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高碳基肥对烟草种植土壤微生物群落结构和组成的影响。

Influence of high-carbon basal fertiliser on the structure and composition of a soil microbial community under tobacco cultivation.

作者信息

Zhang Song-Tao, Song Xiao-Ning, Li Ning, Zhang Ke, Liu Guo-Shun, Li Xue-Dong, Wang Zhi-Zhong, He Xiao-Bing, Wang Guo-Feng, Shao Hui-Fang

机构信息

Henan Agricultural University, College of Tobacco Science, Tobacco Cultivation Key Laboratory of China Tobacco, Zhengzhou 450002, China.

Henan Agricultural University, College of Tobacco Science, Tobacco Cultivation Key Laboratory of China Tobacco, Zhengzhou 450002, China.

出版信息

Res Microbiol. 2018 Feb-Mar;169(2):115-126. doi: 10.1016/j.resmic.2017.10.004. Epub 2017 Nov 7.

Abstract

Soil microorganisms play a crucial role in cycling soil nutrients and providing organic nutrients for plant growth and development. Fertilisation balances soil fertility and quality, and affects soil microbial communities. Fertilisation is a frontier subject in agricultural and environmental sciences. Here we showed that the application of high-carbon basal fertiliser treatment could improve the tobacco yield and quality when compared to chemical fertiliser, high-carbon basal fertiliser and mixed high-carbon chemical fertiliser. The potential reason is that different fertiliser treatments influence soil fertility, such as nitrogen, phosphorus, and other contents, besides soil organic matter. Further experiments revealed that populations of bacteria, fungi and actinomycetes fluctuated during tobacco development under different fertilisation treatments. Then we performed high-throughput sequencing of the 16S rRNA gene, and the results showed that the fertilisation treatments had significant effects on the microbial community, particularly within the finer taxonomic divisions or non-dominant taxa. Moreover, proteobacteria and fungal genera had significantly different relative abundances during tobacco growth under various tobacco developmental stages and fertilisation treatments. These results indicated that mixed high-carbon chemical fertiliser could improve soil fertility by influencing the soil microorganism, and that the fertilisation treatments impacted on the structure and composition of the microbial community, and especially the diversity of non-dominant taxa. However, more studies are needed to confirm their reliability.

摘要

土壤微生物在土壤养分循环以及为植物生长发育提供有机养分方面发挥着关键作用。施肥可平衡土壤肥力和质量,并影响土壤微生物群落。施肥是农业和环境科学领域的一个前沿课题。在此我们表明,与化肥、高碳基肥和高碳化肥混合施用相比,施用高碳基肥处理能够提高烟草产量和品质。潜在原因是不同的施肥处理除了影响土壤有机质外,还会影响土壤肥力,如氮、磷及其他养分含量。进一步的实验表明,在不同施肥处理下,烟草生长发育过程中细菌、真菌和放线菌的数量会发生波动。然后我们对16S rRNA基因进行了高通量测序,结果表明施肥处理对微生物群落有显著影响,尤其是在更精细的分类单元或非优势类群中。此外,在烟草生长的不同阶段和施肥处理下,变形菌门和真菌属的相对丰度存在显著差异。这些结果表明,高碳化肥混合施用可通过影响土壤微生物来提高土壤肥力,施肥处理会影响微生物群落的结构和组成,尤其是非优势类群的多样性。然而,需要更多研究来证实其可靠性。

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