Department of Plant Production Technology, School of Agricultural Technology, King Mongkut's Institute of Technology Ladkrabang, Bangkok, 10520, Thailand.
Department of Chemistry, School of Science, King Mongkut's Institute of Technology Ladkrabang, Bangkok, 10520, Thailand.
Sci Rep. 2023 Oct 31;13(1):18693. doi: 10.1038/s41598-023-46201-0.
Thirteen fungi that produce compounds with herbicidal activities were isolated, identified, and extracted under the assumption that the mechanism of action occurs during seed exposure to the extract. The extracts from all the fungal strains considerably decreased the growth parameters of Amaranthus tricolor L. The EC010 strain extracts showed the greatest effect. Through ITS region gene sequencing methods, the isolated EC010 was identified as a genus of Diaporthe. The results showed a significant (p < 0.05) inhibitory effect of 91.25% on germination and a decrease in shoot and root length by 91.28% and 95.30%, respectively. The mycelium of Diaporthe sp. was extracted using sequential extraction techniques for the partial separation of the herbicidal fraction. According to the bioassay activities, the EtOAc fraction showed the highest inhibitory activity. The osmotic stress of the A. tricolor seeds was studied. Although the extract increased the accumulation of proline and soluble protein, the treated seeds showed lower imbibition. While the activity of α-amylase was dramatically decreased after treatment. A cytogenetic assay in the treated Allium cepa L. root revealed a decrease in the mitotic index, an altered mitotic phase index, and a promotion of mitotic abnormalities. Accordingly, the Diaporthe sp. may serve as a potential herbicidal compound resource.
假设作用机制发生在种子暴露于提取物的过程中,我们从 13 种产生除草活性化合物的真菌中进行了分离、鉴定和提取。所有真菌菌株的提取物都显著降低了苋菜的生长参数。EC010 菌株提取物的效果最大。通过 ITS 区基因测序方法,分离出的 EC010 被鉴定为间座壳属。结果表明,其对发芽有显著(p<0.05)的抑制作用,抑制率为 91.25%,对芽长和根长的抑制率分别为 91.28%和 95.30%。采用顺序提取技术提取间座壳菌的菌丝体,对除草部分进行部分分离。根据生物测定活性,乙酸乙酯(EtOAc)部分显示出最高的抑制活性。研究了苋菜种子的渗透胁迫。虽然提取物增加了脯氨酸和可溶性蛋白的积累,但处理过的种子吸胀率较低。处理后,α-淀粉酶的活性显著下降。用处理过的洋葱根尖进行细胞遗传学分析,发现有丝分裂指数下降、有丝分裂相指数改变和有丝分裂异常促进。因此,间座壳菌可能是一种有潜力的除草化合物资源。