Department of Microbiology, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.
Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.
mBio. 2021 Feb 2;12(1):e03402-20. doi: 10.1128/mBio.03402-20.
is the primary cause of onion center rot. Genetic data suggest that a phosphonic acid natural product is required for pathogenesis; however, the nature of the molecule is unknown. Here, we show that produces at least three phosphonates, two of which were purified and structurally characterized. The first, designated pantaphos, was shown to be 2-(hydroxy[phosphono]methyl)maleate; the second, a probable biosynthetic precursor, was shown to be 2-(phosphonomethyl)maleate. Purified pantaphos is both necessary and sufficient for the hallmark lesions of onion center rot. Moreover, when tested against mustard seedlings, the phytotoxic activity of pantaphos was comparable to the widely used herbicides glyphosate and phosphinothricin. Pantaphos was also active against a variety of human cell lines but was significantly more toxic to glioblastoma cells. Pantaphos showed little activity when tested against a variety of bacteria and fungi. is a significant plant pathogen that targets a number of important crops, a problem that is compounded by the absence of effective treatments to prevent its spread. Our identification of pantaphos as the key virulence factor in onion center rot suggests a variety of approaches that could be employed to address this significant plant disease. Moreover, the general phytotoxicity of the molecule suggests that it could be developed into an effective herbicide to counter the alarming rise in herbicide-resistant weeds.
是洋葱黑心腐烂的主要原因。遗传数据表明,一种膦酸天然产物是致病所必需的;然而,该分子的性质尚不清楚。在这里,我们表明 产生至少三种膦酸盐,其中两种已被纯化并进行了结构表征。第一种,命名为 pantaphos,被证明是 2-(羟膦酰基甲基)马来酸;第二种,一种可能的生物合成前体,被证明是 2-(膦酰甲基)马来酸。纯化的 pantaphos 既是洋葱黑心腐烂标志性病变所必需的,也是充分的。此外,当测试对芥菜幼苗时,pantaphos 的植物毒性活性与广泛使用的除草剂草甘膦和膦丝菌素相当。pantaphos 对各种人类细胞系也具有活性,但对神经胶质瘤细胞的毒性明显更大。pantaphos 对各种细菌和真菌的活性较低。是一种重要的植物病原体,针对许多重要作物,由于缺乏有效的治疗方法来阻止其传播,这个问题更加复杂。我们鉴定 pantaphos 为洋葱黑心腐烂的关键毒力因子,这表明可以采用多种方法来解决这一重大植物病害。此外,该分子的普遍植物毒性表明,它可以被开发成一种有效的除草剂,以应对令人震惊的抗除草剂杂草的上升。