多抗ScALDH21转基因棉花对土壤微生物群落的影响

Qilin Yang, Jiancheng Wang, Dawei Zhang, Hui Feng, Tohir A. Bozorov, Honglan Yang, Daoyuan Zhang
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引用次数: 0

摘要

转基因作物在世界范围内日益流行,评估其对土壤微生物群落的影响是维护环境安全的关键方面。我们之前的研究表明,在棉花中,耐干燥苔藓(Syntrichia caninervis)过表达ScALDH21,显示出对干旱、盐和生物胁迫的多重抗性。我们利用高通量测序技术对ScALDH21转基因棉花进行元条形码鉴定,以评价其对土壤微生物群落的影响。我们进一步通过土壤试验分析转基因和非转基因棉花的化学性质,包括化学元素(K、P、N)的总含量和有效性、有机质和pH值。转基因和非转基因棉田土壤pH值均大于8。转基因棉花的存在显著提高了土壤速效钾和全磷含量。土壤微生物群α和β多样性指数在转基因棉花组和非转基因棉花组间无显著差异。真菌属和细菌属的优势枝在门和属水平上是相等的。微生物群落与土壤环境因子的相关性分析显示,转基因棉花与非转基因棉花基因型间差异不显著。土壤微生物群落功能预测表明,转基因棉花和非转基因棉花的土壤微生物群落功能无显著差异。这些发现对于评价转基因作物的环境效应和支持转基因棉花的安全实施具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of multi-resistant ScALDH21 transgenic cotton on soil microbial communities
Transgenic crops are increasingly prevalent worldwide, and evaluating their impact on soil microbial communities is a critical aspect of upholding environmental safety. Our previous research demonstrated that overexpression of ScALDH21 from desiccant-tolerant moss, Syntrichia caninervis , in cotton revealed multi-resistance to drought, salt, and biotic stresses. We conducted metabarcoding using high-throughput sequencing to evaluate the effect of ScALDH21 transgenic cotton on soil microbial communities. We further conducted soil tests to analyze the chemical properties of transgenic and non-transgenic cotton, including the total content and availability of chemical elements (K, P, and N), organic matter, and pH value. Both transgenic and non-transgenic cotton fields exhibited soil pH values higher than 8. The presence of transgenic cotton significantly enhanced the availability of available K and the total content of total P in the soil. Alpha and beta diversity indices of soil microbiota showed no difference between two transgenic and non-transgenic cotton groups. Dominant clades of fungal and bacterial genera were equivalent at the phylum and genus levels in all three groups. The correlation analysis of microbial communities and soil environmental factors revealed the absence of significant differences between transgenic and non-transgenic cotton genotypes. Functional predictions of soil microbial communities indicated that microbial community function did not show significant differences between transgenic and non-transgenic cotton samples. These findings are essential for evaluating the environmental effects of transgenic crops and supporting the secure implementation of transgenic cotton.
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