Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, China.
Institute of Horticulture, Zhejiang Academy of Agricultural Sciences, Hangzhou, China.
Physiol Plant. 2018 Mar;162(3):353-369. doi: 10.1111/ppl.12647. Epub 2017 Nov 20.
Cymbidium goeringii Rchb.f. is an important ornamental plant with a striking well-differentiated lip. Its complex floral architecture presents an exciting opportunity to examine perianth development. In flowering plants, class A, B and E floral homeotic genes play key roles in the specification of perianth identity. In this study, we used a cDNA library of wild-type C. goeringii flower buds for transcriptome sequencing. Eighteen candidate class A, B and E genes (including AP1/FUL-, AP2-, DEF-, GLO-, SEP- and AGL6-like genes) were identified. Quantitative real time polymerase chain reaction (qRT-PCR) results showed that CgDEF1, CgSEP2 and CgAGL6-1 were strongly detected only in the sepals and petals and were significantly downregulated in the lips. CgDEF3, CgDEF4 and CgAGL6-3 were highly expressed in the lips and lip-like petals but were only minimally detected in the sepals. Yeast two-hybrid analysis indicated that CgDEF1 and CgGLO formed a heterodimer. CgAGL6-1/CgSEP2 and CgDEF1 formed higher-order protein complexes with the assistance of the CgGLO protein, and both CgAGL6-1 and CgSEP2 formed a heterodimer. CgDEF3/CgDEF4 could interact independently with CgGLO and CgAGL6-3, respectively, while CgDEF3 and CgDEF4 also formed heterodimers with the assistance of the CgGLO. Based on a comprehensive analysis relating these gene expression patterns to protein interaction profiles, the mechanism of sepal/petal/lip determination was studied in C. goeringii. Furthermore, a hypothesis explaining the sepal/petal/lip determination of C. goeringii is proposed. The lip-quartet (CgDEF3/CgDEF4/CgAGL6-3/CgGLO) promoted lip formation, whereas the sepal/petal-quartet (CgDEF1/CgAGL6-1/CgSEP2/CgGLO) promoted sepal/petal formation. These results enrich the current knowledge regarding the mechanism and pathways of perianth formation in orchids.
硬叶兜兰(Cymbidium goeringii Rchb.f.)是一种重要的观赏植物,具有明显分化良好的唇瓣。其复杂的花部结构为研究花被片发育提供了一个令人兴奋的机会。在开花植物中,A、B 和 E 类花同源异型基因在花被片身份的特化中起关键作用。在这项研究中,我们使用了野生型硬叶兜兰花芽的 cDNA 文库进行转录组测序。鉴定出 18 个候选 A、B 和 E 类基因(包括 AP1/FUL-、AP2-、DEF-、GLO-、SEP- 和 AGL6 类基因)。实时定量聚合酶链反应(qRT-PCR)结果表明,CgDEF1、CgSEP2 和 CgAGL6-1 在萼片和花瓣中强烈表达,在唇瓣中显著下调。CgDEF3、CgDEF4 和 CgAGL6-3 在唇瓣和唇瓣状花瓣中高表达,但在萼片中检测到的量很少。酵母双杂交分析表明,CgDEF1 和 CgGLO 形成异源二聚体。CgAGL6-1/CgSEP2 和 CgDEF1 在 CgGLO 蛋白的辅助下形成更高阶的蛋白质复合物,CgAGL6-1 和 CgSEP2 形成异源二聚体。CgDEF3/CgDEF4 可以分别与 CgGLO 和 CgAGL6-3 独立相互作用,而 CgDEF3 和 CgDEF4 也在 CgGLO 的辅助下形成异源二聚体。基于这些基因表达模式与蛋白质相互作用谱的综合分析,研究了硬叶兜兰中萼片/花瓣/唇瓣的决定机制。此外,提出了一个解释硬叶兜兰萼片/花瓣/唇瓣决定的假说。唇瓣四联体(CgDEF3/CgDEF4/CgAGL6-3/CgGLO)促进唇瓣形成,而萼片/花瓣四联体(CgDEF1/CgAGL6-1/CgSEP2/CgGLO)促进萼片/花瓣形成。这些结果丰富了兰花花被片形成机制和途径的现有知识。