Lu Kaizheng, Gu Yiyang, Du YiXin, Yao Yaxuan, Tan Xiaofeng, Wu Lichao, Zhou Junqin, Yuan Jun
Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees, Ministry of Education, Central South University of Forestry and Technology, Changsha, 410004, China.
Academy of Camellia Oil Tree, Central South University of Forestry and Technology, Changsha, 410004, China.
BMC Plant Biol. 2025 May 13;25(1):625. doi: 10.1186/s12870-025-06653-0.
Seasonal drought has hindered the sustainable growth of the Camellia oil tree industry. While brassinolide (BL) can mitigate drought stress in plants to some extent, the regulatory mechanisms underlying BL's effects in Camellia oil tree remain unclear. To investigate the mechanisms by which BL alleviates drought stress in Camellia oil tree, three-year-old 'Huashuo' cutting seedling was exposed to three experimental treatments: CK (normal watering), UW (no watering), and BL (no watering, sprayed with 1 mg∙L BL). Leaf anatomical observation, hormone quantification, and transcriptomic profiling were performed on leaf samples collected at days 2, 4, and 6 following treatments. The results demonstrated that (i) BL treatment significantly increased leaf and spongy tissue thickness; (ii) BL reduced ABA and IAA levels in leaves under drought stress; (iii) WGCNA identified three modules linked to ABA, IAA, and their corresponding hormone levels, with subsequent analysis infer NAC transcription factors (TFs) as the primary regulators in these modules. This study contributes to a deeper understanding of the role of BL in alleviating drought stress in tree crop and provides a fundamental reference for molecular breeding and genetic improvement of Camellia oil tree.
季节性干旱阻碍了油茶产业的可持续发展。虽然油菜素内酯(BL)能在一定程度上缓解植物的干旱胁迫,但BL对油茶影响的调控机制尚不清楚。为了探究BL缓解油茶干旱胁迫的机制,对三年生‘华硕’扦插苗进行了三种实验处理:CK(正常浇水)、UW(不浇水)和BL(不浇水,喷施1 mg∙L BL)。在处理后第2天、第4天和第6天采集叶片样本,进行叶片解剖观察、激素定量分析和转录组分析。结果表明:(i)BL处理显著增加了叶片和海绵组织厚度;(ii)BL降低了干旱胁迫下叶片中脱落酸(ABA)和生长素(IAA)的水平;(iii)加权基因共表达网络分析(WGCNA)确定了与ABA、IAA及其相应激素水平相关的三个模块,后续分析推断NAC转录因子(TFs)是这些模块中的主要调控因子。本研究有助于更深入地了解BL在缓解木本作物干旱胁迫中的作用,并为油茶的分子育种和遗传改良提供基础参考。