Hao Xiaohua, Zeng Meng, Wang Jian, Zeng Zhongwen, Dai Jiali, Xie Zijing, Yang Yuanzhu, Tian Lianfu, Chen Liangbi, Li Dongping
Hunan Province Key Laboratory of Crop Sterile Germplasm Resource Innovation and Application, College of Life Science, Hunan Normal University, Changsha, China.
College of Life and Environmental Science, Hunan University of Arts and Science, Changde, China.
Front Plant Sci. 2018 Apr 11;9:476. doi: 10.3389/fpls.2018.00476. eCollection 2018.
Excessive cadmium (Cd) accumulation in grains of rice ( L.) is a risk to food security. The transporters in the nodes of rice are involved in the distribution of mineral elements including toxic elements to different tissues such as grains. However, the mechanism of Cd accumulation in grains is largely unknown. Here, we report a node-expressed transporter gene, , a putative cation/calcium (Ca) exchanger, mediating Cd accumulation in the grains of rice. Knockout of caused a remarkable reduction of Cd content in the grains. Further study showed that disruption of this gene led to a reduced root-to-shoot translocation ratio of Cd. Moreover, Cd distribution was also disturbed in different levels of internode and leaf. OsCCX2 is localized to plasma membrane, and is mainly expressed in xylem region of vascular tissues at the nodes. OsCCX2 might function as an efflux transporter, responsible for Cd loading into xylem vessels. Therefore, our finding revealed a novel Cd transporter involved in grain Cd accumulation, possibly via a Ca transport pathway in the nodes of rice.
水稻籽粒中过量镉(Cd)积累对粮食安全构成风险。水稻节中的转运蛋白参与包括有毒元素在内的矿质元素向不同组织(如籽粒)的分配。然而,籽粒中镉积累的机制在很大程度上尚不清楚。在此,我们报道了一个在节中表达的转运蛋白基因,即推定的阳离子/钙(Ca)交换体,它介导水稻籽粒中镉的积累。敲除该基因导致籽粒中镉含量显著降低。进一步研究表明,该基因的破坏导致镉从根到地上部的转运率降低。此外,节间和叶片不同部位的镉分布也受到干扰。OsCCX2定位于质膜,且主要在节中维管组织的木质部区域表达。OsCCX2可能作为一种外排转运蛋白,负责将镉装载到木质部导管中。因此,我们的发现揭示了一种参与籽粒镉积累的新型镉转运蛋白,可能通过水稻节中的钙转运途径发挥作用。