National Engineering Laboratory for Tree Breeding, College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.
Sivilculture Forestry department, College of Forestry, Beijing Forestry University, Beijing, China.
Sci Rep. 2017 Jul 17;7(1):5629. doi: 10.1038/s41598-017-04387-0.
Kalanchoe daigremontiana reproduces asexually by producing plantlets along the leaf margin. The aim of this study was to identify the function of the SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 gene in Kalanchoe daigremontiana (KdSOC1) during plantlet morphogenesis. In this study, KdSOC1 gene expression was detected at stem cell niche during in vitro somatic embryogenesis and plantlet morphogenesis. Disrupting endogenous auxin transportation suppressed the KdSOC1 gene response. Knockdown of the KdSOC1 gene caused a defect in cotyledon formation during the early heart stage of somatic embryogenesis. Over-expression (OE) of the KdSOC1 gene resulted in asymmetric plantlet distribution, a reduced number of plantlets, thicker leaves, and thicker vascular fibers. Higher KdPIN1 gene expression and auxin content were found in OE plant compared to those of wild-type plant leaves, which indicated possible KdSOC1 gene role in affecting auxin distribution and accumulation. KdSOC1 gene OE in DR5-GUS Arabidopsis reporting lines resulted in an abnormal auxin response pattern during different stages of somatic embryogenesis. In summary, the KdSOC1 gene OE might alter auxin distribution and accumulation along leaf margin to initiate plantlet formation and distribution, which is crucial for plasticity during plantlet formation under various environmental conditions.
大花麒麟通过沿叶缘产生不定芽来进行无性繁殖。本研究旨在鉴定 Kalanchoe daigremontiana(KdSOC1)中 SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 基因在不定芽形态发生过程中的功能。在这项研究中,检测到 KdSOC1 基因在体外体细胞胚胎发生和不定芽形态发生过程中的干细胞巢中表达。破坏内源性生长素运输抑制了 KdSOC1 基因的响应。KdSOC1 基因的敲低导致体细胞胚胎发生早期心期的子叶形成缺陷。KdSOC1 基因的过表达导致不对称的不定芽分布、不定芽数量减少、叶片变厚和维管束纤维变厚。与野生型植物叶片相比,OE 植物中更高的 KdPIN1 基因表达和生长素含量表明 KdSOC1 基因可能在影响生长素分布和积累方面发挥作用。KdSOC1 基因在 DR5-GUS 拟南芥报告系中的过表达导致体细胞胚胎发生的不同阶段出现异常的生长素反应模式。总之,KdSOC1 基因的过表达可能会改变沿叶缘的生长素分布和积累,从而启动不定芽的形成和分布,这对于不定芽形成过程中各种环境条件下的可塑性至关重要。