Hua Lixia, Ye Pengsheng, Li Xue, Xu Hanhong, Lin Fei
Industrial Crop Research Institute, Sichuan Academy of Agricultural Sciences, Chengdu 610300, China.
Key Laboratory of Integrated Pest Management on Crops in Southwest of Ministry of Agriculture and Rural Affairs, Chengdu 610066, China.
Microorganisms. 2024 Aug 23;12(9):1754. doi: 10.3390/microorganisms12091754.
The productivity and quality of agricultural crops worldwide are adversely affected by disease outbreaks and inadequate nutrient availability. Of particular concern is the potential increase in mycotoxin prevalence due to crop diseases, which poses a threat to food security. Microorganisms with multiple functions have been favored in sustainable agriculture to address such challenges. is a prevalent aflatoxin B (AFB)-producing fungus in China. Therefore, we wanted to obtain an anti-aflatoxigenic bacterium with potent mycotoxin detoxification ability and other beneficial properties. In the present study, we have isolated an anti-aflatoxigenic strain, BC11-1, of , from a forest rhizosphere soil sample obtained in Luzhou, Sichuan Province, China. We found that it possesses several beneficial properties, as follows: (1) a broad spectrum of antifungal activity but compatibility with species, which are themselves used as biocontrol agents, making it possible to use in a biocontrol mixture or individually with other biocontrol agents in an integrated management approach; (2) an exhibited mycotoxin detoxification capacity with a degradation ratio of 90% for aflatoxin B and 78% for zearalenone, suggesting its potential for remedial application; and (3) a high ability to solubilize phosphorus and produce cytokinin production, highlighting its potential as a biofertilizer. Overall, the diverse properties of BC11-1 render it a beneficial bacterium with excellent potential for use in plant disease protection and mycotoxin prevention and as a biofertilizer. Lastly, a pan-genomic analysis suggests that BC11-1 may possess other undiscovered biological properties, prompting further exploration of the properties of this unique strain of . These findings highlight the potential of using the anti-aflatoxigenic strain BC11-1 to enhance disease protection and improve soil fertility, thus contributing to food security. Given its multiple beneficial properties, BC11-1 represents a valuable microbial resource as a biocontrol agent and biofertilizer.
全球农作物的产量和质量受到疾病爆发和养分供应不足的不利影响。特别令人担忧的是,作物疾病可能导致霉菌毒素流行率上升,这对粮食安全构成威胁。具有多种功能的微生物在可持续农业中受到青睐,以应对此类挑战。在中国是一种普遍产生黄曲霉毒素B(AFB)的真菌。因此,我们希望获得一种具有强大霉菌毒素解毒能力和其他有益特性的抗黄曲霉毒素细菌。在本研究中,我们从中国四川省泸州市采集的森林根际土壤样本中分离出了一种抗黄曲霉毒素菌株BC11-1。我们发现它具有以下几种有益特性:(1)具有广谱抗真菌活性,但与本身用作生物防治剂的物种具有兼容性,这使得它有可能在生物防治混合物中使用,或与其他生物防治剂单独用于综合管理方法;(2)表现出霉菌毒素解毒能力,对黄曲霉毒素B的降解率为90%,对玉米赤霉烯酮的降解率为78%,表明其具有补救应用的潜力;(3)具有高解磷能力和细胞分裂素产生能力,突出了其作为生物肥料的潜力。总体而言,BC11-1的多种特性使其成为一种有益细菌,在植物病害保护和霉菌毒素预防以及作为生物肥料方面具有出色的潜力。最后,泛基因组分析表明BC11-1可能具有其他未发现的生物学特性,促使人们进一步探索这种独特菌株的特性。这些发现突出了使用抗黄曲霉毒素菌株BC11-1增强病害保护和改善土壤肥力的潜力,从而有助于粮食安全。鉴于其多种有益特性,BC11-1作为生物防治剂和生物肥料代表了一种有价值的微生物资源。