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Differences in the rhizosphere bacterial community of a transplastomic tobacco plant compared to its non-engineered counterpart

机译:与非工程烟草相比,转基因烟草植物根际细菌群落的差异

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Cultivation-independent analyses were carried out to compare the bacterial community structure found in the rhizospheres of a transplastomic tobacco plant carrying the antibiotic resistance marker-gene aadA and its non-engineered parental line. PCR- and reverse transcriptase PCR- amplifications of 16S rRNA and their corresponding genes were carried out with primers targeting the domain Bacteria. The diversity of PCR-products amplified from total nucleic acids extracted from rhizospheres of 10-week-old plants, which had been grown in potting soil in the greenhouse, was visualized by genetic profiling using the single-strand conformation polymorphism (SSCP) technique. The SSCP profiles generated from DNA extracted with two different protocols, one including total RNA and the other only DNA, did not show any differences. The SSCP profiles amplified from RNA and DNA were also highly similar to each other, indicating that the dominant bacteria detected were metabolically active. High similarities were seen between the SSCP profiles from the transplastomic and the non-engineered plants, except for a single band that consistently occurred with samples from the non- engineered plants (six replicates), but not, or only weakly, with their engineered counterparts. DNA sequencing and database analysis revealed that the partial rRNA gene matched to a Flavobacterium sp. Other bands of the SSCP-profiles, related to Burkholderia and Bordetella were variable between individual plants but not affected by the transplastomic modification. Thus, the transplastomic modification caused a relative decline of a specific Flavobacterium population but not of other bacteria. Further studies including additional tobacco cultivars, soils and conditions of cultivation would be desirable, to elucidate the ecological importance of this difference.
机译:进行了不依赖栽培的分析,以比较在带有抗生素抗性标记基因aadA及其非工程亲本系的转基因烟草植物的根际中发现的细菌群落结构。用靶向细菌结构域的引物进行16S rRNA及其相应基因的PCR和逆转录酶PCR扩增。通过使用单链构象多态性(SSCP)技术进行基因谱分析,可以观察到从生长在温室盆栽土壤中的10周龄植物根际中提取的总核酸扩增的PCR产物的多样性。用两种不同方案提取的DNA生成的SSCP谱图没有显示出任何差异,一种方案包括总RNA,另一种仅包括DNA。从RNA和DNA扩增得到的SSCP图谱也高度相似,表明检测到的优势细菌具有代谢活性。在转基因组植物和非工程植物的SSCP谱图之间发现高度相似性,除了与非工程植物的样品一致出现的单个条带(六个重复),与工程化的对应物不是或仅是微弱的。 DNA测序和数据库分析表明,部分rRNA基因与Flavobacterium sp。匹配。与伯克霍尔德氏菌和博德特氏菌有关的其他SSCP谱带在各个植物之间是可变的,但不受转基因组修饰的影响。因此,转质体修饰引起特定黄杆菌属种群的相对减少,但没有引起其他细菌的相对减少。为了阐明这种差异的生态重要性,需要进一步的研究,包括增加烟草品种,土壤和栽培条件。

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