Institute of Biotechnology, College of Agriculture and Natural Resources, National Chung Hsing University, Taichung, Taiwan 40227, Republic of China.
Advanced Plant and Food Crop Biotechnology Center, National Chung Hsing University, Taichung, Taiwan 40227, Republic of China.
Plant Cell Physiol. 2024 Sep 3;65(8):1328-1343. doi: 10.1093/pcp/pcae069.
The standout characteristic of the orchid perianth is the transformation of the upper median petal into a distinctively formed lip, which gives orchid flowers their typically zygomorphic symmetry and makes them the most popular ornamental plants worldwide. To study orchid flower development, two WUSCHEL-related homeobox (WOX) genes, PaWOX3 and PaWOX3B, were identified in Phalaenopsis. PaWOX3 and PaWOX3B mRNAs accumulate abundantly during early reproductive development and perianths of young buds, significantly decreasing in mature flowers and absent in vegetative leaves and roots. PaWOX3 and PaWOX3B virus-induced gene silencing (VIGS) knockdown in Phalaenopsis significantly reduces floral bud numbers, suggesting that PaWOX3/PaWOX3B may be involved in flower initiation. Transgenic Arabidopsis ectopically expressing repressor forms of PaWOX3/PaWOX3B and their Oncidium ortholog, OnPRS, exhibit lateral organ development defects, implicating these genes likely have function in regulating growth and differentiation for lateral organs. Neither PaWOX3, PaWOX3B single nor PaWOX3/PaWOX3B double VIGS Phalaenopsis altered the flower morphology. Interestingly, double silencing of PaWOX3 or PaWOX3B with OAGL6-2, which controlled the identity/formation of lips, altered the symmetry of 'BigLip' produced in OAGL6-2 VIGS. This result indicated that the levels of PaWOX3/PaWOX3B are still sufficient to maintain the symmetry for the OAGL6-2 VIGS 'BigLip'. However, the symmetry of the OAGL6-2 VIGS 'BigLip' cannot be maintained once the expression of PaWOX3 or PaWOX3B is further reduced. Thus, in addition to controlling lip identity, this study further found that OAGL6-2 could cooperate with functionally redundant PaWOX3/PaWOX3B in maintaining the symmetric axis of lip.
兰花花瓣的突出特征是上中部花瓣特化成明显的唇瓣,这使得兰花具有典型的左右对称形态,成为全球最受欢迎的观赏植物。为了研究兰花花发育,在蝴蝶兰中鉴定出两个与 WUSCHEL 相关的同源盒(WOX)基因 PaWOX3 和 PaWOX3B。PaWOX3 和 PaWOX3B 的 mRNA 在早期生殖发育和幼芽的花被片中大量积累,在成熟的花朵中显著减少,在营养叶和根中不存在。PaWOX3 和 PaWOX3B 在蝴蝶兰中的病毒诱导基因沉默(VIGS)敲低显著减少了花芽数量,表明 PaWOX3/PaWOX3B 可能参与花的起始。拟南芥中外源表达 PaWOX3/PaWOX3B 的抑制形式及其 Oncidium 同源物 OnPRS,表现出侧生器官发育缺陷,表明这些基因可能在调节侧生器官的生长和分化中具有功能。PaWOX3、PaWOX3B 单一或 PaWOX3/PaWOX3B 双 VIGS 蝴蝶兰均未改变花形态。有趣的是,用控制唇瓣身份/形成的 OAGL6-2 双重沉默 PaWOX3 或 PaWOX3B,改变了 OAGL6-2 VIGS 产生的“BigLip”的对称性。这一结果表明,PaWOX3/PaWOX3B 的水平仍然足以维持 OAGL6-2 VIGS“BigLip”的对称性。然而,一旦 PaWOX3 或 PaWOX3B 的表达进一步降低,OAGL6-2 VIGS“BigLip”的对称性就无法维持。因此,除了控制唇瓣身份外,本研究还发现 OAGL6-2 可以与功能冗余的 PaWOX3/PaWOX3B 合作,维持唇瓣的对称轴。