Institute of Forest Genetics, Pacific Southwest Experiment Station, United States Department of Agriculture Forest Service, Davis, California 95618, USA.
Plant Physiol. 2011 Mar;155(3):1214-25. doi: 10.1104/pp.110.167007. Epub 2010 Dec 29.
The secondary growth of a woody stem requires the formation of a vascular cambium at an appropriate position and proper patterning of the vascular tissues derived from the cambium. Class III homeodomain-leucine zipper (HD ZIP) transcription factors have been implicated in polarity determination and patterning in lateral organs and primary vascular tissues and in the initiation and function of shoot apical meristems. We report here the functional characterization of a Populus class III HD ZIP gene, popREVOLUTA (PRE), that demonstrates another role for class III HD ZIPs in regulating the development of cambia and secondary vascular tissues. PRE is orthologous to Arabidopsis (Arabidopsis thaliana) REVOLUTA and is expressed in both the shoot apical meristem and in the cambial zone and secondary vascular tissues. Transgenic Populus expressing a microRNA-resistant form of PRE presents unstable phenotypic abnormalities affecting both primary and secondary growth. Surprisingly, phenotypic changes include abnormal formation of cambia within cortical parenchyma that can produce secondary vascular tissues in reverse polarity. Genes misexpressed in PRE mutants include transcription factors and auxin-related genes previously implicated in class III HD ZIP functions during primary growth. Together, these results suggest that PRE plays a fundamental role in the initiation of the cambium and in regulating the patterning of secondary vascular tissues.
木质茎的次生生长需要在适当的位置形成维管形成层,并使形成层衍生的维管组织适当成型。III 类同源异型结构域-亮氨酸拉链(HD ZIP)转录因子已被牵涉到侧生器官和初生维管组织的极性决定和模式形成,以及茎尖分生组织的起始和功能中。我们在这里报告了杨树 III 类 HD ZIP 基因 popREVOLUTA(PRE)的功能特征,该基因证明了 III 类 HD ZIP 在调节形成层和次生维管组织发育中的另一个作用。PRE 与拟南芥(Arabidopsis thaliana)REVOLUTA 同源,并在茎尖分生组织和形成层区以及次生维管组织中表达。表达 miRNA 抗性形式 PRE 的转基因杨树表现出不稳定的表型异常,影响初生和次生生长。令人惊讶的是,表型变化包括皮层薄壁组织内异常形成的形成层,可以产生反转极性的次生维管组织。在 PRE 突变体中异常表达的基因包括转录因子和与生长素相关的基因,这些基因以前被牵涉到初生生长中 III 类 HD ZIP 功能。这些结果表明,PRE 在形成层的起始和调节次生维管组织的模式形成中起着重要作用。