Kersey Caleb M, Dumenyo C Korsi
Department of Biological, Physical and Human Sciences, Freed-Hardeman University, Henderson, TN 38340, USA.
Departments of Plant Science, Tennessee State University, Campus Box 9543, Nashville, TN 37209, USA.
Microorganisms. 2023 Jul 4;11(7):1747. doi: 10.3390/microorganisms11071747.
(formally ) causes disease on diverse plant species by synthesizing and secreting copious amount of plant-cell-wall-degrading exoenzymes including pectate lyases, polygalacturonases, cellulases, and proteases. Exoenzyme production and virulence are controlled by many factors of bacterial, host, and environmental origin. The ion channel forming the magnesium, nickel, and cobalt transporter CorA is required for exoenzyme production and full virulence in strain Ecc71. We investigated CorA's role as a virulence factor and its expression in . . Inhibiting the transport function of CorA by growing a CorA strain in the presence of specific CorA inhibitor, cobalt (III) hexaammine (Co (III)Hex), has no effect on exoenzyme production. Transcription of , encoding a pectate lyase isozyme, is decreased in the absence of CorA, suggesting that CorA influences exoenzyme production at the transcriptional level, although apparently not through its transport function. CorA and CorA strains grown in the presence of Co (III)Hex transcriptionally express at higher levels than CorA strains in the absence of an inhibitor, suggesting the transport role of contributes to autorepression. The expression of is about four-fold lower in HrpL strains lacking the -specific extracytoplasmic sigma factor. The promoter region contains a sequence with a high similarity to the consensus Hrp box, suggesting that is part of Hrp regulon. Our data suggest a complex role, possibly requiring the physical presence of the CorA protein in the virulence of the strain Ecc71.
(正式地)通过合成并分泌大量降解植物细胞壁的胞外酶,包括果胶酸裂解酶、多聚半乳糖醛酸酶、纤维素酶和蛋白酶,从而对多种植物物种致病。胞外酶的产生和毒力受细菌、宿主和环境来源的多种因素控制。形成镁、镍和钴转运蛋白CorA的离子通道是菌株Ecc71产生胞外酶和完全毒力所必需的。我们研究了CorA作为毒力因子的作用及其在……中的表达。在特定的CorA抑制剂六氨合钴(III)(Co(III)Hex)存在的情况下培养CorA菌株来抑制其转运功能,对胞外酶的产生没有影响。在没有CorA的情况下,编码一种果胶酸裂解酶同工酶的……的转录减少,这表明CorA在转录水平上影响胞外酶的产生,尽管显然不是通过其转运功能。在Co(III)Hex存在的情况下培养的CorA和CorA菌株在转录水平上比没有抑制剂时的CorA菌株更高水平地表达……,这表明……的转运作用有助于自我抑制。在缺乏……特异性胞外σ因子的HrpL菌株中,……的表达大约低四倍。……启动子区域包含一个与共有Hrp框高度相似的序列,这表明……是Hrp调控子的一部分。我们的数据表明了一种复杂的作用,可能需要CorA蛋白在菌株Ecc71的毒力中实际存在。