Detection of gene clusters for biodegradation of alkanes and aromatic compounds in the Rhodococcus qingshengii VKM Ac-2784D genome.

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY Vavilovskii Zhurnal Genetiki i Selektsii Pub Date : 2023-06-01 DOI:10.18699/VJGB-23-33
Yu A Markova, I S Petrushin, L A Belovezhets
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Abstract

Bacterial species of the genus Rhodococcus are known to be efficient degraders of hydrocarbons in contaminated soil. They are also employed for bioremediation of polluted environments. These bacteria are widely met in soil, water and living organisms. Previously, we have isolated the Rhodococcus qingshengii strain VKM Ac-2784D from the rhizosphere of couch grass growing on oil-contaminated soil. This strain can effectively degrade oil and some model compounds (naphthalene, anthracene and phenanthrene). The results of phylogenetic analysis show that this strain belongs to the species R. qingshengii. To understand the catabolic properties of this strain, we have studied its gene clusters possessing such properties. The alkane destruction genes are represented by two clusters and five separate alkB genes. The destruction of aromatic compounds involves two stages, namely central and peripheral. The R. qingshengii VKM Ac-2784D genome contains four out of eight known central metabolic pathways for the destruction of aromatic compounds. The structure of the gene clusters is similar to that of the known strains R. jostii RHA1 and R. ruber Chol-4. The peripheral pathways include the genes encoding proteins for benzoic acid destruction. The presence of biphenyl 2,3-dioxygeneses as well as gene clusters of benzoate and 2-hydroxypentandienoate pathways suggests that R. qingshengii VKM Ac-2784D could degrade polychlorinated biphenyls. The biodegradation ability can be enhanced by biosurfactants, which are known to be synthesized by Rhodococcus. The R. qingshengii VKM Ac-2784D genome contains the otsA, otsB, treY, treZ genes. The bioinformatics data are supported by the previous biochemical experiments that allow a mixture of species with a wide variation of metabolic pathways to be obtained.

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庆生红球菌VKM Ac-2784D基因组中烷烃和芳香族化合物生物降解基因簇的检测
已知红球菌属细菌是污染土壤中碳氢化合物的有效降解者。它们也被用于污染环境的生物修复。这些细菌广泛存在于土壤、水和生物体内。此前,我们从油渍土壤上生长的长沙草根际分离到青生红球菌VKM Ac-2784D菌株。该菌株能有效降解石油和一些模式化合物(萘、蒽和菲)。系统发育分析结果表明,该菌株属青生鸡属。为了了解该菌株的分解代谢特性,我们研究了其具有这种特性的基因簇。烷烃破坏基因由两个簇和五个独立的alkB基因表示。芳香族化合物的破坏包括两个阶段,即中心阶段和外围阶段。R. qingshenggii VKM Ac-2784D基因组包含8个已知的芳香化合物破坏中心代谢途径中的4个。该基因簇的结构与已知菌株R. jostii RHA1和R. ruber choll -4相似。外周途径包括编码苯甲酸破坏蛋白的基因。联苯2,3-双氧体的存在以及苯甲酸和2-羟基戊二酸途径的基因簇表明,青生鸡VKM Ac-2784D可以降解多氯联苯。生物表面活性剂可以增强其生物降解能力,已知的生物表面活性剂是由红球菌合成的。青生鸡VKM Ac-2784D基因组包含otsA、otsB、treY、treZ基因。生物信息学数据得到了先前生化实验的支持,这些实验允许获得具有广泛代谢途径变化的物种混合物。
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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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