Department of Biology, University of Naples Federico II, Napoli, Italy.
PLoS One. 2019 Mar 1;14(3):e0213185. doi: 10.1371/journal.pone.0213185. eCollection 2019.
The Orchidaceae family, which is one of the most species-rich flowering plant families, includes species with highly diversified and specialized flower shapes. The aim of this study was to analyze the MADS-box genes expressed in the inflorescence of Orchis italica, a wild Mediterranean orchid species. MADS-box proteins are transcription factors involved in various plant biological processes, including flower development. In the floral tissues of O. italica, 29 MADS-box genes are expressed that are classified as both class I and II. Class I MADS-box genes include one Mβ-type gene, thereby confirming the presence of this type of MADS-box genes in orchids. The class II MIKC* gene is highly expressed in the column, which is consistent with the conserved function of the MIKC* genes in gametophyte development. In addition, homologs of the SOC, SVP, ANR1, AGL12 and OsMADS32 genes are expressed. Compared with previous knowledge on class II MIKCC genes of O. italica involved in the ABCDE model of flower development, the number of class B and D genes has been confirmed. In addition, 4 class A (AP1/FUL) transcripts, 2 class E (SEP) transcripts, 2 new class C (AG) transcripts and 1 new AGL6 transcript have been identified. Within the AP1/FUL genes, the sequence divergence, relaxation of purifying selection and expression profiles suggest a possible functional diversification within these orchid genes. The detection of only two SEP transcripts in O. italica, in contrast with the 4 genes found in other orchids, suggests that only two SEP genes could be present in the subfamily Orchidoideae. The expression pattern of the MIKCC genes of O. italica indicates that low levels at the boundary of the domain of a given MADS-box gene can overlap with the expression of genes belonging to a different functional A-E class in the adjacent domain, thereby following a "fading borders" model.
兰科是开花植物中物种最丰富的科之一,包括具有高度多样化和专业化花形的物种。本研究旨在分析地中海野生兰花orchis italica 花序中表达的 MADS 框基因。MADS 框蛋白是参与各种植物生物学过程的转录因子,包括花发育。在 O. italica 的花组织中,表达了 29 个 MADS 框基因,这些基因被分类为 I 类和 II 类。I 类 MADS 框基因包括一个 Mβ型基因,从而证实了这种 MADS 框基因在兰花中的存在。II 类 MIKC基因在柱中高度表达,这与 MIKC基因在配子体发育中的保守功能一致。此外,SOC、SVP、ANR1、AGL12 和 OsMADS32 基因的同源物也有表达。与以前关于涉及花发育 ABCDE 模型的 O. italica II 类 MIKCC 基因的知识相比,已确认 B 和 D 类基因的数量。此外,还鉴定了 4 个类 A(AP1/FUL)转录本、2 个类 E(SEP)转录本、2 个新的类 C(AG)转录本和 1 个新的 AGL6 转录本。在 AP1/FUL 基因中,序列分化、纯化选择的放松和表达谱表明这些兰花基因可能存在功能多样化。在 O. italica 中仅检测到两个 SEP 转录本,而在其他兰花中发现了 4 个基因,这表明在 Orchidoideae 亚科中可能只有两个 SEP 基因存在。O. italica 的 MIKCC 基因表达模式表明,给定 MADS 框基因边界处的低水平可以与相邻域中属于不同功能 A-E 类的基因的表达重叠,从而遵循“渐隐边界”模型。