;1属于一个至少有四个成员的水通道蛋白亚家族。如非洲爪蟾卵母细胞中的表达实验所示,PoPIP1;1和PoTIP1;1编码功能蛋白。这两个基因在叶片中持续表达,在幼嫩叶片组织中的转录本水平高于分化叶片组织。水族箱中盐浓度的变化决定了不同的PoPIP1;1和PoTIP1;1转录本积累情况,这表明海洋植物中也存在与基因表达相关的适应机制,即适应非常高的盐浓度。低盐度诱导PIP1转录本水平降低,而高盐度下的PIP1转录本比正常盐度下更多。处理2天后,TIP1转录本在低盐度和高盐度条件下均增加,5天后恢复到对照水平。