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家蚕中的UDP-葡萄糖基转移酶多基因家族。

The UDP-glucosyltransferase multigene family in Bombyx mori.

作者信息

Huang Fei-Fei, Chai Chun-Li, Zhang Ze, Liu Zeng-Hu, Dai Fang-Yin, Lu Cheng, Xiang Zhong-Huai

机构信息

The Key Sericultural Laboratory of Agricultural Ministry, Institute of Sericulture and Systems Biology, Southwest University, Chongqing 400715, PR China.

出版信息

BMC Genomics. 2008 Nov 27;9:563. doi: 10.1186/1471-2164-9-563.

Abstract

BACKGROUND

Glucosidation plays a major role in the inactivation and excretion of a great variety of both endogenous and exogenous compounds. A class of UDP-glycosyltransferases (UGTs) is involved in this process. Insect UGTs play important roles in several processes, including detoxication of substrates such as plant allelochemicals, cuticle formation, pigmentation, and olfaction. Identification and characterization of Bombyx mori UGT genes could provide valuable basic information for this important family and explain the detoxication mechanism and other processes in insects.

RESULTS

Taking advantage of the newly assembled genome sequence, we performed a genome-wide analysis of the candidate UGT family in the silkworm, B. mori. Based on UGT signature and their similarity to UGT homologs from other organisms, we identified 42 putative silkworm UGT genes. Most of them are clustered on the silkworm chromosomes, with two major clusters on chromosomes 7 and 28, respectively. The phylogenetic analysis of these identified 42 UGT protein sequences revealed five major groups. A comparison of the silkworm UGTs with homologs from other sequenced insect genomes indicated that some UGTs are silkworm-specific genes. The expression patterns of these candidate genes were investigated with known expressed sequence tags (ESTs), microarray data, and RT-PCR method. In total, 36 genes were expressed in tissues examined and showed different patterns of expression profile, indicating that these UGT genes might have different functions.

CONCLUSION

B. mori possesses a largest insect UGT gene family characterized to date, including 42 genes. Phylogenetic analysis, genomic organization and expression profiles provide an overview for the silkworm UGTs and facilitate their functional studies in future.

摘要

背景

糖基化在多种内源性和外源性化合物的失活和排泄过程中起主要作用。一类尿苷二磷酸糖基转移酶(UGTs)参与了这一过程。昆虫UGTs在多个过程中发挥重要作用,包括对植物化感物质等底物的解毒、表皮形成、色素沉着和嗅觉。家蚕UGT基因的鉴定和特征分析可为这个重要的基因家族提供有价值的基础信息,并解释昆虫的解毒机制和其他过程。

结果

利用新组装的基因组序列,我们对家蚕(B. mori)中候选UGT家族进行了全基因组分析。基于UGT特征及其与其他生物中UGT同源物的相似性,我们鉴定出42个推定的家蚕UGT基因。它们中的大多数聚集在家蚕染色体上,分别在7号和28号染色体上形成两个主要的簇。对这42个鉴定出的UGT蛋白序列进行系统发育分析,揭示了五个主要的组。将家蚕UGTs与其他已测序昆虫基因组中的同源物进行比较,表明一些UGTs是家蚕特有的基因。利用已知的表达序列标签(ESTs)、微阵列数据和RT-PCR方法研究了这些候选基因的表达模式。总共36个基因在所检测的组织中表达,并表现出不同的表达谱模式,表明这些UGT基因可能具有不同的功能。

结论

家蚕拥有迄今为止所鉴定的最大的昆虫UGT基因家族,包括42个基因。系统发育分析、基因组组织和表达谱为家蚕UGTs提供了一个概述,并有助于未来对其功能的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4026/2633020/bf88485aa8eb/1471-2164-9-563-1.jpg

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