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Impact of Transgenic Brassica napus Harboring the Antifungal Synthetic Chitinase (NiC) Gene on Rhizosphere Microbial Diversity and Enzyme Activities

机译:带有抗真菌合成几丁质酶(NiC)基因的转基因甘蓝型油菜对根际微生物多样性和酶活性的影响

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摘要

Transgenic Brassica napus harboring the synthetic chitinase (NiC) gene exhibits broad-spectrum antifungal resistance. As the rhizosphere microorganisms play an important role in element cycling and nutrient transformation, therefore, biosafety assessment of NiC containing transgenic plants on soil ecosystem is a regulatory requirement. The current study is designed to evaluate the impact of NiC gene on the rhizosphere enzyme activities and microbial community structure. The transgenic lines with the synthetic chitinase gene (NiC) showed resistance to Alternaria brassicicola, a common disease causing fungal pathogen. The rhizosphere enzyme analysis showed no significant difference in the activities of fivesoil enzymes: alkalyine phosphomonoestarase, arylsulphatase, β-glucosidase, urease and sucrase between the transgenic and non-transgenic lines of B. napus varieties, Durr-e-NIFA (DN) and Abasyne-95 (AB-95). However, varietal differences were observed based on the analysis of molecular variance. Some individual enzymes were significantly different in the transgenic lines from those of non-transgenic but the results were not reproducible in the second trail and thus were considered as environmental effect. Genotypic diversity of soil microbes through 16S–23S rRNA intergenic spacer region amplification was conducted to evaluate the potential impact of the transgene. No significant diversity (4% for bacteria and 12% for fungal) between soil microbes of NiC B. napus and the non-transgenic lines was found. However, significant varietal differences were observed between DN and AB-95 with 79% for bacterial and 54% for fungal diversity. We conclude that the NiC B. napus lines may not affect the microbial enzyme activities and community structure of the rhizosphere soil. Varietal differences might be responsible for minor changes in the tested parameters.
机译:带有合成几丁质酶(NiC)基因的转基因甘蓝型油菜表现出广谱抗真菌抗性。由于根际微生物在元素循环和养分转化中起着重要作用,因此,对含NiC的转基因植物对土壤生态系统的生物安全性评估是一项监管要求。本研究旨在评估NiC基因对根际酶活性和微生物群落结构的影响。具有合成几丁质酶基因(NiC)的转基因品系显示出对交链孢霉的抵抗力,这是一种常见的真菌病原体。根际酶分析表明,五种土壤酶的活性没有明显差异:碱性磷酸单酯酶,芳基硫酸酯酶,β-葡萄糖苷酶,脲酶和蔗糖酶在甘蓝型油菜,Durr-e-NIFA和Abasyne-95(AB-95)。但是,基于分子差异的分析观察到了差异。转基因品系中的某些个体酶与非转基因品系中的酶明显不同,但结果在第二步中不可重现,因此被视为环境效应。通过16S–23S rRNA基因间隔区扩增获得土壤微生物的基因型多样性,以评估转基因的潜在影响。在NiC B. napus和非转基因品系的土壤微生物之间未发现明显的多样性(细菌为4%,真菌为12%)。然而,在DN和AB-95之间观察到显着的品种差异,细菌为79%,真菌多样性为54%。我们得出结论,NiC B. napus品系可能不会影响根际土壤的微生物酶活性和群落结构。品种差异可能是导致测试参数发生细微变化的原因。

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