Institute of Natural and Applied Science, Tekirdağ Namık Kemal University, Tekirdağ, Turkey.
Department of Plant Protection, Faculty of Agriculture, Tekirdağ Namık Kemal University, Tekirdağ, Turkey.
Lett Appl Microbiol. 2022 Jun;74(6):1027-1035. doi: 10.1111/lam.13698. Epub 2022 Mar 21.
This study investigated the antagonistic effects of Trichoderma harzianum isolate (TRIC8) on mycelial growth, hyphal alteration, conidial germination, germ tube length and seed colonization by the seedborne fungal pathogens Alternaria alternata, Bipolaris cynodontis, Fusarium culmorum and F. oxysporum, the causes of seedling rot in over 30% of sunflowers. The antagonistic effect of TRIC8 on mycelial growth of pathogens was evaluated on dual culture that included two inoculation assays: inoculation of antagonist at 48 h before pathogen (deferred inoculation) and inoculation at the same time with pathogen (simultaneous inoculation). TRIC8 inhibited mycelial growth of the fungal pathogens between 70·67 and 76·87% with the strongest inhibition seen with deferred inoculation. Alterations in hyphae were observed in all pathogens. Conidial germination of F. culmorum was inhibited by most of the fungal pathogens (38·28%) by TRIC8. Inhibition of germ tube length by the antagonist varied from 31·83 to 37·67%. In seed colonization experiments, TRIC8 was applied in combination with each pathogen to seeds of a sunflower genotype that is highly tolerant to downy mildew. Seed death was inhibited by TRIC8 and the antagonist did not allow growth of A. alternata, B. cynodontis and F. culmorum on seeds and inhibited the growth of F. oxysporum at the rate of 58·32%.
本研究调查了哈茨木霉分离株(TRIC8)对菌核盘菌、旋孢腔菌、禾谷镰孢菌和尖孢镰刀菌等种传真菌病原体的菌丝生长、菌丝改变、孢子萌发、芽管长度和种子定殖的拮抗作用,这些病原体是向日葵超过 30%烂种的原因。通过包括两种接种测定的双重培养评估 TRIC8 对病原体菌丝生长的拮抗作用:在病原体接种前 48 小时接种(延迟接种)和与病原体同时接种(同时接种)。TRIC8 抑制真菌病原体的菌丝生长在 70.67%至 76.87%之间,延迟接种的抑制作用最强。在所有病原体中均观察到菌丝的改变。TRIC8 抑制禾谷镰孢菌的孢子萌发率为 38.28%。拮抗物对芽管长度的抑制率从 31.83%到 37.67%不等。在种子定殖实验中,将 TRIC8 与每种病原体一起应用于对霜霉病高度耐受的向日葵基因型的种子。TRIC8 抑制种子死亡,且该拮抗物不允许菌核盘菌、旋孢腔菌和禾谷镰孢菌在种子上生长,并以 58.32%的速率抑制尖孢镰刀菌的生长。