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Use of Microcalorimetry To Determine the Costs and Benefits to Pseudomonas putida Strain KT2440 of Harboring Cadmium Efflux Genes

机译:使用微量热法确定携带镉外流基因的恶臭假单胞菌菌株KT2440的成本和收益

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摘要

A novel microcalorimetric approach was used to analyze the responses of a metal-tolerant soil bacterium (Pseudomonas putida strain KT2440) to metal resistance gene deletions in cadmium-amended media. As hypothesized, under cadmium stress, the wild-type strain benefited from the resistance genes by entering the exponential growth phase earlier than two knockout strains. In the absence of cadmium, strain KT1, carrying a deletion in the main component (czcA1) of a Cd/Zn chemiosmotic efflux transporter (CzcCBA1), grew more efficiently than the wild type and released ∼700 kJ (per mole of biomass carbon) less heat than the wild-type strain, showing the energetic cost of maintaining CzcCBA1 in the absence of cadmium. A second mutant strain (KT4) carrying a different gene deletion, ΔcadA2, which encodes the main Cd/Pb efflux transporter (a P-type ATPase), did not survive beyond moderate cadmium concentrations and exhibited a decreased growth yield in the absence of cadmium. Therefore, CadA2 plays an essential role in cadmium resistance and perhaps serves an additional function. The results of this study provide direct evidence that heavy metal cation efflux mechanisms facilitate shorter lag phases in the presence of metals and that the maintenance and expression of tolerance genes carry quantifiable energetic costs and benefits.
机译:一种新颖的微量量热方法用于分析金属耐受性土壤细菌(恶臭假单胞菌菌株KT2440)对镉改良培养基中金属抗性基因缺失的响应。如图所示,在镉胁迫下,野生型菌株比两种敲除菌株更早进入指数生长期,从而从抗性基因中受益。在没有镉的情况下,菌株KT1在Cd / Zn化学渗透流出转运蛋白(CzcCBA1)的主要成分(czcA1)中缺失,比野生型生长更有效,释放约700 kJ(每摩尔生物质碳)比野生型菌株少的热量,表明在没有镉的情况下维持CzcCBA1的能源成本。携带不同基因缺失的第二个突变株(KT4)编码主要Cd / Pb外排转运蛋白(P型ATPase)的ΔcadA2,在中等镉浓度下无法存活,并且在没有镉的情况下表现出降低的产量。因此,CadA2在抗镉性中起着至关重要的作用,并且可能还具有其他功能。这项研究的结果提供了直接的证据,即重金属阳离子外流机理促进了金属存在下较短的滞后阶段,并且耐受基因的维持和表达带来了可量化的能量成本和收益。

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