Department of Forest Environmental Sciences, Faculty of Agriculture, Kyushu University, 6-10-1 Hakozaki, Higashi-ku, Fukuoka 812-8581, Japan.
BMC Genomics. 2014 Mar 20;15:219. doi: 10.1186/1471-2164-15-219.
Forest trees have ecological and economic importance, and Japanese cedar has highly valued wood attributes. Thus, studies of molecular aspects of wood formation offer practical information that may be used for screening and forward genetics approaches to improving wood quality.
After identifying expressed sequence tags in Japanese cedar tissue undergoing xylogenesis, we designed a custom cDNA microarray to compare expression of highly regulated genes throughout a growing season. This led to identification of candidate genes involved both in wood formation and later cessation of growth and dormancy. Based on homology to orthologous protein groups, the genes were assigned to functional classes. A high proportion of sequences fell into functional classes related to posttranscriptional modification and signal transduction, while transcription factors and genes involved in the metabolism of sugars, cell-wall synthesis and lignification, and cold hardiness were among other classes of genes identified as having a potential role in xylem formation and seasonal wood formation.
We obtained 55,051 unique sequences by next-generation sequencing of a cDNA library prepared from cambial meristem and derivative cells. Previous studies on conifers have identified unique sequences expressed in developing xylem, but this is the first comprehensive study utilizing a collection of expressed sequence tags for expression studies related to xylem formation in Japanese cedar, which belongs to a different lineage than the Pinaceae. Our characterization of these sequences should allow comparative studies of genome evolution and functional genetics of wood species.
森林树木具有生态和经济重要性,而日本扁柏具有高价值的木材属性。因此,对木材形成的分子方面的研究提供了实际信息,可用于筛选和正向遗传学方法来改善木材质量。
在鉴定日本扁柏组织在木质部形成过程中表达的序列标签后,我们设计了一个定制的 cDNA 微阵列,以比较整个生长季节中高度调控基因的表达。这导致了鉴定参与木材形成和后期生长和休眠停止的候选基因。根据与同源蛋白组的同源性,这些基因被分配到功能类别。很大一部分序列属于与转录后修饰和信号转导相关的功能类别,而转录因子和参与糖代谢、细胞壁合成和木质化以及抗寒性的基因是其他类别的基因之一,被认为在木质部形成和季节性木材形成中具有潜在作用。
我们通过从形成层和衍生细胞的 cDNA 文库制备的下一代测序获得了 55051 个独特序列。先前对针叶树的研究已经鉴定了在发育中的木质部中表达的独特序列,但这是第一项利用一组与日本扁柏木质部形成相关的表达序列标签进行表达研究的综合研究,日本扁柏属于不同于松科的不同谱系。我们对这些序列的特征描述应该允许对木材物种的基因组进化和功能遗传学进行比较研究。