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生物有机肥替代化肥对叶用芥菜根际土壤微生物结构及产量的影响。

Changes in the Microbial Structure of the Root Soil and the Yield of Chinese Baby Cabbage by Chemical Fertilizer Reduction with Bio-Organic Fertilizer Application.

机构信息

College of Horticulture, Gansu Agricultural Universitygrid.411734.4, Lanzhou, Gansu Province, China.

Key Laboratory of Crop Science in arid environment of Gansu Province, Lanzhou, Gansu Province, China.

出版信息

Microbiol Spectr. 2022 Dec 21;10(6):e0121522. doi: 10.1128/spectrum.01215-22. Epub 2022 Nov 15.

Abstract

Using high-throughput sequencing, this study aimed to explore the response of soil microbial community and Chinese baby cabbage yield to the reduction of chemical fertilizers combined with bio-organic fertilizer. Our experiments consisted of conventional fertilizer (CK), 30% chemical fertilizer reduction + 6,000 kg/ha bio-organic fertilizer (T1), 30% chemical fertilizer reduction + 9,000 kg/ha bio-organic fertilizer (T2), 40% chemical fertilizer reduction + 6,000 kg/ha bio-organic fertilizer (T3), and 40% chemical fertilizer reduction + 9,000 kg/ha bio-organic fertilizer (T4). Compared with CK, soil microbial diversity and richness were higher for all treatments with added bio-organic fertilizer. Principle coordinate analysis (PCoA) showed that the bacterial and fungal communities in T2 and T4 were similar to each other. Redundancy and Spearman's correlation analyses of microbial communities and soil physicochemical properties revealed that reductions in chemical fertilizer rate combined with bio-organic fertilizer had a stronger impact on the fungal than the bacterial community. They also increased the relative abundance of the dominant bacterial and fungal phyla. Chinese baby cabbage yield was relatively higher under the combined bio-organic fertilizer plus reduced chemical fertilizer rate with T2 showing the highest yield. Therefore, this approach is feasible for sustainable agricultural, cost-effective and profitable crop production. Chemical fertilizers are commonly used for agriculture, though bio-organic fertilizers may be more efficient. We found that a mixture of bio-organic and moderately reduced chemical fertilizer was more effective than chemical fertilizer alone, as it raised the Chinese baby cabbage yield. Further, the presence of bio-organic fertilizer enhanced overall soil physicochemistry, as well as improved the beneficial bacterial and fungal abundance and diversity. Thus, we found that fertilizer combination sustainably & cost-effectively improves crop & soil quality.

摘要

采用高通量测序技术,本研究旨在探讨减少化肥用量与生物有机肥相结合对土壤微生物群落和小白菜产量的响应。实验设置了常规施肥(CK)、30%化肥减量+6000kg/公顷生物有机肥(T1)、30%化肥减量+9000kg/公顷生物有机肥(T2)、40%化肥减量+6000kg/公顷生物有机肥(T3)和 40%化肥减量+9000kg/公顷生物有机肥(T4)。与 CK 相比,添加生物有机肥的所有处理均提高了土壤微生物的多样性和丰富度。主坐标分析(PCoA)表明,T2 和 T4 中的细菌和真菌群落彼此相似。冗余分析和微生物群落与土壤理化性质的 Spearman 相关性分析表明,化肥用量减少与生物有机肥结合对真菌群落的影响强于细菌群落。它们还增加了优势细菌和真菌门的相对丰度。在生物有机肥与减少化肥用量相结合的情况下,小白菜产量相对较高,其中 T2 的产量最高。因此,这种方法在农业可持续性、成本效益和盈利性作物生产方面是可行的。化肥在农业中广泛使用,但生物有机肥可能更有效。我们发现,生物有机肥与适量减少化肥的混合物比单独使用化肥更有效,因为它提高了小白菜的产量。此外,生物有机肥的存在增强了整体土壤理化性质,并提高了有益细菌和真菌的丰度和多样性。因此,我们发现肥料组合可以可持续且经济有效地提高作物和土壤质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86d7/9784769/c2186231bcd7/spectrum.01215-22-f001.jpg

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