College of Life Sciences, Nanjing Agricultural University, Nanjing, China.
Institute of Plant Science and Resources, Okayama University, Chuo 2-20-1, Kurashiki, Japan.
Plant Cell Physiol. 2018 Oct 1;59(10):2039-2051. doi: 10.1093/pcp/pcy124.
Deficiency of copper (Cu) causes low fertility in many plant species, but the molecular mechanisms underlying distribution of Cu to the floral organs are poorly understood. Here, we found that a member of yellow-stripe like (YSL) family, YSL16 encoding the Cu-nicotianamine (Cu-NA) transporter, was highly expressed in the rachilla, with less expression in the palea and lemma of rice (Oryza sativa). β-Glucuronidase (GUS) staining of transgenic rice carrying the OsYSL16 promoter-GUS showed that OsYSL16 was mainly expressed in vascular bundles of the rachilla as well as the palea and lemma. Knockout of OsYSL16 resulted in decreased Cu distribution to the stamens, but increased distribution to the palea and lemma. A short-term (24 h) 65Cu labeling experiment confirmed increased Cu concentration of palea and lemma in the mutant. Furthermore, we found that redistribution of Cu from the palea and lemma was impaired in the osysl16 mutant after exposure to Cu-free solution. The osysl16 mutant showed low pollen germination, but this was rescued by addition of Cu in the medium. Our results indicate that OsYSL16 expressed in the vascular bundles of the rachilla is important for preferential distribution of Cu to the stamens, while OsYSL16 in vascular bundles of the palea and lemma is involved in Cu redistribution under Cu-limited conditions in rice.
铜(Cu)缺乏会导致许多植物物种的繁殖力降低,但将 Cu 分配到花器官的分子机制还知之甚少。在这里,我们发现黄条纹样(YSL)家族的一个成员 YSL16,它编码 Cu-尼克酸胺(Cu-NA)转运蛋白,在小穗轴中高度表达,在稻(Oryza sativa)的内稃和外稃中表达较少。携带 OsYSL16 启动子-GUS 的转基因水稻的β-葡萄糖醛酸酶(GUS)染色表明,OsYSL16 主要在小穗轴的维管束以及内稃和外稃中表达。OsYSL16 的敲除导致 Cu 向雄蕊的分布减少,但向内稃和外稃的分布增加。一项为期 24 小时的 65Cu 标记实验证实了突变体中内稃和外稃 Cu 浓度的增加。此外,我们发现,在无 Cu 溶液中暴露后,突变体中 Cu 从内稃和外稃的再分配受损。osysl16 突变体的花粉萌发率较低,但在培养基中添加 Cu 后得到了挽救。我们的研究结果表明,在小穗轴维管束中表达的 OsYSL16 对 Cu 向雄蕊的优先分配很重要,而在内稃和外稃维管束中表达的 OsYSL16 则参与了 Cu 再分配。