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首页> 外文期刊>Environmental microbiology >Ablation of the creA regulator results in amino acid toxicity, temperature sensitivity, pleiotropic effects on cellular development and loss of virulence in the filamentous fungus Beauveria bassiana
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Ablation of the creA regulator results in amino acid toxicity, temperature sensitivity, pleiotropic effects on cellular development and loss of virulence in the filamentous fungus Beauveria bassiana

机译:creA调节剂的消除导致氨基酸毒性,温度敏感性,对细胞发育的多效性作用以及丝状真菌球孢白僵菌的毒力丧失。

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摘要

For most organisms, carbon and nitrogen uptake are essential for growth, development and, where applicable, pathogenesis. The role of the carbon catabolite repressor transcription factor homologue BbcreA in the entomopathogenic fungus Beauveria bassiana was investigated. Deletion of BbcreA resulted in pleiotropic effects, including nutrient toxicity, leading to a novel cell lytic phenotype. Fungal growth in rich media and minimal media containing select amino acids/peptides was severely compromised, with microscopic examination revealing conidialbase germ tube degeneration and cell lysis occurring during growth, a phenomenon exacerbated at higher temperatures (32°C). Depending upon nutrient conditions, growth, pigment and aerial mycelium production, sporulation and dimorphic transition to blastospore production were also impaired in the ΔBbcreA strain. Although loss of BbcreA resulted in de-repression of secreted protease and lipase, enzymes critical in mediating pathogenesis, insect bioassays indicated severe defects in virulence using both topical and intra-haemocoel injection assays, with eruption and subsequent sporulation on host cadavers greatly reduced in the mutant. These data suggest that BbcreA functions as more than a carbon repressor and plays important roles in nutrient utilization, cell homeostasis and virulence. In particular, BbcreA is required for proper assimilation of select amino acids and peptides, including asparagine, arginine and proline.
机译:对于大多数生物而言,碳和氮的吸收对于生长,发育以及在可能的情况下的发病机理至关重要。研究了碳分解代谢物阻遏物转录因子同源物BbcreA在昆虫病原性球孢白僵菌中的作用。 BbcreA的删除导致多效性的影响,包括营养毒性,导致新的细胞溶解表型。在富含培养基和含有所选氨基酸/肽的基本培养基中的真菌生长受到严重损害,显微镜检查显示,分生孢子基胚芽管变性和细胞裂解在生长过程中发生,这种现象在较高温度下(32°C)加剧。根据营养条件,ΔBbcreA菌株也会损害其生长,色素和气生菌丝体的产生,孢子形成和向芽孢杆菌产生的二态转变。尽管BbcreA的丧失导致分泌的蛋白酶和脂肪酶的失活,这些酶是介导发病机理的关键酶,但是昆虫生物测定表明,局部和血红素内注射测定均显示出严重的毒力缺陷,宿主尸体的喷发和随后的孢子形成大大减少。突变体。这些数据表明,BbcreA的作用不仅是碳阻遏剂,而且在营养物利用,细胞稳态和毒力中起重要作用。特别是,BbcreA是特定氨基酸和多肽(包括天冬酰胺,精氨酸和脯氨酸)正确同化所必需的。

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