Sasaki Akimasa, Yamaji Naoki, Mitani-Ueno Namiki, Kashino Miho, Ma Jian Feng
Institute of Plant Science and Resources, Okayama University, Chuo 2-20-1, Kurashiki, 710-0046, Japan.
Plant J. 2015 Oct;84(2):374-84. doi: 10.1111/tpj.13005.
Developing tissues such as meristem with low transpiration require high Zn levels for their active growth, but the molecular mechanisms underlying the preferential distribution to these tissues are poorly understood. We found that a member of the ZIP (ZRT, IRT-like protein), OsZIP3, showed high expression in the nodes of rice (Oryza sativa). Immunostaining revealed that OsZIP3 was localized at the xylem intervening parenchyma cells and xylem transfer cells of the enlarged vascular bundle in both basal and upper nodes. Neither OsZIP3 gene expression nor encoded protein was affected by either deficiency or toxic levels of Zn. Knockdown of OsZIP3 resulted in significantly reduced Zn levels in the shoot basal region containing the shoot meristem and elongating zone, but increased Zn levels in the transpiration flow. A short-term experiment with the (67) Zn stable isotope showed that more Zn was distributed to the lower leaves, but less to the shoot elongating zone and nodes in the knockdown lines compared with the wild-type rice at both the vegetative and reproductive growth stages. Taken together, OsZIP3 located in the node is responsible for unloading Zn from the xylem of enlarged vascular bundles, which is the first step for preferential distribution of Zn to the developing tissues in rice.
像分生组织这样蒸腾作用低的发育中的组织,其活跃生长需要高锌水平,但锌优先分配到这些组织的分子机制却知之甚少。我们发现,锌转运蛋白(ZRT、IRT样蛋白)家族成员OsZIP3在水稻(Oryza sativa)的节中高表达。免疫染色显示,OsZIP3定位于基部节和上部节中增大的维管束的木质部居间薄壁细胞和木质部传递细胞。锌缺乏或锌毒性水平均不影响OsZIP3基因表达或其编码蛋白。敲低OsZIP3导致含有茎尖分生组织和伸长区的地上部基部区域锌水平显著降低,但蒸腾流中的锌水平升高。一项使用(67)锌稳定同位素的短期实验表明,在营养生长和生殖生长阶段,与野生型水稻相比,敲低系中更多的锌分配到下部叶片,但分配到茎伸长区和节的锌较少。综上所述,位于节中的OsZIP3负责从增大的维管束木质部卸载锌,这是锌在水稻中优先分配到发育组织的第一步。