Su Yingchun, Liu Zhonghao, Sun Jiahui, Wu Chenglai, Li Yan, Zhang Chunqing, Zhao Linmao
State Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural University, Tai'an, China.
Front Plant Sci. 2022 Jan 27;13:831916. doi: 10.3389/fpls.2022.831916. eCollection 2022.
Water uptake facilitates the initiation of seed germination. It is presumed that aquaporin (AQP)-mediated water inflow contributes to seed germination, but the genetic evidence is still lacking. This study aimed at genome-wide identification of ZmAQPs and further determined the physiological functions. Following a comprehensive search, a total of 41 ZmAQPs were identified according to the latest genome database. Through bioinformatic approaches, the physicochemical characteristics, phylogenetic relationships, and structural features of ZmAQPs were analyzed. The gene expression analysis of 20 high-resolution and multi-tissues samples showed that ZmAQPs had distinct spatiotemporal and tissue-specific expression profiles during seed germination and early seedling development. We then focused on the aquaporin of maize tonoplast intrinsic protein 3 (ZmTIP3), which is specifically expressed in germinating seed. A mutant with disruption of the gene showed shorter shoot and root length, and decreased seedling dry weight compared with the control (). The result revealed that ZmTIP3-1 improved the absolute content of seed protein and promoted storage reserves mobilization, suggesting that ZmTIP3 may be a positive regulator of seed vigor. This work provides valuable clues for understanding the function and possible regulatory mechanism of ZmAQPs in seed germination and seedling growth.
水分吸收促进种子萌发的起始。据推测,水通道蛋白(AQP)介导的水分流入有助于种子萌发,但仍缺乏遗传学证据。本研究旨在对ZmAQPs进行全基因组鉴定,并进一步确定其生理功能。通过全面搜索,根据最新的基因组数据库共鉴定出41个ZmAQPs。通过生物信息学方法,分析了ZmAQPs的理化特性、系统发育关系和结构特征。对20个高分辨率多组织样本的基因表达分析表明,ZmAQPs在种子萌发和幼苗早期发育过程中具有明显的时空和组织特异性表达模式。然后我们聚焦于玉米液泡膜内在蛋白3(ZmTIP3)的水通道蛋白,其在萌发种子中特异性表达。与对照相比,该基因破坏的突变体表现出较短的地上部和根部长度以及降低的幼苗干重。结果表明,ZmTIP3-1提高了种子蛋白的绝对含量并促进了贮藏物质的动员,表明ZmTIP3可能是种子活力的正调控因子。这项工作为理解ZmAQPs在种子萌发和幼苗生长中的功能及可能的调控机制提供了有价值的线索。