Institute of Vegetables, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, China.
Mol Genet Genomics. 2014 Dec;289(6):1131-45. doi: 10.1007/s00438-014-0874-9. Epub 2014 Jun 28.
Aquaporins (AQPs) are members of a superfamily of integral membrane proteins and play a significant role in the transportation of small molecules across membranes. However, currently little is known about the AQP genes in Chinese cabbage (Brassica rapa ssp. pekinensis). In this study, a genome-wide analysis was carried out to identify the AQP genes in Chinese cabbage. In total, 53 non-redundant AQP genes were identified that were located on all of the 10 chromosomes. The number of AQP genes in Chinese cabbage was greater than in Arabidopsis. They were classified into four subfamilies, including PIP, TIP, NIP, and SIP. Thirty-three groups of AQP orthologous genes were identified between Chinese cabbage and Arabidopsis, but orthologs corresponding to AtNIP1;1 and AtPIP2;8 were not detected. Seventeen groups of paralogous genes were identified in Chinese cabbage. Three-dimensional models of the AQPs of Chinese cabbage were constructed using Phyre2, and ar/R selectivity filters were analyzed comparatively between Chinese cabbage and Arabidopsis. Generally, gene structure was conserved within each subfamily, especially in the SIP subfamily. Intron loss events have occurred during the evolution of the PIP, TIP, and NIP subfamilies. The expression of AQP genes in Chinese cabbage was analyzed in different organs. Most AQP genes were downregulated in response to salt stress. This work shows that the AQP genes of Chinese cabbage have undergone triplication and subsequent biased gene loss.
水通道蛋白(AQP)是整联膜蛋白超家族的成员,在小分子跨膜运输中发挥重要作用。然而,目前对白菜( Brassica rapa ssp. pekinensis )的 AQP 基因知之甚少。本研究进行了全基因组分析,以鉴定白菜中的 AQP 基因。共鉴定出 53 个非冗余 AQP 基因,这些基因位于 10 条染色体上。白菜的 AQP 基因数量多于拟南芥。它们分为 PIP、TIP、NIP 和 SIP 四个亚家族。在白菜和拟南芥之间鉴定出 33 组 AQP 直系同源基因,但未检测到对应于 AtNIP1;1 和 AtPIP2;8 的直系同源基因。在白菜中鉴定出 17 组旁系同源基因。使用 Phyre2 构建了白菜 AQP 的三维模型,并比较了白菜和拟南芥之间的 ar/R 选择性过滤器。通常,每个亚家族内的基因结构是保守的,特别是在 SIP 亚家族中。在 PIP、TIP 和 NIP 亚家族的进化过程中发生了内含子丢失事件。分析了白菜不同器官中 AQP 基因的表达。大多数 AQP 基因在盐胁迫下下调表达。这项工作表明,白菜的 AQP 基因经历了三倍体化和随后的偏基因丢失。