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共生菌与宿主基因在土白蚁肠道中的平行转录组分析。

Parallel metatranscriptome analyses of host and symbiont gene expression in the gut of the termite Reticulitermes flavipes.

机构信息

Department of Entomology and Nematology, University of Florida, Gainesville, FL, USA.

出版信息

Biotechnol Biofuels. 2009 Oct 15;2:25. doi: 10.1186/1754-6834-2-25.

Abstract

BACKGROUND

Termite lignocellulose digestion is achieved through a collaboration of host plus prokaryotic and eukaryotic symbionts. In the present work, we took a combined host and symbiont metatranscriptomic approach for investigating the digestive contributions of host and symbiont in the lower termite Reticulitermes flavipes. Our approach consisted of parallel high-throughput sequencing from (i) a host gut cDNA library and (ii) a hindgut symbiont cDNA library. Subsequently, we undertook functional analyses of newly identified phenoloxidases with potential importance as pretreatment enzymes in industrial lignocellulose processing.

RESULTS

Over 10,000 expressed sequence tags (ESTs) were sequenced from the 2 libraries that aligned into 6,555 putative transcripts, including 171 putative lignocellulase genes. Sequence analyses provided insights in two areas. First, a non-overlapping complement of host and symbiont (prokaryotic plus protist) glycohydrolase gene families known to participate in cellulose, hemicellulose, alpha carbohydrate, and chitin degradation were identified. Of these, cellulases are contributed by host plus symbiont genomes, whereas hemicellulases are contributed exclusively by symbiont genomes. Second, a diverse complement of previously unknown genes that encode proteins with homology to lignase, antioxidant, and detoxification enzymes were identified exclusively from the host library (laccase, catalase, peroxidase, superoxide dismutase, carboxylesterase, cytochrome P450). Subsequently, functional analyses of phenoloxidase activity provided results that were strongly consistent with patterns of laccase gene expression. In particular, phenoloxidase activity and laccase gene expression are mostly restricted to symbiont-free foregut plus salivary gland tissues, and phenoloxidase activity is inducible by lignin feeding.

CONCLUSION

To our knowledge, this is the first time that a dual host-symbiont transcriptome sequencing effort has been conducted in a single termite species. This sequence database represents an important new genomic resource for use in further studies of collaborative host-symbiont termite digestion, as well as development of coevolved host and symbiont-derived biocatalysts for use in industrial biomass-to-bioethanol applications. Additionally, this study demonstrates that: (i) phenoloxidase activities are prominent in the R. flavipes gut and are not symbiont derived, (ii) expands the known number of host and symbiont glycosyl hydrolase families in Reticulitermes, and (iii) supports previous models of lignin degradation and host-symbiont collaboration in cellulose/hemicellulose digestion in the termite gut. All sequences in this paper are available publicly with the accession numbers FL634956-FL640828 (Termite Gut library) and FL641015-FL645753 (Symbiont library).

摘要

背景

白蚁木质纤维素的消化是通过宿主与原核生物和真核生物共生体的合作实现的。在本研究中,我们采用了宿主和共生体混合的宏转录组学方法,研究了低等白蚁红火蚁中宿主和共生体在消化过程中的贡献。我们的方法包括从(i)宿主肠道 cDNA 文库和(ii)后肠共生体 cDNA 文库中进行平行高通量测序。随后,我们对新鉴定的酚氧化酶进行了功能分析,这些酶在工业木质纤维素处理中可能作为预处理酶具有重要作用。

结果

从这两个文库中测序了超过 10000 个表达序列标签(EST),并将其拼接成 6555 个可能的转录本,包括 171 个可能的木质纤维素酶基因。序列分析提供了两个方面的见解。首先,鉴定了一组不重叠的宿主和共生体(原核生物加原生动物)糖水解酶基因家族,这些基因家族已知参与纤维素、半纤维素、α 碳水化合物和几丁质的降解。其中,纤维素酶由宿主和共生体基因组共同贡献,而半纤维素酶则仅由共生体基因组贡献。其次,从宿主文库中鉴定了一组多样化的、以前未知的基因,这些基因编码具有木质素酶、抗氧化剂和解毒酶同源性的蛋白质(漆酶、过氧化氢酶、过氧化物酶、超氧化物歧化酶、羧酸酯酶、细胞色素 P450)。随后,酚氧化酶活性的功能分析结果与漆酶基因表达模式非常一致。特别是,酚氧化酶活性和漆酶基因表达主要局限于共生体游离的前肠加唾液腺组织中,并且酚氧化酶活性可被木质素诱导。

结论

据我们所知,这是首次在单个白蚁物种中进行宿主-共生体双重转录组测序工作。该序列数据库是进一步研究协作性宿主-共生体白蚁消化以及开发用于工业生物量-生物乙醇应用的共进化宿主和共生体衍生生物催化剂的重要新基因组资源。此外,本研究表明:(i)酚氧化酶活性在红火蚁肠道中很明显,并且不是共生体衍生的;(ii)扩展了红火蚁中宿主和共生体糖基水解酶家族的已知数量;(iii)支持了先前关于木质素降解和纤维素/半纤维素消化中宿主-共生体合作的模型。本文中的所有序列都可公开获得,其登录号为 FL634956-FL640828(白蚁肠道文库)和 FL641015-FL645753(共生体文库)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c627/2768689/64b719b19332/1754-6834-2-25-1.jpg

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