Chen S-K, Kurdyukov S, Kereszt A, Wang X-D, Gresshoff P M, Rose R J
School of Environmental and Life Sciences, Australian Research Council Centre of Excellence for Integrative Legume Research, The University of Newcastle, Callaghan, NSW 2308, Australia.
Planta. 2009 Sep;230(4):827-40. doi: 10.1007/s00425-009-0988-1. Epub 2009 Jul 29.
Somatic embryogenesis (SE) is induced in vitro in Medicago truncatula 2HA by auxin and cytokinin but rarely in wild type Jemalong. The putative WUSCHEL (MtWUS), CLAVATA3 (MtCLV3) and the WUSCHEL-related homeobox gene WOX5 (MtWOX5) were investigated in M. truncatula (Mt) and identified by the similarity to Arabidopsis WUS, CLV3 and WOX5 in amino acid sequence, phylogeny and in planta and in vitro expression patterns. MtWUS was induced throughout embryogenic cultures by cytokinin after 24-48 h and maximum expression occurred after 1 week, which coincides with the induction of totipotent stem cells. During this period there was no MtCLV3 expression to suppress MtWUS. MtWUS expression, as illustrated by promoter-GUS studies, subsequently localised to the embryo, and there was then the onset of MtCLV3 expression. This suggests that the expression of the putative MtCLV3 coincides with the WUS-CLAVATA feedback loop becoming operational. RNAi studies showed that MtWUS expression is essential for callus and somatic embryo production. Based on the presence of MtWUS promoter binding sites, MtWUS may be required for the induction of MtSERF1, postulated to have a key role in the signalling required for SE induced in 2HA. MtWOX5 expressed in auxin-induced root primordia and root meristems and appears to be involved in pluripotent stem cell induction. The evidence is discussed that the homeobox genes MtWUS and MtWOX5 are "hijacked" for stem cell induction, which is key to somatic embryo and de novo root induction. In relation to SE, a role for WUS in the signalling involved in induction is discussed.
在蒺藜苜蓿2HA中,生长素和细胞分裂素可诱导体细胞胚胎发生(SE),但在野生型杰马伦中很少发生。在蒺藜苜蓿(Mt)中研究了假定的WUSCHEL(MtWUS)、CLAVATA3(MtCLV3)和WUSCHEL相关同源框基因WOX5(MtWOX5),并通过氨基酸序列、系统发育以及在植物体内和体外的表达模式与拟南芥WUS、CLV3和WOX5的相似性进行了鉴定。24 - 48小时后,细胞分裂素在整个胚性培养物中诱导MtWUS表达,1周后达到最大表达,这与全能干细胞的诱导相吻合。在此期间,没有MtCLV3表达来抑制MtWUS。如启动子-GUS研究所示,MtWUS表达随后定位于胚胎,然后开始MtCLV3表达。这表明假定的MtCLV3的表达与WUS-CLAVATA反馈环开始运作相吻合。RNA干扰研究表明,MtWUS表达对于愈伤组织和体细胞胚的产生至关重要。基于MtWUS启动子结合位点的存在,MtWUS可能是诱导MtSERF1所必需的,推测MtSERF1在2HA中SE诱导所需的信号传导中起关键作用。MtWOX5在生长素诱导的根原基和根分生组织中表达,似乎参与多能干细胞的诱导。本文讨论了同源框基因MtWUS和MtWOX5被“劫持”用于干细胞诱导的证据,这是体细胞胚胎和从头生根诱导的关键。关于SE,还讨论了WUS在诱导相关信号传导中的作用。