| Literature DB >> 32083670 |
Ningning Chen1, Shaofei Tong1, Hu Tang1, Zhiyang Zhang1, Bao Liu1, Shangling Lou1, Jianquan Liu1,2, Huanhuan Liu1, Tao Ma1, Yuanzhong Jiang1.
Abstract
Salinity restricts the growth of trees to varying extents, but the regulatory mechanisms involved in their varying salt tolerance are largely unknown. In an effort to elucidate these mechanisms, we identified a total of 99 genes in the Ethylene Responsive Factor (ERF) family of transcription factors and examined their expression patterns under salt stress in Populus alba var. pyramidalis. We found that a B4 group gene, PalERF109, was rapidly induced by salt treatment and preferentially expressed in stems and petioles, where it is probably involved in transport of ions and water in xylem. Overexpression of PalERF109 enhanced the salt tolerance of the poplar, and further analysis showed that it directly upregulated a high-affinity K+transporter (HKT) gene, PalHKT1;2. The results clearly indicate that PalERF109 enhances salt tolerance at least partially through direct activation of PalHKT1;2 and extends understanding of the roles of ERF genes in tree stress responses.Entities:
Keywords: zzm321990 HKTzzm321990 ; zzm321990 PalERF109zzm321990 ; zzm321990 Populus alba var. pyramidalis; salt stress
Year: 2020 PMID: 32083670 DOI: 10.1093/treephys/tpaa018
Source DB: PubMed Journal: Tree Physiol ISSN: 0829-318X Impact factor: 4.196