Department of Ornamental Horticulture, China Agricultural University, Beijing, 100193, China.
Plant Mol Biol. 2013 Oct;83(3):219-33. doi: 10.1007/s11103-013-0084-6. Epub 2013 Jun 8.
Aquaporins (AQPs) are multifunctional membrane channels and facilitate the transport of water across plant cell membranes. Among the plant AQPs, plasma membrane intrinsic proteins (PIPs), which cluster in two phylogenetic groups (PIP1 and PIP2), play a key role in plant growth. Our previous work has indicated that RhPIP2;1, a member of PIP2, is involved in ethylene-regulated cell expansion of rose petals. However, whether PIP1s also play a role in petal expansion is still unclear. Here, we identified RhPIP1;1, a PIP1 subfamily member, from 18 PIPs assemble transcripts in rose microarray database responsive to ethylene. RhPIP1;1 was rapidly and significantly down-regulated by ethylene treatment. RhETRs-silencing also clearly decreased the expression of RhPIP1;1 in rose petals. The activity of the RhPIP1;1 promoter was repressed by ethylene in rosettes and roots of Arabidopsis. RhPIP1;1 is mainly localized on endoplasmic reticulum and plasma membrane. We demonstrated that RhPIP1;1-silencing significantly inhibited the expansion of petals with decreased petal size and cell area, as well as reduced fresh weight when compared to controls. Expression of RhPIP1;1 in Xenopus oocytes indicated that RhPIP1;1 was inactive in terms of water transport, while coexpression of RhPIP1;1 with the functional RhPIP2;1 led to a significant increase in plasma membrane permeability. Yeast growth, β-Galactosidase activity, bimolecular fluorescence complementation, and colocalization assay proved existence of the interaction between RhPIP1;1 and RhPIP2;1. We argue that RhPIP1;1 plays an important role in ethylene-regulated petal cell expansion, at least partially through the interaction with RhPIP2;1.
水通道蛋白(AQPs)是多功能膜通道,促进水在植物细胞膜中的运输。在植物 AQPs 中,质膜内在蛋白(PIPs)分为两个进化群(PIP1 和 PIP2),在植物生长中发挥关键作用。我们之前的工作表明,PIP2 家族成员 RhPIP2;1 参与了玫瑰花瓣中乙烯调控的细胞扩张。然而,PIP1s 是否也参与花瓣扩张尚不清楚。在这里,我们从玫瑰微阵列数据库中鉴定了 18 个 PIP 转录本中响应乙烯的 RhPIP1;1,它是 PIP1 亚家族成员。乙烯处理后,RhPIP1;1 迅速且显著下调。RhETR 沉默也明显降低了玫瑰花瓣中 RhPIP1;1 的表达。RhPIP1;1 启动子的活性在拟南芥的莲座叶和根中被乙烯抑制。RhPIP1;1 主要定位于内质网和质膜上。我们证明,与对照相比,RhPIP1;1 沉默显著抑制了花瓣的扩张,导致花瓣尺寸和细胞面积减小,鲜重降低。RhPIP1;1 在非洲爪蟾卵母细胞中的表达表明,RhPIP1;1 在水运输方面是无活性的,而 RhPIP1;1 与功能型 RhPIP2;1 的共表达导致质膜通透性显著增加。酵母生长、β-半乳糖苷酶活性、双分子荧光互补和共定位实验证明了 RhPIP1;1 和 RhPIP2;1 之间存在相互作用。我们认为 RhPIP1;1 在乙烯调控的花瓣细胞扩张中发挥重要作用,至少部分是通过与 RhPIP2;1 的相互作用。