拟康宁木霉T51菌株对番茄枯萎病的生物防治及其机理研究
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沪农科推字(2019)第112号


Study on Biological Control Effect and Mechanism of Trichoderma koningiopsis T51 on Tomato Fusarium Wilt
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    摘要:

    尖孢镰刀菌是番茄枯萎病的致病菌,该研究利用拟康宁木霉T51菌株对尖孢镰刀菌展开对峙培养试验、防治最适温度、酸碱度筛选试验及生物防治效果试验,并测定防治试验中番茄幼苗叶片的生理生化指标和水杨酸、茉莉酸合成和信号途径关键基因表达量,探讨T51菌株的生物防治机理。结果表明:(1)T51菌株可显著抑制对峙培养中尖孢镰刀菌生长;随着环境温度和pH的增加,T51菌株对尖孢镰刀菌的抑制率先升后降,并且在20 ℃、pH 7环境下效果最佳。(2)T51菌株和尖孢镰刀菌混合孢子液处理番茄幼苗植株无明显的感病症状,植株生长状态与清水对照组无显著差异,枯萎病发病率和病情指数比单施尖孢镰刀菌孢子液处理显著大幅度降低,相对防效为87.5%。(3)与单施尖孢镰刀菌孢子液处理相比,混合孢子液处理番茄幼苗叶片的叶绿素荧光参数最大光化学效率、光化学淬灭系数和表观光合电子传递速率,以及抗氧化酶SOD、POD、CAT活性均显著增加,而非光化学淬灭系数和过氧化氢含量均显著降低。(4)与单施尖孢镰刀菌孢子液处理相比,混合孢子液处理番茄幼苗叶片的内源水杨酸(SA)显著降低,而茉莉酸(JA)含量显著升高,同时SA信号通路上的PR1和TGA2基因表达量均显著下调,JA合成基因LoxD的表达量显著上调。研究认为,拟康宁木霉T51菌株对尖孢镰刀菌有显著的防治效果,并在20 ℃、pH 7环境下防治效果最佳;T51菌株可能通过抑制尖孢镰刀菌侵染,增强番茄叶片抗氧化酶活性,提高叶片光合效率,以及调控水杨酸和茉莉酸合成和信号途径关键基因表达,调节内源水杨酸和茉莉酸含量,进而提高番茄植株的枯萎病抗病性。研究结果为番茄抗枯萎病提供了生防途径的理论依据。

    Abstract:

    Fusarium oxysporum is the pathogen of tomato fusarium wilt. In this research, a series of experiments were carried out by Trichoderma koningiopsis T51 strain against F. oxysporum to investigate the biological control mechanism of T51 strain, including confrontation culture test, the screening test of optimum temperature and pH for the prevention, and biological control effect test, where we tested the physiological and biochemical indexes of tomato seedling leaves, and tested the expression of key genes of synthesis and signaling pathways of salicylic acids and jasmonic acids. The results showed that: (1) T51 strain could inhibit the growth of F. oxysporum in confrontation culture significantly, and the inhibition rate of T51 strain against F. oxysporum increased first and decreased then, with increasing ambient temperature and pH, but the best inhibition was achieved at 20 ℃ and pH=7. (2) Tomato seedlings treated with T51 strain and F. oxysporum conidia fluid showed no conspicuous symptom, and there was no significant difference in plant growth status with the control group. Compared with F. oxysporum conidia fluid treatment group, the incidence and disease index were decreased significantly, and the relative control effect was 87.5%. (3) Compared with F. oxysporum conidia fluid treatment, chlorophyll fluorescence parameters, including maximum photochemical efficiency, photochemical quenching coefficient and apparent photosynthetic electron transport rate, and antioxidant enzymes SOD, POD, CAT activity of tomato seedlings inoculated mixed conidia fluid were increased significantly, but non photochemical quenching and the content of hydrogen peroxide were reduced significantly. (4) Compared with F. oxysporum conidia fluid treatment, the content of endogenous salicylic acid (SA) in leaves of tomato seedlings treated with mixed spore solution was decreased significantly, while jasmonic acid (JA) increased significantly. While the expression of PR1 and TGA2 genes in SA signaling pathway were downregulated significantly, and the expression of JA synthesis gene LoxD was upregulated significantly. In conclusion, T. koningiopsis T51 had a significant control effect on F. oxysporum, and the optimal control effect was obtained at 20 ℃ and pH=7. T51 strain may enhance tomato wilt resistance by inhibiting F. oxysporum infecting, enhancing antioxidant enzyme activity, improving photosynthetic efficiency of tomato leaves, regulating the expression of key genes in salicylic acid and jasmonic acid synthesis and signaling pathway, and regulating the contents of endogenous SA and JA. These results provided theoretical and research basis for the biocontrol of tomato fusarium wilt.

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王前程,张迎迎,戴陶宇,等.拟康宁木霉T51菌株对番茄枯萎病的生物防治及其机理研究[J].西北植物学报,2022,42(6):974-982

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  • 在线发布日期: 2022-07-15
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