[Effects of effective microorganisms on growth promotion and the rhizosphere eukaryotic community structure of pepper in Xinjiang, China].

Q3 Environmental Science 应用生态学报 Pub Date : 2024-06-01 DOI:10.13287/j.1001-9332.202406.015
Cong Liu, Cui-Cui Wan, Xu Song, Guang-Fu Xia, Nai Ao, Jia-la Sang, Kui-Ming Wang, Jun Wang
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Abstract

Effective microorganisms (EM) might alleviate deterioration of soil environmental quality and yield decline of pepper (Capsicum annuum) caused by continuous replanting and imbalanced fertilizer application in Xinjiang. We investigated the effects of applying EM microbial agent on the growth of pepper plants, yield, soil nutrient content, soil enzyme activity, and rhizosphere eukaryotic community. The results showed that the application of EM microbial agent increased plant height, stem diameter, leaf length, leaf width and root length by 22.6%, 35.3%, 33.3%, 29.7% and 15.1%, respectively. It also increased fruit width, individual fruit weight, and yield by 5.3%, 42.9%, and 74.7%, respectively. After the application of EM microbial agent, the levels of soil available nitrogen increased by 10.2% and 5.8% during the flowering and maturity stages, respectively. Similarly, available phosphorus increased by 10.4% and 13.4%, respectively. The soil sucrase activity was increased by 40.7%, 14.6%, and 9.3% during the seedling, flowering, and maturity stages, respectively. Urease activity was also increased by 7.9%, 10.2%, and 11.5%, respectively. Furthermore, the application of EM microbial agent increased soil peroxidase activity by 16.8% and 44.6% at flowering and maturity stages, respectively. The application of microbial agent significantly altered the β-diversity of the rhizosphere eukaryotic community in pepper plants. Specifically, microbial agent increased the relative abundances of populations belonging to Enchytraeus and Sminthurides genera, which could contribute to soil improvement and nutrient cycling. Compared to the CK, the relative abundance of pathogenic microorganisms including Olpidium and Aplanochytrium genera decreased by 98.0% and 89.3%, and the relative abundance of the Verticillium decreased to 0. These results demonstrated that EM microbial agent could increase soil nutrient content, enhance soil enzyme activity, and reduce soil pathogenic fungi in the pepper cultivation areas of Xinjiang, thus achieving beneficial effects on pepper growth and fruit yield.

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[有效微生物对中国新疆辣椒生长促进和根瘤真核生物群落结构的影响]。
有效微生物(EM)可缓解新疆辣椒因连续移栽和施肥不均造成的土壤环境质量恶化和产量下降。我们研究了施用EM微生物菌剂对辣椒植株生长、产量、土壤养分含量、土壤酶活性和根圈真核生物群落的影响。结果表明,施用EM菌剂后,株高、茎径、叶长、叶宽和根长分别增加了22.6%、35.3%、33.3%、29.7%和15.1%。果宽、单果重和产量也分别增加了 5.3%、42.9% 和 74.7%。施用 EM 微生物菌剂后,开花期和成熟期的土壤可利用氮含量分别增加了 10.2% 和 5.8%。同样,可用磷也分别增加了 10.4% 和 13.4%。在幼苗期、开花期和成熟期,土壤中的蔗糖酶活性分别提高了 40.7%、14.6% 和 9.3%。尿素酶活性也分别提高了 7.9%、10.2% 和 11.5%。此外,施用 EM 微生物菌剂后,土壤过氧化物酶活性在开花期和成熟期分别提高了 16.8% 和 44.6%。施用微生物菌剂极大地改变了辣椒根圈真核生物群落的β-多样性。特别是,微生物菌剂增加了属于 Enchytraeus 和 Sminthurides 属的种群的相对丰度,这可能有助于土壤改良和养分循环。这些结果表明,EM菌剂可增加新疆辣椒种植区土壤养分含量、提高土壤酶活性、减少土壤病原真菌,从而对辣椒生长和果实产量产生有益影响。
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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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0.00%
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11393
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