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Post-genomic analysis of Streptococcus thermophilus co-cultivated in milk with Lactobacillus delbrueckii ssp. bulgaricus: involvement of nitrogen, purine and iron metabolisms.

机译:与德氏乳杆菌共存于牛奶中的嗜热链球菌的基因组后分析。保加利亚:涉及氮,嘌呤和铁的代谢。

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摘要

Streptococcus thermophilus is one of the most widely used lactic acid bacteria in the dairy industry, in particular in yogurt manufacture where it is associated with Lactobacillus delbrueckii ssp. bulgaricus. This bacterial association, known as a proto-cooperation, is poorly documented at the molecular and the regulatory levels. We thus investigate the kinetics of the transcriptomic and proteomic modifications of S. thermophilus LMG18311 in response to the presence of L. bulgaricus ATCC11842 during growth in milk at 2 growth stages. Seventy-seven different genes or proteins (4.1 % of total CDS), mainly implicated in the metabolism of nitrogen (24%), nucleotide base (21%), and iron (20%), varied specifically in co-culture. One of the most unpredicted results was a significant decrease of most of the transcripts and enzymes involved in purine biosynthesis. Interestingly, the expression of nearly all genes potentially coding iron transporters of S. thermophilus decreased whereas that of iron-chelating dpr as well as fur/perR regulator genes increased, suggesting a reduction in the intracellular iron concentration probably in response to H2O2 production by L. bulgaricus. The present study reveals undocumented nutritional exchanges and regulatory relationships between the two yoghurt bacteria, which provide new molecular clues for the understanding of their associative behaviour.
机译:嗜热链球菌是乳制品工业中最广泛使用的乳酸菌之一,特别是在酸奶制造中,其中与德氏乳杆菌有关。保加利亚这种细菌缔合被称为原型合作,在分子和调控水平上的文献报道很少。因此,我们调查了牛奶中两个生长阶段的保加利亚乳杆菌ATCC11842的存在对嗜热链球菌LMG18311的转录和蛋白质组修饰的动力学。在共培养中,主要涉及氮(24%),核苷酸碱基(21%)和铁(20%)的代谢的77种不同的基因或蛋白质(占总CDS的4.1%)。最不可预测的结果之一是嘌呤生物合成中涉及的大多数转录物和酶的显着减少。有趣的是,几乎所有可能编码嗜热链球菌铁转运蛋白的基因的表达都下降了,而铁螯合的dpr以及fur / perR调节基因的表达却增加了,表明细胞内铁浓度的降低可能是由于L产生H2O2保加利亚本研究揭示了两种酸奶细菌之间未记录的营养交换和调控关系,这为了解它们的关联行为提供了新的分子线索。

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