Zhang Xiaohong, Wang Congcong, Pang Chaoyou, Wei Hengling, Wang Hantao, Song Meizhen, Fan Shuli, Yu Shuxun
State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang, 455000, Henan, People's Republic of China.
PLoS One. 2016 Aug 23;11(8):e0161080. doi: 10.1371/journal.pone.0161080. eCollection 2016.
Upland cotton (Gossypium hirsutum L.) is a naturally occurring photoperiod-sensitive perennial plant species. However, sensitivity to the day length was lost during domestication. The phosphatidylethanolamine-binding protein (PEBP) gene family, of which three subclades have been identified in angiosperms, functions to promote and suppress flowering in photoperiod pathway. Recent evidence indicates that PEBP family genes play an important role in generating mobile flowering signals. We isolated homologues of the PEBP gene family in upland cotton and examined their regulation and function. Nine PEBP-like genes were cloned and phylogenetic analysis indicated the genes belonged to four subclades (FT, MFT, TFL1 and PEBP). Cotton PEBP-like genes showed distinct expression patterns in relation to different cotton genotypes, photoperiod responsive and cultivar maturity. The GhFT gene expression of a semi-wild race of upland cotton were strongly induced under short day condition, whereas the GhPEBP2 gene expression was induced under long days. We also elucidated that GhFT but not GhPEBP2 interacted with FD-like bZIP transcription factor GhFD and promote flowering under both long- and short-day conditions. The present result indicated that GhPEBP-like genes may perform different functions. This work corroborates the involvement of PEBP-like genes in photoperiod response and regulation of flowering time in different cotton genotypes, and contributes to an improved understanding of the function of PEBP-like genes in cotton.
陆地棉(Gossypium hirsutum L.)是一种自然存在的对光周期敏感的多年生植物物种。然而,在驯化过程中对日照长度的敏感性丧失了。磷脂酰乙醇胺结合蛋白(PEBP)基因家族在被子植物中已鉴定出三个亚分支,其功能是在光周期途径中促进和抑制开花。最近的证据表明,PEBP家族基因在产生移动开花信号中起重要作用。我们分离了陆地棉中PEBP基因家族的同源物,并研究了它们的调控和功能。克隆了9个类PEBP基因,系统发育分析表明这些基因属于四个亚分支(FT、MFT、TFL1和PEBP)。棉花类PEBP基因在不同棉花基因型、光周期响应和品种成熟度方面表现出不同的表达模式。陆地棉半野生品种的GhFT基因表达在短日条件下强烈诱导,而GhPEBP2基因表达在长日条件下诱导。我们还阐明,GhFT而非GhPEBP2与FD样bZIP转录因子GhFD相互作用,并在长日和短日条件下促进开花。目前的结果表明,棉花类PEBP基因可能执行不同的功能。这项工作证实了类PEBP基因参与不同棉花基因型的光周期反应和开花时间调控,并有助于更好地理解棉花中类PEBP基因的功能。