Wang Lihong, Li Jigang, Zhou Qing, Yang Guangmei, Ding Xiao Lan, Li Xiaodong, Cai Chen Xin, Zhang Zhao, Wei Hai Yan, Lu Tian Hong, Deng Xing Wang, Huang Xiao Hua
Jiangsu Collaborative Innovation Center of Biomedical Functional Materials, Jiangsu Key Laboratory of Biomedical Materials, College of Chemistry and Materials Science, and State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China;
Peking-Yale Joint Center for Plant Molecular Genetics and Agro-biotechnology, and National Key Laboratory of Protein and Plant Gene Research, Peking-Tsinghua Center for Life Sciences, College of Life Sciences, Peking University, Beijing 100871, China; State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing 100193, China;
Proc Natl Acad Sci U S A. 2014 Sep 2;111(35):12936-41. doi: 10.1073/pnas.1413376111. Epub 2014 Aug 11.
It has long been observed that rare earth elements (REEs) regulate multiple facets of plant growth and development. However, the underlying mechanisms remain largely unclear. Here, using electron microscopic autoradiography, we show the life cycle of a light REE (lanthanum) and a heavy REE (terbium) in horseradish leaf cells. Our data indicate that REEs were first anchored on the plasma membrane in the form of nanoscale particles, and then entered the cells by endocytosis. Consistently, REEs activated endocytosis in plant cells, which may be the cellular basis of REE actions in plants. Moreover, we discovered that a portion of REEs was successively released into the cytoplasm, self-assembled to form nanoscale clusters, and finally deposited in horseradish leaf cells. Taken together, our data reveal the life cycle of REEs and their cellular behaviors in plant cells, which shed light on the cellular mechanisms of REE actions in living organisms.
长期以来,人们一直观察到稀土元素(REEs)调控着植物生长发育的多个方面。然而,其潜在机制在很大程度上仍不清楚。在此,我们利用电子显微镜放射自显影技术,展示了轻稀土元素(镧)和重稀土元素(铽)在辣根叶细胞中的生命周期。我们的数据表明,稀土元素首先以纳米级颗粒的形式锚定在质膜上,然后通过内吞作用进入细胞。一致地,稀土元素激活了植物细胞中的内吞作用,这可能是稀土元素在植物中发挥作用的细胞基础。此外,我们发现一部分稀土元素相继释放到细胞质中,自组装形成纳米级聚集体,最终沉积在辣根叶细胞中。综上所述,我们的数据揭示了稀土元素在植物细胞中的生命周期及其细胞行为,这为稀土元素在生物体中的作用机制提供了线索。