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细菌和真菌几丁质酶chiJ直系同源基因在水平基因转移后,在不同的选择限制下进化。

Bacterial and fungal chitinase chiJ orthologs evolve under different selective constraints following horizontal gene transfer.

作者信息

Ubhayasekera Wimal, Karlsson Magnus

机构信息

Department of Medical Biochemistry and Microbiology ( IMBIM), Biomedical Center, Uppsala, Uppsala, Sweden.

出版信息

BMC Res Notes. 2012 Oct 24;5:581. doi: 10.1186/1756-0500-5-581.

Abstract

BACKGROUND

Certain bacteria from the genus Streptomyces are currently used as biological control agents against plant pathogenic fungi. Hydrolytic enzymes that degrade fungal cell wall components, such as chitinases, are suggested as one possible mechanism in biocontrol interactions. Adaptive evolution of chitinases are previously reported for plant chitinases involved in defence against fungal pathogens, and in fungal chitinases involved in fungal-fungal interactions. In this study we investigated the molecular evolution of chitinase chiJ in the bacterial genus Streptomyces. In addition, as chiJ orthologs are previously reported in certain fungal species as a result from horizontal gene transfer, we conducted a comparative study of differences in evolutionary patterns between bacterial and fungal taxa.

FINDINGS

ChiJ contained three sites evolving under strong positive selection and four groups of co-evolving sites. Regions of high amino acid diversity were predicted to be surface-exposed and associated with coil regions that connect certain α-helices and β-strands in the family 18 chitinase TIM barrel structure, but not associated with the catalytic cleft. The comparative study with fungal ChiJ orthologs identified three regions that display signs of type 1 functional divergence, where unique adaptations in the bacterial and fungal taxa are driven by positive selection.

CONCLUSIONS

The identified surface-exposed regions of chitinase ChiJ where sequence diversification is driven by positive selection may putatively be related to functional divergence between bacterial and fungal orthologs. These results show that ChiJ orthologs have evolved under different selective constraints following the horizontal gene transfer event.

摘要

背景

目前,某些链霉菌属细菌被用作对抗植物病原真菌的生物防治剂。降解真菌细胞壁成分的水解酶,如几丁质酶,被认为是生物防治相互作用中的一种可能机制。此前有报道称,参与防御真菌病原体的植物几丁质酶以及参与真菌 - 真菌相互作用的真菌几丁质酶发生了适应性进化。在本研究中,我们调查了链霉菌属细菌中几丁质酶chiJ的分子进化。此外,由于之前报道某些真菌物种中的chiJ直系同源基因是水平基因转移的结果,我们对细菌和真菌类群之间进化模式的差异进行了比较研究。

研究结果

ChiJ包含三个在强正选择下进化的位点和四组共同进化的位点。预测高氨基酸多样性区域位于表面暴露区域,并与连接18家族几丁质酶TIM桶状结构中某些α螺旋和β链的卷曲区域相关,但与催化裂隙无关。与真菌ChiJ直系同源基因的比较研究确定了三个显示1型功能分化迹象的区域,其中细菌和真菌类群中的独特适应性是由正选择驱动的。

结论

已鉴定出几丁质酶ChiJ的表面暴露区域,其中序列多样化由正选择驱动,可能与细菌和真菌直系同源基因之间的功能分化有关。这些结果表明,ChiJ直系同源基因在水平基因转移事件后在不同的选择限制下进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6a0/3506478/6fa03b88b765/1756-0500-5-581-1.jpg

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