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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Coupling sugarcane yield to soil nematodes: Implications from different fertilization regimes and growth stages
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Coupling sugarcane yield to soil nematodes: Implications from different fertilization regimes and growth stages

机译:对土壤线虫的糖烷产率:来自不同施肥制度和生长阶段的影响

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Graphical abstract Display Omitted Highlights ? Sugarcane yield was positively related with the relative abundance of bacterivores. ? Bacterivores can be considered as the indicator of sugarcane yield increase. ? The application of biofertilizers led to more simplified soil nematode communities. ? Soil nematodes respond differently to the soil stable and available nutrients. ? Changes in soil nematode communities provide evidence for benefits of biofertilizers. Soil nematode communities provide important information for soil food web structure and function. Our study focused on the impacts of different fertilization regimes on sugarcane growth, while primarily considering their effects on soil nematode responses during different growth stages. The sugarcane yields were significantly increased in plots fertilized with functional biofertilizers (BIOs) compared with plots that received chemical fertilizers. Moreover, the BIO applications significantly (P< 0.01) decreased the relative abundance of plant parasite while significantly (P< 0.01) increased the relative abundance of beneficial nematodes: Cephalobus, Cervidellus, Acrobeles, Caenorhabditis in the group of bacteriores and Ditylenchus, Tylencholaimus in the group of fungivores. Nonmetric multidimensional scaling (NMDS) revealed that soil nematode communities were primarily separated by sampling time. A network analysis showed that BIO applications led to more simplified soil nematode community, which was possibly linked with the increased bacterivore abundance and improved soil fertility. The effects of fertilization regimes were significant (P< 0.05) and accounted for 3.35% of the total variation in soil nematode communities. Soil properties (e.g., pH, organic matter, total N, available K and available P) were influenced by the fertilization regimes and different sampling time, which significantly (P< 0.05) explained 14.53% of the soil nematode variation. In conclusion, BIOs applications might facilitate sugarcane yield by increasing the relative abundance of bacterivore while decreasing plant parasites. The changes in soil nematode communities may reflect the soil fertility and health and provide evidence for the benefits of BIO applications for sugarcane crops.
机译:图形抽象显示省略了亮点?甘蔗产率与诱导的相对丰度正相关。还可将抑制视为甘蔗产量增加的指标。还生物元经济体的应用导致了更简化的土壤线性联网社区。还土壤线虫对土壤稳定和可用的营养成分不同。还土壤线虫社区的变化提供了生物化ilizers益处的证据。土壤线路线虫社区为土壤食品网结构和功能提供重要信息。我们的研究侧重于不同施肥制度对甘蔗生长的影响,同时主要考虑其对不同生长阶段的土壤线虫反应的影响。与接受化肥的局部的图,在用官能生物元(BIOS)施用的地块中,甘蔗产率显着增加。此外,生物应用显着(p <0.01)降低了植物寄生虫的相对丰度(P <0.01)增加了有益线虫的相对丰富:Cephalobus,Cervidellus,icrobeles,Caenorhabditis,在细菌和Ditylenchus组中,Tylencholaimus团队的功能。非更正多维缩放(NMDS)揭示了土壤线虫社区主要通过采样时间分离。网络分析表明,生物应用导致了更简化的土壤线性群落,这可能与增加的抑制性丰度和改善土壤肥力有关。施肥制度的影响显着(P <0.05),占土壤线性线虫社区总变化的3.35%。土壤性质(例如,pH,有机物,总N,可用的K和可用P)受施肥制度的影响和不同的取样时间,其显着(P <0.05)解释了土壤线虫变异的14.53%。总之,BIOS应用可以通过增加植物寄生虫同时增加诱导的诱导诱导的诱导菌株来促进甘蔗产量。土壤线性线虫社区的变化可能反映土壤肥力和健康,并为甘蔗作物的生物应用的益处提供证据。

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