Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Sveriges Lantbruksuniversitet, SE-901 83 Umeå, Sweden
Umeå Plant Science Centre, Department of Plant Physiology, Umeå University, SE-901 87 Umeå, Sweden.
Plant Physiol. 2018 Apr;176(4):2851-2870. doi: 10.1104/pp.17.01590. Epub 2018 Feb 27.
Seasonal cues influence several aspects of the secondary growth of tree stems, including cambial activity, wood chemistry, and transition to latewood formation. We investigated seasonal changes in cambial activity, secondary cell wall formation, and tracheid cell death in woody tissues of Norway spruce () throughout one seasonal cycle. RNA sequencing was performed simultaneously in both the xylem and cambium/phloem tissues of the stem. Principal component analysis revealed gradual shifts in the transcriptomes that followed a chronological order throughout the season. A notable remodeling of the transcriptome was observed in the winter, with many genes having maximal expression during the coldest months of the year. A highly coexpressed set of monolignol biosynthesis genes showed high expression during the period of secondary cell wall formation as well as a second peak in midwinter. This midwinter peak in expression did not trigger lignin deposition, as determined by pyrolysis-gas chromatography/mass spectrometry. Coexpression consensus network analyses suggested the involvement of transcription factors belonging to the ASYMMETRIC LEAVES2/LATERAL ORGAN BOUNDARIES and MYELOBLASTOSIS-HOMEOBOX families in the seasonal control of secondary cell wall formation of tracheids. Interestingly, the lifetime of the latewood tracheids stretched beyond the winter dormancy period, correlating with a lack of cell death-related gene expression. Our transcriptomic analyses combined with phylogenetic and microscopic analyses also identified the cellulose and lignin biosynthetic genes and putative regulators for latewood formation and tracheid cell death in Norway spruce, providing a toolbox for further physiological and functional assays of these important phase transitions.
季节线索影响树木茎次生生长的几个方面,包括形成层活动、木材化学性质和向晚材形成的转变。我们研究了挪威云杉()木质组织中形成层活动、次生细胞壁形成和管胞细胞死亡的季节性变化,整个季节进行了一个周期的研究。同时对茎的木质部和形成层/韧皮部组织进行 RNA 测序。主成分分析显示,转录组随着季节的推移逐渐发生变化,呈现出一种时间顺序。在冬季观察到转录组的显著重塑,许多基因在一年中最寒冷的月份表达达到最大值。一组高度共表达的木质素生物合成基因在次生细胞壁形成期间以及仲冬表现出高表达,并有第二个高峰。通过热解气相色谱/质谱法确定,这个仲冬表达高峰并没有触发木质素沉积。共表达共识网络分析表明,参与木质素生物合成的转录因子可能属于 ASYMMETRIC LEAVES2/LATERAL ORGAN BOUNDARIES 和 MYELOBLASTOSIS-HOMEOBOX 家族,它们在控制管胞次生细胞壁形成的季节性方面发挥作用。有趣的是,晚材管胞的寿命超过了冬季休眠期,这与缺乏与细胞死亡相关的基因表达有关。我们的转录组分析结合系统发育和显微镜分析,还确定了挪威云杉晚材形成和管胞细胞死亡的纤维素和木质素生物合成基因和潜在调控因子,为这些重要的相变的进一步生理和功能分析提供了一个工具包。