Teixeira Rita Teresa, Fortes Ana Margarida, Pinheiro Carla, Pereira Helena
Centro de Estudos Florestais, Instituto Superior de Agronomia, Universidade Técnica de Lisboa, 1349-017, Portugal
Center for Biodiversity, Functional and Integrative Genomics (BioFIG); Science Faculty, University of Lisbon, Campo Grande, 1749-016 Lisboa, Portugal.
J Exp Bot. 2014 Sep;65(17):4887-905. doi: 10.1093/jxb/eru252. Epub 2014 Jun 22.
Cork is one of the most valuable non-wood forest products and plays an important role in Mediterranean economies. The production of high-quality cork is dependent on both genome and environment, posing constraints on the industry because an ever-growing amount of bad-quality cork (BQC) development has been observed. In order to identify genes responsible for production of cork of superior quality we performed a comparative analysis using the 454 pyrosequencing approach on phellogenic tissue of good- and bad-quality samples. The transcriptional profiling showed a high number of genes differentially expressed (8.48%) from which 78.8% displayed annotation. Genes more highly represented in BQC are involved in DNA synthesis, RNA processing, proteolysis, and transcription factors related to the abiotic stress response. Putative stomatal/lenticular-associated genes which may be responsible for the disadvantageous higher number of lenticular channels in BQC are also more highly represented. BQC also showed an elevated content of free phenolics. On the other hand, good-quality cork (GQC) can be distinguished by highly expressed genes encoding heat-shock proteins. Together the results provide valuable new information about the molecular events leading to cork formation and provide putative biomarkers associated with cork quality that can be useful in breeding programmes.
软木是最有价值的非木质林产品之一,在地中海地区的经济中发挥着重要作用。高品质软木的生产取决于基因组和环境,这给该行业带来了限制,因为已观察到劣质软木(BQC)的产量不断增加。为了鉴定负责生产优质软木的基因,我们使用454焦磷酸测序方法对优质和劣质样品的木栓形成组织进行了比较分析。转录谱显示大量基因差异表达(8.48%),其中78.8%具有注释。在BQC中表达较高的基因参与DNA合成、RNA加工、蛋白水解以及与非生物胁迫反应相关的转录因子。可能导致BQC中透镜状通道数量较多的假定气孔/透镜状相关基因在BQC中的表达也更高。BQC还显示出游离酚类物质含量升高。另一方面,优质软木(GQC)的特征是编码热休克蛋白的基因高度表达。这些结果共同提供了有关导致软木形成的分子事件的有价值的新信息,并提供了与软木质量相关的假定生物标志物,可用于育种计划。