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中国引起大豆荚枯病的新菌株的鉴定及其使用多菌灵、二吡啶酸和曲酸的防治。

Identification of New Strains Causing Soybean Pod Blight in China and Their Control Using Carbendazim, Dipicolinic Acid and Kojic Acid.

机构信息

School of Life Sciences, Nantong University, Nantong 226019, China.

出版信息

Int J Environ Res Public Health. 2022 Aug 24;19(17):10531. doi: 10.3390/ijerph191710531.

Abstract

Soybean plants are highly susceptible to species, which significantly reduce soybean production and quality. Several species have been reported to synthesize mycotoxins, such as trichothecene, which have been related to major human diseases. In November 2021, soybean pods in Nantong municipality, China, showed black necrotic lesions during the harvest stage. The disease incidence reached 69%. The pathogen was identified as via morphological analysis and sequencing of , and genes. A PCR assay with primers targeting the trichothecene biosynthesis genes suggested that the three isolates could synthesize trichothecenes. The effectiveness of fungicide carbendazim and natural metabolites dipicolinic acid and kojic acid was screened for the management of on postharvest soybean pods. The highest efficacy was obtained when combining 3.8 mg/mL carbendazim and 0.84 mg/mL dipicolinic acid (curative efficacy: 49.1% lesion length inhibition; preventive efficacy: 82.7% lesion length inhibition), or 1.9 mg/mL carbendazim and 0.71 mg/mL kojic acid (preventive efficacy: 84.9% lesion length inhibition). Collectively, this report will lead to a better understanding of the safety hazards found in soybean products in China and reveals the application of dipicolinic and kojic acids to reduce the use of carbendazim.

摘要

大豆植株极易感染 ,这会显著降低大豆的产量和质量。有几种 已被报道能合成霉菌毒素,如三萜烯,这与人类的一些重大疾病有关。2021 年 11 月,中国南通市的大豆荚在收获阶段出现了黑色坏死病变。该病的发病率达到了 69%。通过形态分析和 、 和 基因的测序,确定病原菌为 。针对三萜烯生物合成基因设计的 PCR 检测表明,这三个分离株可以合成三萜烯。筛选了杀菌剂多菌灵和天然代谢物 - 吡啶二酸和曲酸对采后大豆荚中 的防治效果。当组合使用 3.8 mg/mL 多菌灵和 0.84 mg/mL - 吡啶二酸(治疗效果:49.1%的病变长度抑制;预防效果:82.7%的病变长度抑制),或 1.9 mg/mL 多菌灵和 0.71 mg/mL 曲酸(预防效果:84.9%的病变长度抑制)时,效果最佳。总的来说,本报告将有助于更好地了解中国大豆制品中发现的安全危害,并揭示了 - 吡啶二酸和曲酸在减少多菌灵使用方面的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b3a/9518069/8a9570f2aca2/ijerph-19-10531-g001.jpg

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