The transcriptomics of secondary growth and wood formation in conifers.

Molecular biology international Pub Date : 2013-01-01 Epub Date: 2013-10-29 DOI:10.1155/2013/974324
Ana Carvalho, Jorge Paiva, José Louzada, José Lima-Brito
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Abstract

In the last years, forestry scientists have adapted genomics and next-generation sequencing (NGS) technologies to the search for candidate genes related to the transcriptomics of secondary growth and wood formation in several tree species. Gymnosperms, in particular, the conifers, are ecologically and economically important, namely, for the production of wood and other forestry end products. Until very recently, no whole genome sequencing of a conifer genome was available. Due to the gradual improvement of the NGS technologies and inherent bioinformatics tools, two draft assemblies of the whole genomes sequence of Picea abies and Picea glauca arose in the current year. These draft genome assemblies will bring new insights about the structure, content, and evolution of the conifer genomes. Furthermore, new directions in the forestry, breeding and research of conifers will be discussed in the following. The identification of genes associated with the xylem transcriptome and the knowledge of their regulatory mechanisms will provide less time-consuming breeding cycles and a high accuracy for the selection of traits related to wood production and quality.

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针叶树二次生长和木材形成的转录组学。
过去几年中,林业科学家利用基因组学和下一代测序(NGS)技术,在多个树种中寻找与次生生长和木材形成的转录组学相关的候选基因。裸子植物,尤其是针叶树,在生态和经济上都具有重要意义,即生产木材和其他林业终端产品。直到最近,还没有针叶树基因组的全基因组测序。由于 NGS 技术和固有生物信息学工具的逐步完善,今年出现了两个杉木(Picea abies)和檍木(Picea glauca)的全基因组序列组装草案。这些基因组组装草案将为针叶树基因组的结构、内容和进化带来新的启示。此外,下文还将讨论针叶树林业、育种和研究的新方向。鉴定与木质部转录组相关的基因并了解其调控机制将缩短育种周期,并为选择与木材产量和质量相关的性状提供更高的准确性。
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