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自由生活的细菌在不同施肥条件下刺激甘蔗生长特性和土壤深度梯度上的土壤因子。

Free-living bacteria stimulate sugarcane growth traits and edaphic factors along soil depth gradients under contrasting fertilization.

机构信息

Key Laboratory of Sugarcane Biology and Genetic Breeding, Ministry of Agriculture, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

Fujian Provincial Key Laboratory of Agro-Ecological Processing and Safety Monitoring, College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

出版信息

Sci Rep. 2023 Apr 18;13(1):6288. doi: 10.1038/s41598-022-25807-w.

Abstract

Free-living bacterial community and abundance have been investigated extensively under different soil management practices. However, little is known about their nitrogen (N) fixation abilities, and how their contributions to N budgets impact plant growth, yield, and carbon (C) and N cycling enzymes in a long-term consecutive sugarcane monoculture farming system, under contrasting amendments, along different soil horizons. Here, nifH gene amplicon was used to investigate diazotrophs bacterial community and abundance by leveraging high-throughput sequencing (HTS). Moreover, edaphic factors in three soil depths (0-20, 20-40, and 40-60 cm) under control (CK), organic matter (OM), biochar (BC), and filter mud (FM) amended soils were investigated. Our analysis revealed that β-glucosidase activity, acid phosphatase activity, ammonium (NH-N), nitrate (NON), total carbon (TC), total nitrogen (TN), and available potassium (AK) were considerably high in 0-20 cm in all the treatments. We also detected a significantly high proportion of Proteobacteria and Geobacter in the entire sample, including Anabaena and Enterobacter in 0-20 cm soil depth under the BC and FM amended soils, which we believed were worthy of promoting edaphic factors and sugarcane traits. This phenomenon was further reinforced by network analysis, where diazotrophs bacteria belonging to Proteobacteria exhibited strong and positive associations soil electrical conductivity (EC), soil organic matter content (SOM) available phosphorus (AP), TN, followed by NH4-N and NON, a pattern that was further validated by Mantel test and Pearson's correlation coefficients analyses. Furthermore, some potential N-fixing bacteria, including Burkholderia, Azotobacter, Anabaena, and Enterobacter exhibited a strong and positive association with sugarcane agronomic traits, namely, sugarcane stalk, ratoon weight, and chlorophyll content. Taken together, our findings are likely to broaden our understanding of free-living bacteria N-fixation abilities, and how their contributions to key soil nutrients such as N budgets impact plant growth and yield, including C and N cycling enzymes in a long-term consecutive sugarcane monoculture farming system, under contrasting amendments, along different soil horizons.

摘要

在不同的土壤管理实践下,人们广泛研究了自由生活细菌群落及其丰度。然而,对于它们的固氮能力,以及它们对氮预算的贡献如何影响植物生长、产量以及长期连续甘蔗单一种植系统中碳(C)和氮循环酶,人们知之甚少。在对照(CK)、有机质(OM)、生物炭(BC)和滤泥(FM)改良土壤的三个土壤深度(0-20、20-40 和 40-60 cm)下,我们利用高通量测序(HTS)研究了 nifH 基因扩增子来研究固氮细菌群落及其丰度。此外,我们还研究了土壤中的土壤因素。我们的分析表明,所有处理中 0-20 cm 深度的 β-葡萄糖苷酶活性、酸性磷酸酶活性、铵(NH-N)、硝酸盐(NON)、总碳(TC)、总氮(TN)和有效钾(AK)都相当高。我们还检测到整个样本中 Proteobacteria 和 Geobacter 的比例显著较高,包括 BC 和 FM 改良土壤 0-20 cm 土壤深度下的 Anabaena 和 Enterobacter,我们认为这值得促进土壤因素和甘蔗特性。网络分析进一步强化了这一现象,其中属于 Proteobacteria 的固氮细菌与土壤电导率(EC)、土壤有机质含量(SOM)、有效磷(AP)、TN 呈强正相关,其次是 NH4-N 和 NON,这种模式进一步通过 Mantel 检验和 Pearson 相关系数分析得到验证。此外,一些潜在的固氮细菌,包括 Burkholderia、Azotobacter、Anabaena 和 Enterobacter,与甘蔗农艺性状,即甘蔗茎、再生重量和叶绿素含量表现出强烈的正相关。总的来说,我们的研究结果可能会拓宽我们对自由生活细菌固氮能力的理解,以及它们对氮预算等关键土壤养分的贡献如何影响植物生长和产量,包括长期连续甘蔗单一种植系统中的碳(C)和氮循环酶,在不同的土壤层次下,通过不同的改良措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/019b/10113235/31dbc32d7f6f/41598_2022_25807_Fig1_HTML.jpg

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