Department of Plant Physiology, Instituto de Investigaciones Agrobiológicas de Galicia (IIAG-CSIC), Apartado 122, 15780 Santiago de Compostela, Spain.
Tree Physiol. 2011 Oct;31(10):1152-60. doi: 10.1093/treephys/tpr086. Epub 2011 Sep 29.
The Castanea sativa SCL1 gene (CsSCL1) has previously been shown to be induced by auxin during adventitious root (AR) formation in rooting-competent microshoots. However, its expression has not previously been analyzed in rooting-incompetent shoots. This study focuses on the regulation of CsSCL1 during maturation and the role of the gene in the formation of AR. The expression of CsSCL1 in rooting-incompetent microshoots and other tissues was investigated by quantitative reverse transcriptase--polymerase chain reaction. The analysis was complemented by in situ hybridization of the basal segments of rooting-competent and --incompetent microshoots during AR induction, as well as in AR and lateral roots. It was found that CsSCL1 is upregulated by auxin in a cell-type- and phase-dependent manner during the induction of AR. In root-forming shoots, CsSCL1 mRNA was specifically located in the cambial zone and derivative cells, which are rooting-competent cells, whereas in rooting-incompetent shoots the hybridization signal was more diffuse and evenly distributed through the phloem and parenchyma. CsSCL1 expression was also detected in lateral roots and axillary buds. The different CsSCL1 expression patterns in rooting-competent and -incompetent microshoots, together with the specific location of transcripts in cell types involved in root meristem initiation and in the root primordia of AR and lateral roots, indicate an important role for the gene in determining whether certain cells will enter the root differentiation pathway and its involvement in meristem maintenance.
栗 SCL1 基因(CsSCL1)先前已被证明在生根能力的微枝不定根(AR)形成过程中受生长素诱导。然而,其表达尚未在生根能力差的枝条中进行分析。本研究主要关注 CsSCL1 在成熟过程中的调控及其在 AR 形成中的作用。通过定量逆转录聚合酶链反应研究了 CsSCL1 在生根能力差的微枝和其他组织中的表达。通过对生根能力和 -差的微枝的基部进行原位杂交分析,以及对 AR 和侧根进行原位杂交,补充了分析。结果发现,CsSCL1 在 AR 诱导过程中,在细胞类型和阶段依赖性的方式中被生长素上调。在形成根的枝条中,CsSCL1 mRNA 特异性定位于形成层区和衍生细胞,即生根能力细胞,而在生根能力差的枝条中,杂交信号更加弥散且均匀分布在韧皮部和薄壁组织中。CsSCL1 表达也在侧根和腋芽中检测到。在生根能力和 -差的微枝中 CsSCL1 表达模式的不同,以及转录本在参与根分生组织起始的细胞类型中的特定位置,以及在 AR 和侧根的根原基中的特定位置,表明该基因在决定某些细胞是否进入根分化途径及其在分生组织维持中的参与方面起着重要作用。