Yuste-Lisbona Fernando J, Quinet Muriel, Fernández-Lozano Antonia, Pineda Benito, Moreno Vicente, Angosto Trinidad, Lozano Rafael
Centro de Investigación en Biotecnología Agroalimentaria (BITAL), Universidad de Almería, 04120 Almería, Spain.
Instituto de Biología Molecular y Celular de Plantas (UPV-CSIC), Universidad Politécnica de Valencia. Avenida de los Naranjos s/n. 46022 Valencia, Spain.
Sci Rep. 2016 Jan 4;6:18796. doi: 10.1038/srep18796.
Inflorescence development is a key factor of plant productivity, as it determines flower number. Therefore, understanding the mechanisms that regulate inflorescence architecture is critical for reproductive success and crop yield. In this study, a new mutant, vegetative inflorescence (mc-vin), was isolated from the screening of a tomato (Solanum lycopersicum L.) T-DNA mutant collection. The mc-vin mutant developed inflorescences that reverted to vegetative growth after forming two to three flowers, indicating that the mutated gene is essential for the maintenance of inflorescence meristem identity. The T-DNA was inserted into the promoter region of the MACROCALYX (MC) gene; this result together with complementation test and expression analyses proved that mc-vin is a new knock-out allele of MC. Double combinations between mc-vin and jointless (j) and single flower truss (sft) inflorescence mutants showed that MC has pleiotropic effects on the reproductive phase, and that it interacts with SFT and J to control floral transition and inflorescence fate in tomato. In addition, MC expression was mis-regulated in j and sft mutants whereas J and SFT were significantly up-regulated in the mc-vin mutant. Together, these results provide new evidences about MC function as part of the genetic network regulating the development of tomato inflorescence meristem.
花序发育是植物生产力的关键因素,因为它决定花的数量。因此,了解调控花序结构的机制对于繁殖成功和作物产量至关重要。在本研究中,从番茄(Solanum lycopersicum L.)T-DNA突变体库的筛选中分离出一个新的突变体,即营养花序(mc-vin)。mc-vin突变体形成两到三朵花后发育出的花序会恢复为营养生长,这表明突变基因对于维持花序分生组织特性至关重要。T-DNA插入到了MACROCALYX(MC)基因的启动子区域;这一结果连同互补试验和表达分析证明mc-vin是MC的一个新的敲除等位基因。mc-vin与无节(j)和单花穗(sft)花序突变体之间的双突变组合表明,MC在生殖阶段具有多效性作用,并且它与SFT和J相互作用以控制番茄中的花转变和花序命运。此外,MC在j和sft突变体中的表达失调,而J和SFT在mc-vin突变体中显著上调。总之,这些结果为MC作为调控番茄花序分生组织发育的遗传网络一部分的功能提供了新证据。