Zhejiang Provincial Key Laboratory of Crop Genetic Resources, Institute of Crop Science, Plant Precision Breeding Academy, College of Agriculture and Biotechnology, Zhejiang University, Zhejiang, 310058, China.
Industrial Crop Research Institute, Sichuan Academy of Agricultural Sciences, Sichuan, 610066, China.
Adv Sci (Weinh). 2024 Jul;11(26):e2402816. doi: 10.1002/advs.202402816. Epub 2024 Apr 26.
Leaf shape is considered to be one of the most significant agronomic traits in crop breeding. However, the molecular basis underlying leaf morphogenesis in cotton is still largely unknown. In this study, through genetic mapping and molecular investigation using a natural cotton mutant cu with leaves curling upward, the causal gene GHCU is successfully identified as the key regulator of leaf flattening. Knockout of GHCU or its homolog in cotton and tobacco using CRISPR results in abnormal leaf shape. It is further discovered that GHCU facilitates the transport of the HD protein KNOTTED1-like (KNGH1) from the adaxial to the abaxial domain. Loss of GHCU function restricts KNGH1 to the adaxial epidermal region, leading to lower auxin response levels in the adaxial boundary compared to the abaxial. This spatial asymmetry in auxin distribution produces the upward-curled leaf phenotype of the cu mutant. By analysis of single-cell RNA sequencing and spatiotemporal transcriptomic data, auxin biosynthesis genes are confirmed to be expressed asymmetrically in the adaxial-abaxial epidermal cells. Overall, these findings suggest that GHCU plays a crucial role in the regulation of leaf flattening through facilitating cell-to-cell trafficking of KNGH1 and hence influencing the auxin response level.
叶片形状被认为是作物育种中最重要的农艺性状之一。然而,棉花叶片形态发生的分子基础在很大程度上仍然未知。在这项研究中,通过利用自然棉花突变体 cu 进行遗传图谱和分子研究,该研究成功鉴定出 GHCU 是叶片展平的关键调控因子。使用 CRISPR 敲除棉花和烟草中的 GHCU 或其同源物会导致叶片形状异常。进一步发现,GHCU 促进了 HD 蛋白 KNOTTED1-like (KNGH1) 从近轴到远轴区域的运输。GHCU 功能的丧失限制了 KNGH1 在近轴表皮区域的分布,导致近轴边界处的生长素响应水平低于远轴。生长素分布的这种空间不对称性产生了 cu 突变体的向上卷曲叶片表型。通过单细胞 RNA 测序和时空转录组数据的分析,生长素生物合成基因在近轴-远轴表皮细胞中被证实呈不对称表达。总的来说,这些发现表明,GHCU 通过促进 KNGH1 的细胞间运输,在调节叶片展平方面发挥着关键作用,从而影响生长素的响应水平。