Waitea circinata: a novel biocontrol agent against Meloidogyne enterolobii on tomato plants.

IF 1.4 4区 生物学 Q2 ZOOLOGY Journal of nematology Pub Date : 2025-03-14 eCollection Date: 2025-02-01 DOI:10.2478/jofnem-2025-0002
Gianlucca de Urzêda Alves, C G Felipe, R F Denner, R R Mara, G A Leila
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Abstract

Root-knot nematodes (RKN), particularly Meloidogyne enterolobii, pose a significant threat to agriculture, with current management heavily reliant on agrochemicals due to a scarcity of resistant crop varieties. This study explores orchid mycorrhizae, specifically Waitea circinata, as a sustainable biocontrol method to mitigate nematode infestation in tomato plants. The research aimed to compare different application methods and dosages of mycelial suspensions to reduce nematode reproduction and enhance plant health. Two application methods, root immersion for 24 hours and soil drenching, were tested with mycelial suspension concentrations ranging from 5 to 25 g.L-1. Results showed that a 15 g.L-1 suspension significantly reduced nematode reproduction factor (RF) by 53.4% and nematode density (DENS) by 49.4% while increasing root fresh weight (RFW) by 53.8% in drenching. In subsequent experiments, soil drenching with 15 g.L-1 mycelial suspension again reduced RF by 32.41% and DENS by 28.52%, with increases in shoot length (SL) by 26.31%, RFW by 20.42%, and shoot fresh weight (SFW) by 22.20%. Enzymatic analysis revealed that plants treated with W.circinata and inoculated with nematodes (Wc+Me) showed a substantial decline in RF (71.13%) and DENS (76.96%). Additionally, there was a marked increase in peroxidase (POX) and catalase (CAT) activity, with Wc plants displaying a 180% increase in POX and a 112.5% increase in CAT at root colonization onset. By day 21, Wc+Me plants exhibited further enzyme activity increases, with POX up by 128% and CAT by 67.6%. This study emphasizes the potential of W. circinata in enhancing plant resistance and reducing nematode impact, presenting a promising alternative to chemical control.

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一种新型番茄肠曲线虫生物防治剂。
根结线虫(RKN),特别是肠结线虫(Meloidogyne enterolobi),对农业构成重大威胁,由于缺乏抗性作物品种,目前的管理严重依赖农用化学品。本研究探讨了兰花菌根,特别是Waitea circinata,作为一种可持续的生物防治番茄线虫的方法。本研究旨在比较不同菌丝悬浮液的施用方法和用量,以减少线虫繁殖,促进植物健康。在菌丝悬浮液浓度为5 ~ 25 g.L-1的条件下,采用根浸24 h和土壤淋施两种施用方法进行试验。结果表明,a 15 g。L-1悬浮液可显著降低线虫繁殖因子(RF) 53.4%和线虫密度(DENS) 49.4%,显著提高根鲜重(RFW) 53.8%。在随后的试验中,土壤淋水量为15g。L-1菌丝悬浮液再次降低了鲜重(SFW)和鲜长(SL),分别降低了32.41%和28.52%,提高了26.31%、20.42%和22.20%。酶学分析表明,接种线虫(Wc+Me)后,经麻霉处理的植株的RF(71.13%)和den(76.96%)显著下降。此外,过氧化物酶(POX)和过氧化氢酶(CAT)活性显著增加,在根定殖开始时,Wc植株的POX和CAT活性分别增加了180%和112.5%。到第21天,Wc+Me植株酶活性进一步提高,其中POX提高了128%,CAT提高了67.6%。本研究强调了卷叶麻在提高植物抗性和减少线虫影响方面的潜力,为化学防治提供了一种有前景的替代方案。
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来源期刊
Journal of nematology
Journal of nematology 生物-动物学
CiteScore
2.90
自引率
7.70%
发文量
40
审稿时长
14 weeks
期刊介绍: Journal of Nematology is the official technical and scientific communication publication of the Society of Nematologists since 1969. The journal publishes original papers on all aspects of basic, applied, descriptive, theoretical or experimental nematology and adheres to strict peer-review policy. Other categories of papers include invited reviews, research notes, abstracts of papers presented at annual meetings, and special publications as appropriate.
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