New cellular T-DNAs in naturally transgenic plants

Q3 Agricultural and Biological Sciences Ecological genetics Pub Date : 2022-12-08 DOI:10.17816/ecogen112352
Pavel Yu. Lipatov, F. D. Bogomaz, Konstantin D. Gosudarev, Sofya A. Kondrashova, Maxim V. Kuchevsky, Nikita L. Malyuga, Egor V. Myagkiy, Marta V. Sergeenkova, Valeria R. Tverdokhlebova, Anna D. Shtina, T. Matveeva, G. Khafizova
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引用次数: 2

Abstract

Naturally transgenic plants represent the result of Agrobacterium-mediated gene transfer. T-DNA of soil bacteria Agrobacterium integrated into plants genome is called cellular T-DNA (cT-DNA) [1]. Today, more than 50 species of naturally transgenic plants, or natural GMO (nGMO) are known [2, 3]. The function of cT-DNA in plants remains unknown. It is assumed that the fixation of transgenes could give plants different selective advantages depending on which genes had been integrated into the plant [4]. In order to clarify this issue, it is necessary to study more naturally transgenic plants. Until recently, the list of nGM plants contained less than 2 dozen species, but a search through genomic and transriptomic sequencing data made it possible to more than double this list [2]. In this work, we used the same approach, looking for cT-DNA genes in whole genome sequencing data that have appeared in the NCBI WGS since 2021. We found 14 new species of naturally transgenic plants, among which the most extended cT-DNAs were found in Triadica sebifera, Lonicera japonica, and Lonicera maackii. The cT-DNAs in these species are organized as imperfect inverted repeats. In the genomes of the species Paulownia fortunei, Apocynum venetum, Elaeagnus angustifolia, Erythroxylum havanense, E. densum, E. daphnites, E. cataractarum, Ceriops decandra, Camellia oleifera, Silene uniflora, short cT-DNAs containing only opine synthesis genes were found. We also estimated the approximate age of the cT-DNAs. The first described examples date back to the Late Paleogene, and the process continues to the present. Thus, we can conclude that natural GMOs are a widespread phenomenon, many aspects of which remain unclear, requiring additional research on the topic. The article was made with support of the Ministry of Science and Higher Education of the Russian Federation in accordance with agreement No. 075-15-2022-322 dated 22.04.2022 on providing a grant in the form of subsidies from the federal budget of the Russian Federation. The grant was provided for state support for the creation and development of a world-class scientific center, Agrotechnologies for the Future.
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天然转基因植物中的新细胞t - dna
自然转基因植物是农杆菌介导的基因转移的结果。土壤细菌农杆菌整合到植物基因组中的T-DNA称为细胞T-DNA (cellular T-DNA, cT-DNA)[1]。目前,已知的天然转基因植物或天然转基因生物(nGMO)有50多种[2,3]。cT-DNA在植物中的功能尚不清楚。据推测,转基因的固定可能会给植物带来不同的选择优势,这取决于哪些基因被整合到植物中[4]。为了澄清这一问题,有必要对更多的天然转基因植物进行研究。直到最近,nGM植物的列表包含不到24个物种,但通过基因组和转录组测序数据的搜索使得这个列表有可能增加一倍以上[2]。在这项工作中,我们使用了相同的方法,在自2021年以来出现在NCBI WGS中的全基因组测序数据中寻找cT-DNA基因。我们发现了14个天然转基因植物新种,其中最长的ct - dna是在Triadica sebifera、Lonicera japonica和Lonicera maackii中发现的。这些物种的ct - dna组织为不完美的反向重复序列。在泡桐、罗布麻、细叶Elaeagnus angustifolia、havanense、E. densum、E. daphnites、E. cataractarum、ceriiops decandra、Camellia oleifera、Silene uniflora等植物的基因组中,发现了仅含opine合成基因的短ct - dna。我们还估计了ct - dna的大致年龄。第一个被描述的例子可以追溯到晚古近纪,这个过程一直持续到现在。因此,我们可以得出结论,天然转基因生物是一种普遍现象,其许多方面仍不清楚,需要对该主题进行进一步的研究。本文是在俄罗斯联邦科学和高等教育部的支持下根据2022年4月22日第07515-2022 -322号关于从俄罗斯联邦联邦预算中以补贴形式提供赠款的协议编写的。这笔赠款是为国家支持建立和发展一个世界级的科学中心——未来农业技术提供的。
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来源期刊
Ecological genetics
Ecological genetics Environmental Science-Ecology
CiteScore
0.90
自引率
0.00%
发文量
22
期刊介绍: The journal Ecological genetics is an international journal which accepts for consideration original manuscripts that reflect the results of field and experimental studies, and fundamental research of broad conceptual and/or comparative context corresponding to the profile of the Journal. Once a year, the editorial Board reviews and, if necessary, corrects the rules for authors and the journal rubrics.
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