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内生真菌昆虫病原物的种子接种促进了小麦的生长,并减少了由尖孢镰刀菌引起的冠腐和根腐(CRR)。

Seed inoculation with endophytic fungal entomopathogens promotes plant growth and reduces crown and root rot (CRR) caused by Fusarium culmorum in wheat.

机构信息

Department of Plant Protection, School of Agriculture, The University of Jordan, Amman, 11942, Jordan.

出版信息

Planta. 2018 Dec;248(6):1525-1535. doi: 10.1007/s00425-018-2991-x. Epub 2018 Aug 23.

Abstract

Fungal entomopathogens, Beauveria bassiana (NATURALIS) and Metarhizium brunneum (BIPESCO5), can promote the growth of wheat following their endophytic establishment within plants through seed treatment. Similar to endophytic B. bassiana which has already been reported as a disease antagonist by several previous studies, the present study demonstrates that M. brunneum can suppress disease pathogens following plant colonization as well. An upsurge of research hints at the ability of entomopathogenic fungi, almost exclusively considered and used as insect pathogens, to endophytically colonize the internal tissues of a wide array of host plants and subsequently confer numerous benefits including enhancement of plant growth and suppression of disease pathogens. Such an ability has mainly been investigated for Beauveria bassiana. Fewer studies have demonstrated plant growth promotion by Metarhizium brunneum colonization, whereas no studies have reported on the potential of endophytic M. brunneum as a plant disease antagonist. The present study was, therefore, conducted to investigate whether seed treatment with B. bassiana (NATURALIS) and M. brunneum (BIPESCO5) could result in their endophytic establishment in wheat and promote plant growth. The study further examines the effect of the fungal strains as endophytes against Fusarium culmorum, one of the main causal agents of crown and root rot (CRR) in wheat. Both B. bassiana and M. brunneum were able to systemically colonize roots and shoots of wheat, and promote several plant growth parameters (shoot height, root length, and fresh root and shoot weights). Moreover, endophytic colonization of wheat with either fungal entomopathogen resulted in a significant reduction in disease incidence, development and severity. These results support the notion of the multiple ecological roles that could further be played by entomopathogenic fungi. Bearing such additional roles in mind while developing these fungi as microbial agents could improve the value of many commercially available mycoinsecticides.

摘要

真菌性昆虫病原物,白僵菌(NATURALIS)和绿僵菌(BIPESCO5),可以通过种子处理在植物体内建立内生关系,从而促进小麦的生长。与已经被几项先前的研究报道为疾病拮抗剂的内生白僵菌类似,本研究表明绿僵菌在植物定殖后也可以抑制疾病病原体。越来越多的研究表明,昆虫病原真菌,几乎完全被认为是昆虫病原体并被使用,能够内生性地定殖宿主植物的内部组织,并随后赋予多种益处,包括增强植物生长和抑制疾病病原体。这种能力主要针对白僵菌进行了研究。较少的研究表明绿僵菌定殖可以促进植物生长,而没有研究报道内生绿僵菌作为植物疾病拮抗剂的潜力。因此,本研究旨在调查用白僵菌(NATURALIS)和绿僵菌(BIPESCO5)进行种子处理是否会导致它们在小麦中建立内生关系并促进植物生长。该研究还进一步研究了真菌菌株作为内生菌对禾谷镰孢菌(Fusarium culmorum)的影响,禾谷镰孢菌是小麦冠腐和根腐(CRR)的主要病原体之一。白僵菌和绿僵菌都能够系统地定殖小麦的根和茎,并促进几个植物生长参数(茎高、根长和新鲜根和茎的重量)。此外,内生菌在小麦上的定殖导致疾病发病率、发展和严重程度的显著降低。这些结果支持了昆虫病原真菌可能发挥多种生态作用的观点。在将这些真菌作为微生物制剂开发时考虑到这些额外的作用,可以提高许多商业上可用的生防真菌制剂的价值。

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