与camu-camu (Myrciaria dubia)相关的内生真菌的体外拮抗活性评价/与camu-camu (Myrciaria dubia)相关的内生真菌的体外拮抗活性评价

V. C. Correia, Rita de Kássia de Oliveira Pereira, Nathália Oliveira Lima, Maildo Barbosa Coelho, Waldesse Piragé de Oliveira Junior, R. S. Pimenta
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引用次数: 0

摘要

内生真菌是指寄生于寄主内部组织的真菌,它们之间的生态关系多样而狭窄,没有明显的症状。据估计,大多数植物物种的内生微生物尚未被分类,性质鲜为人知,但有些可能适合生物技术应用。Camu-camu (Myrciaria dubia)具有巨大的经济潜力,其果实的营养特性,如维生素c的产量高。本文分离培养了307株与dubia叶片和茎相关的内生真菌,以验证其拮抗活性,产生扩散和挥发性物质,对抗果霉、炭疽菌和寄生曲霉。结果表明,22株病原菌对至少一种目标植物病原菌有抑制作用,抑制电位(IP)在25.62% ~ 93.84%之间,其中5株内生病原菌通过产生扩散和挥发性物质,抑制率在50%以上。根据Badalyan量表对竞争相互作用进行了分析,结果表明,真菌之间的相互作用频率较高,为a型(与菌丝接触的“死锁”)。综上所述,从杜仲叶和茎中分离得到的内生真菌在防治植物病原菌(寄生菌、果孢菌和gloeosporioides)方面具有良好的生物技术潜力。
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Evaluation of antagonistic activity in vitro of endophytic fungi associated with camu-camu (Myrciaria dubia) / Avaliação da atividade antagonista in vitro de fungos endofíticos associados ao camu-camu (Myrciaria dubia)
Endophytic fungi are those that inhabit the inner tissue of their hosts, playing varied and narrow ecological relations without showing visible symptoms. It is estimated that the majority of plant species have not yet been sorted endophytic microorganisms and little-known properties, but some potentially suitable for biotechnological applications. Camu-camu (Myrciaria dubia) has great economic potential, the nutritional characteristics of the fruit, such as high production of vitamin C. Were isolated and cultured 307 endophytic fungi associated with the leaves and stems of M. dubia in order to verify the antagonistic activity, for the production of diffusible and volatile substances against the following pathogens: M. fructicola, Colletotrichum gloeosporioides and Aspergillus parasiticus. It was found that 22 isolates inhibited the growth of at least one target plant pathogens, showing inhibition potential (IP) from 25.62% to 93.84%, five endophytic stood with inhibition percentage above 50%, by producing diffusible and volatile substances. The competitive interactions were analyzed according to Badalyan scale, and there was a higher frequency among the fungi, the interaction type A ("deadlock" with mycelial contact). It is concluded that endophytic fungi isolated from leaves and stems of M. dubia, have promising biotechnological potential in biocontrol of plant pathogens (A.parasiticus, M. fructicola and C. gloeosporioides).
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