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Molecular Analysis of the In Situ Growth Rates of Subsurface Geobacter Species

机译:地下土壤细菌物种原位生长速率的分子分析

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Molecular tools that can provide an estimate of the in situ growth rate of Geobacter species could improve understanding of dissimilatory metal reduction in a diversity of environments. Whole-genome microarray analyses of a subsurface isolate of Geobacter uraniireducens , grown under a variety of conditions, identified a number of genes that are differentially expressed at different specific growth rates. Expression of two genes encoding ribosomal proteins, rpsC and rplL , was further evaluated with quantitative reverse transcription-PCR (qRT-PCR) in cells with doubling times ranging from 6.56 h to 89.28 h. Transcript abundance of rpsC correlated best (r~(2) = 0.90) with specific growth rates. Therefore, expression patterns of rpsC were used to estimate specific growth rates of Geobacter species during an in situ uranium bioremediation field experiment in which acetate was added to the groundwater to promote dissimilatory metal reduction. Initially, increased availability of acetate in the groundwater resulted in higher expression of Geobacter rpsC , and the increase in the number of Geobacter cells estimated with fluorescent in situ hybridization compared well with specific growth rates estimated from levels of in situ rpsC expression. However, in later phases, cell number increases were substantially lower than predicted from rpsC transcript abundance. This change coincided with a bloom of protozoa and increased attachment of Geobacter species to solid phases. These results suggest that monitoring rpsC expression may better reflect the actual rate that Geobacter species are metabolizing and growing during in situ uranium bioremediation than changes in cell abundance.
机译:分子工具可以估计土杆菌的原位生长速率,可以增进人们对多种环境中异化金属还原的理解。在各种条件下生长的地下细菌Gurbacter uraniireducens的全基因组微阵列分析确定了许多以不同的特定生长速率差异表达的基因。用定量逆转录PCR(qRT-PCR)进一步评估了两个编码核糖体蛋白的基因rpsC和rplL的表达,倍增时间为6.56 h至89.28 h。 rpsC的转录本丰度与特定生长率相关性最佳(r〜(2)= 0.90)。因此,在原位铀生物修复野外实验中,使用rpsC的表达模式来估算Geobacter菌种的特定生长速率,在该实验中,将醋酸盐添加到地下水中以促进异化金属还原。最初,地下水中醋酸盐的可用性增加导致Geobacter rpsC的表达更高,并且与通过原位rpsC表达水平估算的特定增长率相比,通过荧光原位杂交估计的Geobacter细胞数量增加。但是,在以后的阶段,细胞数量的增加明显低于rpsC转录本丰度的预测。这种变化与原生动物的开花和土杆菌物种对固相的增加相吻合。这些结果表明,监测rpsC的表达可能比反映细胞丰度的变化更好地反映了原位铀生物修复过程中Geobacter菌种代谢和生长的实际速率。

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