Dean Rider Stanley, Henderson James T, Jerome Ronald E, Edenberg Howard J, Romero-Severson Jeanne, Ogas Joe
Department of Biochemistry, Purdue University, West Lafayette, Indiana, IN 47907-2063, USA.
Plant J. 2003 Jul;35(1):33-43. doi: 10.1046/j.1365-313x.2003.01783.x.
In angiosperms, germination represents an important developmental transition during which embryonic identity is repressed and vegetative identity emerges. PICKLE (PKL) encodes a CHD3-chromatin-remodeling factor necessary for the repression of expression of LEAFY COTYLEDON1 (LEC1), a central regulator of embryogenesis. A candidate gene approach and microarray analysis identified nine additional genes that exhibit PKL-dependent repression of expression during germination. Transcripts for all three LEAFY COTYLEDON genes, LEC1, LEC2, and FUS3, exhibit PKL-dependent repression, and all three transcripts are elevated more than 100-fold in pkl primary roots that inappropriately express embryonic traits (pickle roots). Three other genes that exhibit PKL-dependent regulation have expression patterns correlated with zygotic or somatic embryogenesis, and one gene encodes a putative Lin-11, Isl-1, MEC-3 (LIM) domain transcriptional regulator that is preferentially expressed in siliques. Genes that exhibit PKL-dependent repression during germination are not necessarily regulated by PKL at other points in development. Our data suggest that PKL selectively regulates a suite of genes during germination to repress embryonic identity. In particular, we propose that PKL acts as a master regulator of the LEAFY COTYLEDON genes, and that joint derepression of these genes is likely to contribute substantially to expression of embryonic identity in pkl seedlings.
在被子植物中,萌发代表着一个重要的发育转变过程,在此期间胚胎特性受到抑制,营养特性得以显现。PICKLE(PKL)编码一种CHD3染色质重塑因子,它对于抑制LEAFY COTYLEDON1(LEC1)的表达是必需的,LEC1是胚胎发生的核心调节因子。一种候选基因方法和微阵列分析确定了另外九个基因,这些基因在萌发过程中表现出PKL依赖的表达抑制。所有三个LEAFY COTYLEDON基因(LEC1、LEC2和FUS3)的转录本都表现出PKL依赖的抑制,并且在不适当表达胚胎特征的pkl初生根(pickle根)中,所有这三个转录本的水平都升高了100倍以上。另外三个表现出PKL依赖调节的基因具有与合子或体细胞胚胎发生相关的表达模式,还有一个基因编码一种假定的Lin-11、Isl-1、MEC-3(LIM)结构域转录调节因子,该因子在角果中优先表达。在萌发过程中表现出PKL依赖抑制的基因在发育的其他阶段不一定受PKL调控。我们的数据表明,PKL在萌发过程中选择性地调节一组基因以抑制胚胎特性。特别是,我们提出PKL作为LEAFY COTYLEDON基因的主要调节因子,并且这些基因的联合去抑制可能在很大程度上导致pkl幼苗中胚胎特性的表达。