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首页> 外文期刊>Tree Genetics & Genomes >An annotated transcriptome of highly inbred Thuja plicata (Cupressaceae) and its utility for gene discovery of terpenoid biosynthesis and conifer defense
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An annotated transcriptome of highly inbred Thuja plicata (Cupressaceae) and its utility for gene discovery of terpenoid biosynthesis and conifer defense

机译:一种高度近交的金钟柏(Cuhuceae)的注释转录组及其在萜类生物合成和针叶树防御中的基因发现中的应用

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Western redcedar ( Thuja plicata ; Cupressaceae; WRC) is an ecologically and economically important conifer species of the Pacific Northwest. Regeneration of WRC forests is affected by ungulate browsing, which removes current growth and hampers development of young trees. Monoterpenes make WRC foliage less palatable and can deter browsing. Genomic resources are required to advance knowledge of terpene accumulation and breeding of WRC for herbivore resistance. Unlike most conifers, WRC readily selfs to produce genotypes of reduced heterozygosity. We used seedlings of eight different fifth-generation selfed lines for monoterpene analysis and transcriptome sequencing. Trinity, Velvet/Oases, TransABySS, and SOAPdenovoTrans were used to generate independent transcriptome assemblies for each line. Sequence redundancy was reduced using the EvidentialGene pipeline. The best assembly, as determined by metrics of completeness, contiguity, and accuracy, was used to produce a WRC reference gene set of 28,279 sequences, of which 77% were annotated with significant BLASTp hits and 89% with significant InterProScan hits. An orthology-based approach was used to annotate gene families. Manually curated annotation identified 33 putative full-length terpene synthases (TPS). A maximum likelihood phylogeny revealed that WRC TPS cluster apart from those of Pinaceae within the gymnosperm TPS-d clade. Use of selfed lines enabled the development and annotation of a reduced-redundancy gene set for a gymnosperm of the Cupressaceae family. This gene set serves as a foundation for future functional characterization of WRC TPS and other defense genes and as a resource for the annotation of protein coding sequences in the WRC genome.
机译:西部红柏(Thuja plicata;柏科; WRC)是西北太平洋地区具有重要生态和经济意义的针叶树种。有蹄类动物浏览影响了WRC森林的更新,这消除了当前的生长并阻碍了幼树的生长。单萜使WRC叶子的可口性降低,并可能阻止浏览。需要基因组资源来提高萜烯积累和WRC食草动物抗性育种的知识。与大多数针叶树不同,WRC很容易自我产生杂合度降低的基因型。我们将八种不同的第五代自交系的幼苗用于单萜分析和转录组测序。 Trinity,Velvet / Oases,TransABySS和SOAPdenovoTrans用于为每行生成独立的转录组程序集。使用EvidentialGene管道减少了序列冗余。通过完整性,连续性和准确性的度量确定的最佳组装用于产生28,279个序列的WRC参考基因集,其中77%带有显着BLASTp命中注释,89%带有显着InterProScan命中注释。基于正畸的方法用于注释基因家族。手动策划的注释确定了33种假定的全长萜烯合酶(TPS)。最大似然系统发育表明,WRC TPS在裸子植物TPS-d进化枝中与松科的簇分开。自交系的使用能够为葫芦科的裸子植物开发和标注减少冗余的基因集。该基因集为WRC TPS和其他防御基因的未来功能表征奠定了基础,并为WRC基因组中蛋白质编码序列的注释提供了资源。

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