Wu Gaoyin, Wei Xiaoli, Wang Xiao, Wei Yi
College of Forestry, Guizhou University, Guiyang, Guizhou, China.
College of Life Science, Guizhou Normal University, Guiyang, Guizhou, China.
Front Plant Sci. 2023 Apr 3;14:1121259. doi: 10.3389/fpls.2023.1121259. eCollection 2023.
Ormosia henryi is a rare and endangered plant growing in southern China. Somatic embryo culture is an effective measure for the rapid propagation of O. henryi. It has not been reported how regulatory genes induce somatic embryogenesis by regulating endogenous hormone changes during the process of somatic embryogenesis in O. henryi.
In this study, we analysed the endogenous hormone levels and transcriptome data of nonembryogenic callus (NEC), embryogenic callus (EC), globular embryo (GE) and cotyledon embryo (CE) in O. henryi.
The results showed that the indole-3-acetic acid (IAA) content was higher and the cytokinins (CKs) content was lower in EC than in NEC, and the gibberellins (GAs) and abscisic acid (ABA) contents were significantly higher in NEC than in EC. The contents of IAA, CKs, GAs and ABA increased significantly with EC development. The expression patterns of differentially expressed genes (DEGs) involved in the biosynthesis and signal transduction of auxin (AUX) (YUCCA and SAUR), CKs (B-ARR), GAs (GA3ox, GA20ox, GID1 and DELLA) and ABA (ZEP, ABA2, AAO3, CYP97A3, PYL and ABF) were consistent with the levels of endogenous hormones during somatic embryogenesis (SE). In this study, 316 different transcription factors (TFs) regulating phytohormones were detected during SE. AUX/IAA were downregulated in the process of EC formation and GE differentiation into CE, but other TFs were upregulated and downregulated.
Therefore, we believe that relatively high IAA content and low CKs, GAs and ABA contents contribute to EC formation. The differential expression of AUX, CKs, GAs and ABA biosynthesis and signal transduction genes affected the endogenous hormone levels at different stages of SE in O. henryi. The downregulated expression of AUX/IAA inhibited NEC induction, promoted EC formation and GE differentiation into CE.
红豆树是生长在中国南方的一种珍稀濒危植物。体细胞胚胎培养是红豆树快速繁殖的有效措施。目前尚未见关于调控基因在红豆树体细胞胚胎发生过程中如何通过调节内源激素变化来诱导体细胞胚胎发生的报道。
本研究分析了红豆树中非胚性愈伤组织(NEC)、胚性愈伤组织(EC)、球形胚(GE)和子叶胚(CE)的内源激素水平和转录组数据。
结果表明,与NEC相比,EC中吲哚-3-乙酸(IAA)含量较高,细胞分裂素(CKs)含量较低,赤霉素(GAs)和脱落酸(ABA)含量在NEC中显著高于EC。随着EC的发育,IAA、CKs、GAs和ABA的含量显著增加。参与生长素(AUX)(YUCCA和SAUR)、CKs(B-ARR)、GAs(GA3ox、GA20ox、GID1和DELLA)和ABA(ZEP、ABA2、AAO3、CYP97A3、PYL和ABF)生物合成和信号转导的差异表达基因(DEGs)的表达模式与体细胞胚胎发生(SE)过程中的内源激素水平一致。本研究在SE过程中检测到316个调控植物激素的不同转录因子(TFs)。在EC形成和GE分化为CE的过程中,AUX/IAA被下调,但其他TFs有上调和下调。
因此,我们认为相对较高的IAA含量以及较低的CKs、GAs和ABA含量有助于EC的形成。AUX、CKs、GAs和ABA生物合成及信号转导基因的差异表达影响了红豆树SE不同阶段的内源激素水平。AUX/IAA的下调表达抑制了NEC的诱导,促进了EC的形成以及GE分化为CE。