Wilmes Paul, Andersson Anders F, Lefsrud Mark G, Wexler Margaret, Shah Manesh, Zhang Bing, Hettich Robert L, Bond Philip L, VerBerkmoes Nathan C, Banfield Jillian F
Department of Earth and Planetary Sciences, University of California at Berkeley, Berkeley, CA 94720, USA.
ISME J. 2008 Aug;2(8):853-64. doi: 10.1038/ismej.2008.38. Epub 2008 May 1.
Enhanced biological phosphorus removal (EBPR) selects for polyphosphate accumulating microorganisms to achieve phosphate removal from wastewater. We used high-resolution community proteomics to identify key metabolic pathways in 'Candidatus Accumulibacter phosphatis' (A. phosphatis)-mediated EBPR and to evaluate the contributions of co-existing strains within the dominant population. Overall, 702 proteins from the A. phosphatis population were identified. Results highlight the importance of denitrification, fatty acid cycling and the glyoxylate bypass in EBPR. Strong similarity in protein profiles under anaerobic and aerobic conditions was uncovered (only 3% of A. phosphatis-associated proteins exhibited statistically significant abundance differences). By comprehensive genome-wide alignment of 13,930 orthologous proteins, we uncovered substantial differences in protein abundance for enzyme variants involved in both core-metabolism and EBPR-specific pathways among the A. phosphatis population. These findings suggest an essential role for genetic diversity in maintaining the stable performance of EBPR systems and, hence, demonstrate the power of integrated cultivation-independent genomics and proteomics for the analysis of complex biotechnological systems.
强化生物除磷(EBPR)通过筛选聚磷积累微生物来实现从废水中去除磷。我们使用高分辨率群落蛋白质组学来鉴定“聚磷菌属(Accumulibacter phosphatis,A. phosphatis)”介导的EBPR中的关键代谢途径,并评估优势菌群中共存菌株的作用。总体而言,共鉴定出702种来自A. phosphatis菌群的蛋白质。结果突出了反硝化作用、脂肪酸循环和乙醛酸旁路在EBPR中的重要性。我们发现厌氧和好氧条件下蛋白质谱具有很强的相似性(只有3%与A. phosphatis相关的蛋白质表现出具有统计学意义的丰度差异)。通过对13930个直系同源蛋白进行全基因组范围的综合比对,我们发现A. phosphatis菌群中参与核心代谢和EBPR特异性途径的酶变体在蛋白质丰度上存在显著差异。这些发现表明遗传多样性在维持EBPR系统稳定性能方面具有重要作用,因此,证明了整合不依赖培养的基因组学和蛋白质组学在分析复杂生物技术系统方面的强大能力。