College of Animal Science, Guizhou University, Guiyang, 550025, China.
Weining Plateau Grassland Test Station, Weining, 553100, China.
BMC Plant Biol. 2022 Mar 25;22(1):144. doi: 10.1186/s12870-022-03503-1.
Sophora davidii is an important plant resource in the karst region of Southwest China, but S. davidii plant-height mutants are rarely reported. Therefore, we performed phenotypic, anatomic structural, transcriptomic and metabolomic analyses to study the mechanisms responsible for S. davidii plant-height mutants. Phenotypic and anatomical observations showed that compared to the wild type, the dwarf mutant displayed a significant decrease in plant height, while the tall mutant displayed a significant increase in plant height. The dwarf mutant cells were smaller and more densely arranged, while those of the wild type and the tall mutant were larger and loosely arranged. Transcriptomic analysis revealed that differentially expressed genes (DEGs) involved in cell wall biosynthesis, expansion, phytohormone biosynthesis, signal transduction pathways, flavonoid biosynthesis and phenylpropanoid biosynthesis were significantly enriched in the S. davidii plant-height mutants. Metabolomic analysis revealed 57 significantly differential metabolites screened from both the dwarf and tall mutants. A total of 8 significantly different flavonoid compounds were annotated to LIPID MAPS, and three metabolites (chlorogenic acid, kaempferol and scopoletin) were involved in phenylpropanoid biosynthesis and flavonoid biosynthesis. These results shed light on the molecular mechanisms of plant height in S. davidii mutants and provide insight for further molecular breeding programs.
苦参是中国西南喀斯特地区的一种重要植物资源,但苦参植株突变体矮化的报道却很少。因此,我们进行了表型、解剖结构、转录组和代谢组学分析,以研究苦参植株突变体矮化的机制。表型和解剖观察表明,与野生型相比,矮化突变体的株高显著降低,而高株突变体的株高显著增加。矮化突变体的细胞更小且排列更紧密,而野生型和高株突变体的细胞更大且排列更松散。转录组分析显示,参与细胞壁生物合成、扩张、植物激素生物合成、信号转导途径、类黄酮生物合成和苯丙烷生物合成的差异表达基因(DEGs)在苦参植株突变体中显著富集。代谢组学分析从矮化和高株突变体中筛选出 57 种差异显著的代谢物。总共注释了 8 种不同的类黄酮化合物到脂质图谱,并且有 3 种代谢物(绿原酸、山奈酚和伞形花内酯)参与了苯丙烷生物合成和类黄酮生物合成。这些结果为苦参突变体株高的分子机制提供了线索,并为进一步的分子育种计划提供了思路。