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首页> 外文期刊>Plant and Soil >Effects of genetically modified amylopectin-accumulating potato plants on the abundance of beneficial and pathogenic microorganisms in the rhizosphere
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Effects of genetically modified amylopectin-accumulating potato plants on the abundance of beneficial and pathogenic microorganisms in the rhizosphere

机译:转基因支链淀粉积累马铃薯植株对根际有益和致病微生物数量的影响

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In this study, the potential effects of a genetically modified (GM) amylopectin-accumulating potato line (Solanum tuberosum L.) on plant beneficial bacteria and fungi as well as on phytopathogens in the rhizosphere were investigated in a greenhouse experiment and a field trial. For comparison, the non-transgenic parental cultivar of the GM line and a second non-transgenic cultivar were included in the study. Rhizospheres were sampled during young leaf development (EC30) and at florescence (EC60). The microbial community composition was analysed by real-time PCR to quantify the abundances of Pseudomonas spp., Clavibacter michiganensis, Trichoderma spp. and Phytophthora infestans. Additionally, total bacterial and fungal abundances were measured. None of the examined gene abundance patterns were affected by the genetic modification when wild type and GM line were compared. However, significant differences were observed between the two natural potato cultivars, especially during the early leaf development of the plants. Furthermore, gene abundance patterns were also influenced by the plant developmental stage. Interestingly, the impact of the cultivar and the plant vegetation stage on the microbial community structure was more pronounced in field than in greenhouse. Overall, field-grown plants showed a higher abundance of microorganisms in the rhizosphere than plants grown under greenhouse conditions.
机译:在这项研究中,在温室试验和田间试验中研究了转基因(GM)积累支链淀粉的马铃薯品系(Solanum tuberosum L.)对植物有益细菌和真菌以及根际植物致病菌的潜在影响。为了进行比较,该研究包括了转基因品系的非转基因亲本品种和第二个非转基因亲本品种。在幼叶发育期间(EC30)和花期(EC60)采样根际。通过实时PCR分析微生物群落组成,以定量假单胞菌属,密歇根棒状杆菌,木霉属的丰度。和疫霉菌。另外,测量了总细菌和真菌的丰度。比较野生型和GM品系时,所检查的基因丰度模式均不受基因修饰的影响。然而,观察到两种天然马铃薯品种之间存在显着差异,尤其是在植物的早期叶片发育过程中。此外,基因丰度模式也受植物发育阶段的影响。有趣的是,在田间比在温室中,栽培品种和植物生长期对微生物群落结构的影响更为明显。总体而言,田间生长的植物比在温室条件下生长的植物在根际中显示出更高的微生物含量。

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