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RecD Plays an Essential Function During Growth at Low Temperature in the Antarctic Bacterium Pseudomonas syringae Lz4W

机译:RecD在南极细菌丁香假单胞菌Lz4W的低温生长过程中起着至关重要的作用。

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摘要

The Antarctic psychrotrophic bacterium Pseudomonas syringae Lz4W has been used as a model system to identify genes that are required for growth at low temperature. Transposon mutagenesis was carried out to isolate mutant(s) of the bacterium that are defective for growth at 4° but normal at 22°. In one such cold-sensitive mutant (CS1), the transposon-disrupted gene was identified to be a homolog of the recD gene of several bacteria. Trans-complementation and freshly targeted gene disruption studies reconfirmed that the inactivation of the recD gene leads to a cold-sensitive phenotype. We cloned, sequenced, and analyzed ∼11.2 kbp of DNA from recD and its flanking region from the bacterium. recD was the last gene of a putative recCBD operon. The RecD ORF was 694 amino acids long and 40% identical (52% similar) to the Escherichia coli protein, and it could complement the E. coli recD mutation. The recD gene of E. coli, however, could not complement the cold-sensitive phenotype of the CS1 mutant. Interestingly, the CS1 strain showed greater sensitivity toward the DNA-damaging agents, mitomycin C and UV. The inactivation of recD in P. syringae also led to cell death and accumulation of DNA fragments of ∼25–30 kbp in size at low temperature (4°). We propose that during growth at a very low temperature the Antarctic P. syringae is subjected to DNA damage, which requires direct participation of a unique RecD function. Additional results suggest that a truncated recD encoding the N-terminal segment of (1–576) amino acids is sufficient to support growth of P. syringae at low temperature.
机译:南极精神营养细菌丁香假单胞菌Lz4W已被用作模型系统,以鉴定低温生长所需的基因。进行转座子诱变以分离细菌的突变体,所述突变体在4°时生长缺陷但在22°时正常生长。在一个这样的冷敏突变体(CS1)中,转座子破坏的基因被鉴定为几种细菌的recD基因的同源物。反式互补和新近靶向的基因破坏研究再次证实,recD基因的失活会导致冷敏感表型。我们克隆,测序并分析了来自recD及其细菌侧翼区域的约11.2 kbp DNA。 recD是推定的recCBD操纵子的最后一个基因。 RecD ORF为694个氨基酸长,与大肠杆菌蛋白相同40%(52%相似),并且可以补充大肠杆菌recD突变。然而,大肠杆菌的recD基因不能补充CS1突变体的冷敏感表型。有趣的是,CS1菌株对DNA破坏剂丝裂霉素C和紫外线表现出更高的敏感性。丁香假单胞菌中recD的失活还导致细胞死亡和低温(4°)时约25–30 kbp大小的DNA片段的积累。我们建议在极低温度下生长的南极丁香假单胞菌遭受DNA损伤,这需要直接参与独特的RecD功能。其他结果表明,编码(1-576)个氨基酸N末端区段的截短recD足以支持丁香假单胞菌在低温下的生长。

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