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The Cooperative and Interdependent Roles of GerA, GerK, and Ynd in Germination of Bacillus licheniformis Spores

机译:GerA,GerK和Ynd在地衣芽孢杆菌孢子萌发中的合作和相互依赖的作用

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When nutrients are scarce, Bacillus species form metabolically dormant and extremely resistant spores that enable survival over long periods of time under conditions not permitting growth. The presence of specific nutrients triggers spore germination through interaction with germinant receptors located in the spore's inner membrane. Bacillus licheniformis is a biotechnologically important species, but it is also associated with food spoilage and food-borne disease. The B. licheniformis ATCC 14580/DSM13 genome exhibits three gerA family operons ( gerA , gerK , and ynd ) encoding germinant receptors. We show that spores of B. licheniformis germinate efficiently in response to a range of different single l-amino acid germinants, in addition to a weak germination response seen with d-glucose. Mutational analyses revealed that the GerA and Ynd germination receptors function cooperatively in triggering an efficient germination response with single l-amino acid germinants, whereas the GerK germination receptor is essential for germination with d-glucose. Mutant spores expressing only GerA and GerK or only Ynd and GerK show reduced or severely impaired germination responses, respectively, with single l-amino acid germinants. Neither GerA nor Ynd could function alone in stimulating spore germination. Together, these results functionally characterize the germination receptor operons present in B. licheniformis . We demonstrate the overlapping germinant recognition patterns of the GerA and Ynd germination receptors and the cooperative functionalities between GerA, Ynd, and GerK in inducing germination.IMPORTANCE To ensure safe food production and durable foods, there is an obvious need for more knowledge on spore-forming bacteria. It is the process of spore germination that ultimately leads to food spoilage and food poisoning. Bacillus licheniformis is a biotechnologically important species that is also associated with food spoilage and food-borne disease. Despite its importance, the mechanisms of spore germination are poorly characterized in this species. This study provides novel knowledge on germination of B. licheniformis spores. We characterize the germinant recognition profiles of the three germinant receptors present in B. licheniformis spores and demonstrate that the GerA germinant receptor cooperates with the Ynd and GerK germinant receptors to enable an effective germination response to l-amino acids. We also demonstrate that GerK is required for germination in response to the single germinant glucose. This study demonstrates the complex interactions between germinant receptors necessary for efficient germination of B. licheniformis spores.
机译:当营养缺乏时,芽孢杆菌会形成代谢性休眠和极强抗性的孢子,这些孢子能够在不允许生长的条件下长期存活。特定营养物质的存在通过与位于孢子内膜的发芽受体相互作用而触发孢子萌发。地衣芽孢杆菌是生物技术上重要的物种,但它也与食物腐败和食源性疾病有关。地衣芽孢杆菌ATCC 14580 / DSM13基因组展示了三个gerA家族操纵子(gerA,gerK和ynd)编码的发芽受体。我们显示地衣芽孢杆菌的孢子有效地萌发,以响应一系列不同的单个l-氨基酸发芽剂,除了弱的发芽反应与d-葡萄糖。突变分析表明,GerA和Ynd萌发受体协同作用,可以触发单个L-氨基酸发芽剂的有效萌发反应,而GerK萌发受体对于d-葡萄糖的萌发至关重要。仅使用单个l-氨基酸发芽剂,仅表达GerA和GerK或仅Ynd和GerK的突变体孢子分别显示出降低或严重受损的发芽反应。 GerA和Ynd都不能单独发挥刺激孢子萌发的作用。总之,这些结果在功能上表征了地衣芽孢杆菌中的萌发受体操纵子。我们证明了GerA和Ynd萌发受体的重叠萌芽识别模式以及GerA,Ynd和GerK之间在诱导萌发中的协同功能。重要事项为了确保安全的食品生产和耐久的食品,显然需要更多的孢子知识。形成细菌。孢子萌发的过程最终导致食物变质和食物中毒。地衣芽孢杆菌是生物技术上重要的物种,也与食物腐败和食源性疾病有关。尽管它的重要性,但在该物种中孢子萌发的机制却很少。这项研究提供了有关地衣芽孢杆菌孢子萌发的新知识。我们表征了在地衣芽孢杆菌孢子中存在的三种萌发受体的萌发识别图谱,并证明了GerA萌发受体与Ynd和GerK萌发受体协同作用,能够对l-氨基酸进行有效的萌发反应。我们还证明了GerK是发芽所必需的,以响应单个发芽葡萄糖。这项研究证明了地衣芽孢杆菌孢子有效萌发所必需的发芽受体之间的复杂相互作用。

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