State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.
Vegetable Research Institute, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, China.
Plant Cell Environ. 2019 Apr;42(4):1125-1138. doi: 10.1111/pce.13478. Epub 2018 Nov 29.
In rice, there are five members of the auxin carrier AUXIN1/LIKE AUX1 family; however, the biological functions of the other four members besides OsAUX1 remain unknown. Here, by using CRISPR/Cas9, we constructed two independent OsAUX3 knock-down lines, osaux3-1 and osaux3-2, in wild-type rice, Hwayoung (WT/HY) and Dongjin (WT/DJ). osaux3-1 and osaux3-2 have shorter primary roots (PRs), decreased lateral root (LR) density, and longer root hairs (RHs) compared with their WT. OsAUX3 expression in PRs, LRs, and RHs further supports that OsAUX3 plays a critical role in the regulation of root development. OsAUX3 locates at the plasma membrane and functions as an auxin influx carrier affecting acropetal auxin transport. OsAUX3 is up-regulated in the root apex under aluminium (Al) stress, and osaux3-2 is insensitive to Al treatments. Furthermore, 1-naphthylacetic acid accented the sensitivity of WT/DJ and osaux3-2 to respond to Al stress. Auxin concentrations, Al contents, and Al-induced reactive oxygen species-mediated damage in osaux3-2 under Al stress are lower than in WT, indicating that OsAUX3 is involved in Al-induced inhibition of root growth. This study uncovers a novel pathway alleviating Al-induced oxidative damage by inhibition of acropetal auxin transport and provides a new option for engineering Al-tolerant rice species.
在水稻中,有五个生长素载体 AUXIN1/LIKE AUX1 家族成员;然而,除了 OsAUX1 之外,其他四个成员的生物学功能仍然未知。在这里,我们使用 CRISPR/Cas9 技术,在野生型水稻 Hwayoung(WT/HY)和 Dongjin(WT/DJ)中构建了两个独立的 OsAUX3 敲低系 osaux3-1 和 osaux3-2。与 WT 相比,osaux3-1 和 osaux3-2 的主根(PR)较短,侧根(LR)密度降低,根毛(RH)较长。PR、LR 和 RH 中的 OsAUX3 表达进一步表明 OsAUX3 在调节根发育中起关键作用。OsAUX3 位于质膜上,作为生长素流入载体,影响向顶生长素运输。OsAUX3 在铝(Al)胁迫下的根顶端上调表达,而 osaux3-2 对 Al 处理不敏感。此外,1-萘乙酸加重了 WT/DJ 和 osaux3-2 对 Al 胁迫的敏感性。osaux3-2 在 Al 胁迫下的生长素浓度、Al 含量和 Al 诱导的活性氧介导的损伤均低于 WT,表明 OsAUX3 参与 Al 诱导的根生长抑制。本研究揭示了一种通过抑制向顶生长素运输来缓解 Al 诱导的氧化损伤的新途径,为工程耐 Al 水稻物种提供了一种新选择。