Evidence of Cooperative Interactions between Rhizobacteria and Wood-Decaying Fungi and Their Effects on Maize Germination and Growth

Q2 Agricultural and Biological Sciences
Ricardo Rocha, C. Venâncio, Paulo Cardoso, João Lourenço, E. Figueira
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引用次数: 0

Abstract

Advances in soil microbial communities are driving agricultural practices towards ecological sustainability and productivity, with engineering microbial communities significantly contributing to sustainable agriculture. This study explored the combined effects of two white-rot fungi (Trametes sp. and Pleurotus sp.) and six rhizobacterial strains belonging to four genera (Acinetobacter sp., Enterobacter sp., Flavobacterium sp., and Pseudomonas sp.) on maize growth and soil enzymatic activity over a 14-day period. At the plant level, germination, fresh and dry mass of the aerial and root parts, length, and stage of development of the stem, as well as the chlorophyll content, were evaluated. Furthermore, soil dehydrogenase, acid and alkaline phosphatases, pH, and electrical conductivity were evaluated. Rot fungi induced distinct effects on maize germination, with Pleurotus sp. strongly suppressing maize germination by 40% relative to that of the control. The isolated bacterial strains, except Enterobacter sp. O8, and 8 of the 12 fungus + bacterial strain combinations induced germination rates higher than those of the control (≥40%). Combinations of Flavobacterium sp. I57 and Pseudomonas sp. O81 with the rot fungus Pleurotus sp. significantly improved plant shoot length (from 28.0 to 37.0 cm) and developmental stage (fourth leaf length increase from 10.0 to 16.8 cm), respectively, compared with the same bacteria alone or in combination with the rot fungus Trametes sp. In the soil, the presence of both fungi appeared to stabilize phosphatase activity compared to their activity when only bacteria were present, while also promoting overall dehydrogenase enzymatic activity in the soil. Integrating all parameters, Trametes sp. rot fungus + Enterobacter sp. O8 may be a potential combination to be explored in the context of agricultural production, and future studies should focus on the consistency of this combination’s performance over time and its effectiveness in the field.
根瘤菌与腐木真菌之间的协同作用及其对玉米发芽和生长影响的证据
土壤微生物群落的进步正在推动农业实践向生态可持续性和生产力方向发展,工程微生物群落对可持续农业做出了重大贡献。本研究探讨了两种白腐真菌(Trametes sp.和 Pleurotus sp.)和属于四个菌属(Acinetobacter sp.、Enterobacter sp.、Flavobacterium sp.和 Pseudomonas sp.)的六个根瘤菌株在 14 天内对玉米生长和土壤酶活性的综合影响。在植物层面,对玉米的发芽率、气生部分和根部的鲜重和干重、茎的长度和发育阶段以及叶绿素含量进行了评估。此外,还对土壤脱氢酶、酸性和碱性磷酸酶、pH 值和导电率进行了评估。腐生真菌对玉米发芽产生了不同的影响,其中 Pleurotus sp.强烈抑制了玉米发芽,与对照相比抑制了 40%。除肠杆菌 O8 外,分离出的细菌菌株以及 12 种真菌+细菌菌株组合中有 8 种的发芽率高于对照(≥40%)。黄杆菌 I57 和假单胞菌 O81 与腐生真菌 Pleurotus sp.的组合分别显著提高了植株芽长(从 28.0 厘米提高到 37.0 厘米)和发育阶段(第四叶长度从 10.0 厘米提高到 16.8 厘米)。在土壤中,与只有细菌存在时的活性相比,两种真菌的存在似乎都能稳定磷酸酶的活性,同时还能促进土壤中整体脱氢酶的酶活性。综合所有参数来看,腐霉菌 + 肠杆菌 O8 可能是农业生产中一个值得探索的潜在组合,未来的研究应重点关注这一组合的长期表现一致性及其在田间的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Agriculture
Agriculture Agricultural and Biological Sciences-Horticulture
CiteScore
1.90
自引率
0.00%
发文量
4
审稿时长
11 weeks
期刊介绍: The Agriculture (Poľnohospodárstvo) is a peer-reviewed international journal that publishes mainly original research papers. The journal examines various aspects of research and is devoted to the publication of papers dealing with the following subjects: plant nutrition, protection, breeding, genetics and biotechnology, quality of plant products, grassland, mountain agriculture and environment, soil science and conservation, mechanization and economics of plant production and other spheres of plant science. Journal is published 4 times per year.
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