Chen Zhe-Hao, Jia Fei-Fei, Hu Jiang-Qin, Pang Ji-Liang, Xu Lei, Wang Li-Lin
College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 310036, Zhejiang, China.
College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 310036, Zhejiang, China.
J Plant Physiol. 2014 Jan 15;171(2):148-53. doi: 10.1016/j.jplph.2013.08.010. Epub 2013 Nov 22.
pea-MADS4 (PEAM4) regulates floral morphology in Pisum sativum L., however, its molecular mechanisms still remain unclear. Virus-induced gene silencing (VIGS) is a recently developed reverse genetic approach that facilities an easier and more rapid study of gene functions. In this study, the PEAM4 gene was effectively silenced by VIGS using a pea early browning virus (PEBV) in wild type pea JI992. The infected plants showed abnormal phenotypes, as the floral organs, especially the sepals and petals changed in both size and shape, which made the corolla less closed. The petals changed in morphology and internal symmetry with, the stamens reduced and carpel dehisced. Larger sepals and longer tendrils with small cauline leaves appeared, with some sepals turning into bracts, and secondary inflorescences with fused floral organs were formed, indicating a flower-to-inflorescence change. The infected plants also displayed a delayed and prolonged flowering time. The PEAM4-VIGS plants with altered floral morphology were similar to the pim (proliferating inflorescence meristem) mutant and also mimicked the phenotypes of ap1 mutants in Arabidopsis. The expression pattern of the homologous genes PsSOC1a and PsSVP, which were involved in flowering time and florescence morphological control downstream of PEAM4, were analyzed by real-time RT-PCR and mRNA in situ hybridization. PsSOC1a and PsSVP were ectopically expressed and enhanced in the floral meristems from PEAM4-silenced plants. Our data suggests that PEAM4 may have a similar molecular mechanism as AtAP1, which inhibits the expression of PsSOC1a and PsSVP in the floral meristem from the early stages of flower development. As such, in this way PEAM4 plays a crucial role in maintaining floral organ identity and flower development in pea.
豌豆MADS4(PEAM4)调控豌豆(Pisum sativum L.)的花形态,但 其分子机制仍不清楚。病毒诱导的基因沉默(VIGS)是一种最近开发的反向遗传学方法,有助于更轻松、快速地研究基因功能。在本研究中,利用豌豆早褐病毒(PEBV)通过VIGS在野生型豌豆JI992中有效沉默了PEAM4基因。受感染的植株表现出异常表型,花器官尤其是萼片和花瓣在大小和形状上发生变化,使花冠闭合性降低。花瓣在形态和内部对称性上发生变化,雄蕊减少,心皮开裂。出现了更大的萼片和带有小叶的更长卷须,一些萼片变成苞片,并形成了具有融合花器官的二级花序,表明发生了从花到花序的转变。受感染的植株还表现出开花时间延迟和延长。花形态改变的PEAM4-VIGS植株类似于pim(增殖花序分生组织)突变体,也模拟了拟南芥ap1突变体的表型。通过实时RT-PCR和mRNA原位杂交分析了参与PEAM4下游开花时间和花期形态控制的同源基因PsSOC1a和PsSVP的表达模式。PsSOC1a和PsSVP在PEAM4沉默植株的花分生组织中异位表达并增强。我们的数据表明,PEAM4可能具有与AtAP1类似的分子机制,即在花发育早期抑制PsSOC1a和PsSVP在花分生组织中的表达。因此,PEAM4以这种方式在维持豌豆花器官特性和花发育中起关键作用。