Zhang Xinshan, Wang Xiujuan, Deng Fei, Liu Yuanyuan, Ru Lei, Yan Guochao, Xu Yunmin, Zhu Zhujun, He Yong
Discipline of Facility Horticulture, College of Horticulture Science, Zhejiang A&F University, Hangzhou, Zhejiang, China.
Department of Computer Science and Technology, College of Mathematics and Computer Science, Zhejiang A&F University, Hangzhou, Zhejiang, China.
Plant Cell Environ. 2025 Jan;48(1):122-133. doi: 10.1111/pce.15150. Epub 2024 Sep 9.
Leaf flattening plays a pivotal role in optimizing light capture and enhancing photosynthesis efficiency. While extensive research has clarified the molecular mechanisms governing the initial stages of leaf flattening, understanding the maintenance of this process in mature leaves remains limited. Our investigation focused on sly-miR398b in tomatoes and revealed its crucial role in maintaining leaf flattening. In situ hybridization experiments indicated predominant expression of sly-miR398b in the abaxial side. Disrupting sly-miR398b using CRISPR/Cas9 relieved its suppression on target gene (Cu/Zn-SOD, SlCSD1), elevating SlCSD1 levels specifically on the abaxial side. Consequently, this asymmetrical expression of SlCSD1 increased hydrogen peroxide (HO) levels in the abaxial side, hindering auxin influx genes while promoting auxin efflux gene expression. This shift reduced auxin response gene expression in the abaxial side of mature leaves compared to the adaxial side, leading to leaf epinasty in sly-miR398b mutants. Exogenous HO spraying induced leaf epinasty, downregulating SlGH3.5 and upregulating SlPIN3 and SlPIN4. Remarkably, spraying with 1-naphthalacetic acid (NAA) restored leaf flattening in sly-miR398b mutants. Our findings offer novel insights into mature leaf flattening maintenance via sly-miR398b's regulation of auxin and HO signalling pathways.
叶片扁平化在优化光捕获和提高光合作用效率方面起着关键作用。虽然广泛的研究已经阐明了控制叶片扁平化初始阶段的分子机制,但对成熟叶片中这一过程的维持的了解仍然有限。我们对番茄中的sly-miR398b进行了研究,揭示了它在维持叶片扁平化中的关键作用。原位杂交实验表明sly-miR398b在叶片背面主要表达。使用CRISPR/Cas9破坏sly-miR398b可解除其对靶基因(铜/锌超氧化物歧化酶,SlCSD1)的抑制,特别是在叶片背面提高SlCSD1的水平。因此,SlCSD1的这种不对称表达增加了叶片背面的过氧化氢(HO)水平,阻碍了生长素流入基因,同时促进了生长素流出基因的表达。与叶片正面相比,这种变化降低了成熟叶片背面生长素响应基因的表达,导致sly-miR398b突变体叶片上卷。外源喷洒HO诱导叶片上卷,下调SlGH3.5并上调SlPIN3和SlPIN4。值得注意的是,喷洒1-萘乙酸(NAA)可恢复sly-miR398b突变体的叶片扁平化。我们的研究结果通过sly-miR398b对生长素和HO信号通路的调节,为成熟叶片扁平化的维持提供了新的见解。