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作 者:张悦 张文羿[1,2] ZHANG Yue;ZHANG Wenyi(Key Laboratory of Dairy Biotechnology and Engineering,Ministry of Education,Inner Mongolia Agricultural University,Hohhot 010018,China;Key Laboratory of Dairy Products Processing,Ministry of Agriculture and Rural Affairs,Inner Mongolia Agricultural University,Hohhot 010018,China)
机构地区:[1]内蒙古农业大学乳品生物技术与工程教育部重点实验室,内蒙古呼和浩特010018 [2]内蒙古农业大学农业农村部奶制品加工重点实验室,内蒙古呼和浩特010018
出 处:《食品与生物技术学报》2023年第12期10-17,共8页Journal of Food Science and Biotechnology
基 金:国家自然科学基金项目(31922071);内蒙古自治区自然科学基金项目(2021ZD08)。
摘 要:DNA甲基化作为表观遗传学的重要组成部分,在细菌的很多生理过程中发挥着重要作用。作者基于超高效液相色谱-质谱联用非靶向代谢组学技术,比较DNA甲基转移酶突变体Lactobacillus casei(L.casei)ZhangΔpglX与野生型L.casei Zhang在对数生长前期(4 h)的代谢差异。共鉴定得到23个显著差异代谢物(P<0.05),主要富集在氨酰-tRNA生物合成、不饱和脂肪酸生物合成、D-谷氨酰胺和D-谷氨酸代谢及半乳糖代谢等代谢途径。结果表明,DNA甲基化表型在对数生长前期可能会影响菌株对氨基酸的合成和利用;另一方面,DNA甲基化表型在对数生长前期可能会调节菌株细胞膜脂肪酸成分,改变细胞膜的通透性和流动性。As a crucial part of epigenetics,DNA methylation plays an indispensable role in various physiological processes in bacteria.Here,we compared the metabonomics of DNA methylation of mutant strain Lactobacillus casei(L.casei)ZhangΔpglX and wild strain L.casei Zhang in the early logarithmic growth phase(4 h)using ultra-performance liquid chromatography-mass spectrometry(UPLC-MS)non-targeted metabolomics technology.A total of twenty-three significantly different metabolites were identified(P<0.05),primarily enriched in pathways such as aminoacyl-tRNA biosynthesis,un-saturate fatty acids biosynthesis,D-glutamine and D-glutamate metabolism,and galactose metabolism.The results suggest that DNA methylation phenotype may affect the synthesis and utilization of amino acids in bacterial strains during early logarithmic growth.On the other hand,DNA methylation phenotypes may modulate the composition of cellular membrane fatty acids,altering membrane permeability and fluidity.
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