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首页> 外文期刊>American journal of agricultural and biological sciences >Identification of volatile metabolites from fungal endophytes with biocontrol potential towards Fusarium oxysporum F. sp. cubense race 4.
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Identification of volatile metabolites from fungal endophytes with biocontrol potential towards Fusarium oxysporum F. sp. cubense race 4.

机译:鉴定真菌内生菌中挥发性的代谢物,对 oxysporum F. sp。具有生控潜力。 怀抱比赛4。

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Problem statement: Fungal endophytes are widely studied for their potential as biocontrol agents towards fungal pathogens. In vitro assessments usually reveal their antibiosis and mycoparasitism nature, but little is understood regarding their production of volatile metabolites as mechanisms of antagonism. Approach: This study explored the potential of fungal endophytes in controlling the pathogen responsible for Fusarium wilt disease. Nine fungal endophytes were tested for their ability to inhibit the growth of the pathogenic Fusarium oxysporum F. sp. cubense race 4 (FocR4) via production of volatile inhibitory metabolites. The type of volatile metabolites produced were subsequently characterized and identified using the Gas-Chromatography Mass-Spectrophotometry (GCMS). Results: Eight of the isolates (BTF05, BTF07, BTF08, BTF15, BTF21, WAA03, WAA02, MIF01) showed positive results with percentages of inhibition varying from 1.43-31.43% while one isolate (ALF01), showed negative result (0% inhibition). Volatile profiles showed that these fungal endophytes produced between 15-47 volatile metabolites per isolate. However, the more volatile metabolites produced by a single endophyte does not indicate better biocontrol potential. Isolate BTF05 produced 47 different volatile metabolites, but has only 8.57% inhibition, compared to isolate BTF21 with 15 metabolites but a percentage of 11.43% inhibition. The potency of the volatile metabolites produced may also influenced the biocontrol potential of the fungal endophytes as some isolates such as BTF08 and MIF01 have only two to three known inhibitory metabolites but have higher PIDG values at 31.43 and 11.43%, respectively. Contrary, isolates WAA02 and WAA03 which has five to six metabolites but PIDG values of less than 3%. Conclusion: Fungal endophytes have the ability to produce several types of volatile metabolites to inhibit the growth of FocR4. These volatile inhibitory metabolites can be further extracted and the amount produced ascertained for future manipulation in biological control of FocR4.
机译:问题陈述:真菌内生菌作为真菌病原体的生物防治剂的潜力得到了广泛研究。 体外评估通常显示出它们的抗菌性和霉菌寄生性,但对其产生挥发性代谢产物作为拮抗机制的了解很少。方法:本研究探讨了真菌内生菌在控制引起枯萎病的病原体中的潜力。测试了九种真菌内生菌抑制病原性尖孢镰刀菌(Fusarium oxysporum)的生长能力。通过产生挥发性抑制性代谢产物来产生小众第4种族(FocR4)。随后使用气相色谱质谱法(GCMS)对产生的挥发性代谢物的类型进行表征和鉴定。结果:八株分离株(BTF05,BTF07,BTF08,BTF15,BTF21,WAA03,WAA02,MIF01)显示阳性结果,抑制百分比范围为1.43-31.43%,而一株分离株(ALF01)显示阴性结果(抑制率为0% )。挥发性概况表明,这些真菌内生菌每个分离株产生15-47个挥发性代谢产物。但是,由单一内生菌产生的挥发性较高的代谢物并不表明具有更好的生物防治潜力。分离物BTF05产生47种不同的挥发性代谢产物,但与具有15种代谢物但抑制百分比为11.43%的分离物BTF21相比,抑制率仅为8.57%。所产生的挥发性代谢物的效力也可能影响真菌内生菌的生物防治潜能,因为某些分离物(例如BTF08和MIF01)仅具有2至3种已知的抑制代谢物,但PIDG值分别较高,分别为31.43%和11.43%。相反,分离出WAA02和WAA03,它们具有5至6种代谢物,但PIDG值小于3%。结论:真菌内生菌具有产生几种类型的挥发性代谢产物的能力,以抑制FocR4的生长。可以进一步提取这些挥发性抑制代谢物,并确定产生的量,以便将来用于FocR4的生物学控制。

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