为了明确surfactin产量不同的芽孢杆菌对黄瓜枯萎病的控制作用,本研究采用N+注入诱变共获得1250株芽孢杆菌B006的突变株,通过对黄单孢杆菌的抑菌试验筛选并获得3株产surfactin突变株B841、B73和B1020。对各突变株NB发酵液的HPLC ESI MS...为了明确surfactin产量不同的芽孢杆菌对黄瓜枯萎病的控制作用,本研究采用N+注入诱变共获得1250株芽孢杆菌B006的突变株,通过对黄单孢杆菌的抑菌试验筛选并获得3株产surfactin突变株B841、B73和B1020。对各突变株NB发酵液的HPLC ESI MS分析表明:突变株B841和B73的surfactin含量比野生菌株B006分别升高了15.9%和14.8%,而突变株B1020的surfactin含量比野生菌株降低了85.2%;各突变株fengycin产量未发生改变。对surfactin各组分的质谱图解析,发现突变株B841和B1020的surfactin组分发生变化,突变株B841的surfactin组分中无m/z为995的同系物,而突变株B1020的MS图谱中只发现了m/z为1037和1051的surfactin同系物;对突变株的生物学特性测定表明:突变株B73和B1020的菌落形态发生改变,生长周期缩短;3个突变株比野生菌株产芽孢能力下降,突变株B1020在含有玉米粉和豆饼粉的培养基上不产生芽孢。对各菌株添加到育苗基质中(浓度为106cfu·g 1)后,防治黄瓜枯萎病的效果测定表明:2周时,突变株B1020防效接近于野生菌株B006,达70%以上;但3周时,防效下降到36.2%;突变株B841防效始终低于野生菌株B006,只有29.1%。本研究发现芽孢杆菌B006及其突变株在NA培养液中的surfactin产量的高低与其在育苗基质中的防病效果无直接的相关性,对其在自然土中的防病效果值得进一步研究。展开更多
In our previous studies, we identified 3 Trichoderma strains with anti-Fusarium oxysporum activity, including T. asperellum 525, T. harzianum 610, and T. pseudokoningii 886. Here, we evaluated the effects of these 3 T...In our previous studies, we identified 3 Trichoderma strains with anti-Fusarium oxysporum activity, including T. asperellum 525, T. harzianum 610, and T. pseudokoningii 886. Here, we evaluated the effects of these 3 Trichoderma strains on preventing cucumber fusarium wilt through pot culture and greenhouse culture experiments. All 3 Trichoderma strains demonstrated higher control effects toward cucumber fusarium wilt than previous studies, with efficacies over 78%. Additionally, inoculation with the 3 Trichoderma strains significantly promoted the quality and yield of cucumbers. Among the 3 strains, Trichoderma 866 was the most effective, with disease control efficacy of 78.64% and a cucumber yield increase of 33%. Furthermore, seedlings inoculated with Trichoderma exhibited significantly increased measures of plant height, stem diameter, leaf area, aboveground fresh weight, underground fresh weight, chlorophyll content, and nitric nitrogen content, as well as the activities of several stress-resistance enzymes, including superoxide dismutase(SOD), peroxidase(POD), catalase(CAT), polyphenol oxidase(PPO), and ascorbate oxidase(AAO). In addition, the plants inoculated with Trichoderma showed decreased cell membrane permeability and malondialdehyde(MDA) content in the leaves. Together, our results suggest that T. asperellum 525, T. harzianum 610, and T. pseudokoningii 886 inoculations inhibit F. oxysporum infection, stimulate the metabolism in cucumbers, and enhance the activities of stress-resistance enzymes, which consequently promote the growth of cucumber plants, prevent cucumber fusarium wilt, and improve the yield and quality of cucumbers. T. harzianum is a commonly used biocontrol fungus, while few studies have focused on T. asperellum or T. koningense. In this study, strains of T. asperellum and T. pseudokoningii showed excellent plant disease prevention and growth promoting effects on cucumber, indicating that they also have great potential as biocontrol fungi.展开更多
文摘为了明确surfactin产量不同的芽孢杆菌对黄瓜枯萎病的控制作用,本研究采用N+注入诱变共获得1250株芽孢杆菌B006的突变株,通过对黄单孢杆菌的抑菌试验筛选并获得3株产surfactin突变株B841、B73和B1020。对各突变株NB发酵液的HPLC ESI MS分析表明:突变株B841和B73的surfactin含量比野生菌株B006分别升高了15.9%和14.8%,而突变株B1020的surfactin含量比野生菌株降低了85.2%;各突变株fengycin产量未发生改变。对surfactin各组分的质谱图解析,发现突变株B841和B1020的surfactin组分发生变化,突变株B841的surfactin组分中无m/z为995的同系物,而突变株B1020的MS图谱中只发现了m/z为1037和1051的surfactin同系物;对突变株的生物学特性测定表明:突变株B73和B1020的菌落形态发生改变,生长周期缩短;3个突变株比野生菌株产芽孢能力下降,突变株B1020在含有玉米粉和豆饼粉的培养基上不产生芽孢。对各菌株添加到育苗基质中(浓度为106cfu·g 1)后,防治黄瓜枯萎病的效果测定表明:2周时,突变株B1020防效接近于野生菌株B006,达70%以上;但3周时,防效下降到36.2%;突变株B841防效始终低于野生菌株B006,只有29.1%。本研究发现芽孢杆菌B006及其突变株在NA培养液中的surfactin产量的高低与其在育苗基质中的防病效果无直接的相关性,对其在自然土中的防病效果值得进一步研究。
基金support from the National Key R&D Program of China (2018YFD0201202)the National Science and Technology Basic Work, China (2014FY120900)the 948 Program of China (2011-G4)
文摘In our previous studies, we identified 3 Trichoderma strains with anti-Fusarium oxysporum activity, including T. asperellum 525, T. harzianum 610, and T. pseudokoningii 886. Here, we evaluated the effects of these 3 Trichoderma strains on preventing cucumber fusarium wilt through pot culture and greenhouse culture experiments. All 3 Trichoderma strains demonstrated higher control effects toward cucumber fusarium wilt than previous studies, with efficacies over 78%. Additionally, inoculation with the 3 Trichoderma strains significantly promoted the quality and yield of cucumbers. Among the 3 strains, Trichoderma 866 was the most effective, with disease control efficacy of 78.64% and a cucumber yield increase of 33%. Furthermore, seedlings inoculated with Trichoderma exhibited significantly increased measures of plant height, stem diameter, leaf area, aboveground fresh weight, underground fresh weight, chlorophyll content, and nitric nitrogen content, as well as the activities of several stress-resistance enzymes, including superoxide dismutase(SOD), peroxidase(POD), catalase(CAT), polyphenol oxidase(PPO), and ascorbate oxidase(AAO). In addition, the plants inoculated with Trichoderma showed decreased cell membrane permeability and malondialdehyde(MDA) content in the leaves. Together, our results suggest that T. asperellum 525, T. harzianum 610, and T. pseudokoningii 886 inoculations inhibit F. oxysporum infection, stimulate the metabolism in cucumbers, and enhance the activities of stress-resistance enzymes, which consequently promote the growth of cucumber plants, prevent cucumber fusarium wilt, and improve the yield and quality of cucumbers. T. harzianum is a commonly used biocontrol fungus, while few studies have focused on T. asperellum or T. koningense. In this study, strains of T. asperellum and T. pseudokoningii showed excellent plant disease prevention and growth promoting effects on cucumber, indicating that they also have great potential as biocontrol fungi.