lncRNA62732 acts as an eTM of miR9778 to regulate TaHAK18-5B and mediate the potassium deficiency response in wheat

Ke Xu, Sihang Zhao, Hao Wu, Yan Wang, Ruoxi Sun, Shuhua Zhang, Chunjiang Zhou, Xueju Yang, Yong Zhao

Journal:NEW PHYTOLOGIST

IF:8.7

DOI:10.1111/nph.71456

PMID:

Published:2026-07-28

research field:分子生物学神经胃肠病学免疫学炎症性肠病研究微生物学

Abstract

Summary Potassium (K + ) deficiency severely limits global wheat productivity and food security. Genetic improvement of K + utilization efficiency (KUE) is a sustainable strategy to address this challenge; however, the underlying molecular mechanisms remain unclear. We identified a lncRNA62732-miR9778- TaHAK18-5B module in wheat ( Triticum aestivum ) using long noncoding RNAs (lncRNA)-sequencing combined with competing endogenous RNA prediction. Using genetic transformation and molecular biology techniques, we analyzed the role of this module in mediating the response to K + deficiency and the mechanisms underlying its effects. miR9778 is a Triticeae-specific miRNA that directly targets TaHAK18-5B. Both miR9778 silencing and TaHAK18-5B overexpression notably enhanced K + deficiency tolerance at the seedling stage by modulating root K + acquisition and translocation from the roots to the shoots, whereas silencing TaHAK18-5B had the opposite effect. Additionally, lncRNA62732 was identified as an endogenous target mimic (eTM) of miR9778 that sequesters miR9778 and prevents miR9778-mediated cleavage of TaHAK18-5B , thereby positively regulating wheat seedlings' growth under K + deficiency conditions. Notably, the lncRNA62732-miR9778- TaHAK18-5B module improved wheat adaptation to K + deficiency and enhanced the KUE and grain yield under field conditions. These results reveal a novel module in mediating K + homeostasis and provide valuable genetic resources for engineering KUE in wheat. Graphical Proposed model of the lncRNA62732-miR9778- TaHAK18-5B module regulating K + deficiency response in wheat ( Triticum aestivum ).

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