Niu Huiliang, Wang Junjie, Liao Zhiwei, Deng Yangjuan, Chen Qi, Peng Chuanyi, Chen Guijie, Hou Ruyan, Wan Xiaochun, Zhang Zhaoliang, Cai Huimei
National Key Laboratory for Tea Plant Germplasm Innovation and Resource Utilization, School of Tea & Food Science and Technology, Anhui Agricultural University, 130 West Changjiang Road, Hefei, Anhui 230036, China.
Hortic Res. 2025 Mar 3;12(6):uhaf072. doi: 10.1093/hr/uhaf072. eCollection 2025 Jun.
Fluoride (F) is a nonessential but potentially harmful element for plants, especially when present in excess. The tea plant is known for its ability to hyperaccumulate F from the soil and eventually accumulates in the leaves; however, how the tea plant transports F to the leaves remains unclear. Here, we found that Se can significantly decrease the transport efficiency of F from root to leaf. Therefore, RNA-Sequencing was performed on tea roots cotreated with selenite and fluoride, and then we isolated a plasma membrane-localized F transporter CsNPF2.3 from tea plant roots and examined its role in transport of F in tea plants. The results showed that CsNPF2.3 exhibited F transport activity when heterologously expressed in yeast. Expression pattern analysis revealed that is expressed in epidermal cells, cortex cells, and xylem parenchyma cells in roots. Overexpression of in tea roots significantly increased F content in the root, stem, and leaf, and enhanced the transport efficiency of F from root to leaf. Furthermore, in nine tea cultivars, expression in the root was significantly positively correlated with F content in the leaf and root, and the transport efficiency of F from root to leaf. Altogether, these findings suggest that CsNPF2.3 was involved in uptake and transport of F in tea plants.
氟(F)是一种对植物非必需但可能有害的元素,尤其是当过量存在时。茶树以其从土壤中超积累氟并最终在叶片中积累的能力而闻名;然而,茶树如何将氟运输到叶片尚不清楚。在这里,我们发现硒可以显著降低氟从根到叶的运输效率。因此,对用亚硒酸盐和氟共同处理的茶树根进行了RNA测序,然后我们从茶树根中分离出一种定位于质膜的氟转运蛋白CsNPF2.3,并研究了其在茶树氟运输中的作用。结果表明,CsNPF2.3在酵母中异源表达时表现出氟运输活性。表达模式分析表明,它在根的表皮细胞、皮层细胞和木质部薄壁细胞中表达。在茶树根中过表达CsNPF2.3显著增加了根、茎和叶中的氟含量,并提高了氟从根到叶的运输效率。此外,在九个茶树品种中,根中CsNPF2.3的表达与叶和根中的氟含量以及氟从根到叶的运输效率显著正相关。总之,这些发现表明CsNPF2.3参与了茶树对氟的吸收和运输。