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通过转录组学和蛋白质组学联合分析揭示,在 NaCl 和紫外线诱变处理下,ABC 转运蛋白的表达与嗜盐菌中海盐单胞菌中海盐嘧啶核苷的生物合成呈负相关。

Expression of ABC transporters negatively correlates with ectoine biosynthesis in Halomonas campaniensis under NaCl and ultraviolet mutagenesis treatments revealed by transcriptomic and proteomics combined analysis.

机构信息

College of Life Sciences, Northwest A&F University, Yangling, 810016, China.

Research Centre of Basic Medical Sciences, Medical College, Qinghai University, Xining, 810016, China.

出版信息

BMC Genomics. 2024 Nov 20;25(1):1114. doi: 10.1186/s12864-024-11003-9.

Abstract

Halomonas species are renowned for their production of organic compatible solutes, particularly ectoine. However, the identification of key regulatory genes governing ectoine production in Halomonas remains limited. In this study, we conducted a combined transcriptome-proteome analysis to unveil additional regulatory genes influencing ectoine biosynthesis, particularly under ultraviolet (UV) and salt conditions. NaCl induction resulted in a 20-fold increase, while UV treatment led to at least 2.5-fold increases in ectoine production. The number of overlapping genes between transcriptomic and proteomic analyses for three comparisons, i.e., non-UV with NaCl (UV0-NaCl) vs. non-UV without NaCl (UV0), UV strain 1 (UV1-NaCl) vs. UV0-NaCl, and UV strain 2 (UV2-NaCl) vs. UV0-NaCl were 137, 19, and 21, respectively. The overlapped Gene Ontology (GO) enrichments between transcriptomic and proteomic analyses include ATPase-coupled organic phosphonate, phosphonate transmembrane transporter activity, and ATP-binding cassette (ABC) transport complex in different comparisons. Furthermore, five common genes exhibited different expression patterns at mRNA and protein levels across the three comparisons. These genes included orf01280, orf00986, orf01283, orf01282 and orf01284. qPCR verification confirmed that three of the five common genes were notably under-expressed following NaCl and UV treatments. This study highlighted the potential role of these five common genes in regulating ectoine production in Halomonas strains.

摘要

海洋盐单胞菌属以生产有机兼容溶质而闻名,特别是章鱼胺。然而,对于控制海洋盐单胞菌属章鱼胺生产的关键调控基因的鉴定仍然有限。在这项研究中,我们进行了联合转录组-蛋白质组分析,以揭示影响章鱼胺生物合成的其他调控基因,特别是在紫外线(UV)和盐条件下。NaCl 诱导导致产量增加了 20 倍,而 UV 处理导致产量至少增加了 2.5 倍。三个比较(非 UV 与 NaCl(UV0-NaCl)与非 UV 无 NaCl(UV0)、UV 菌株 1(UV1-NaCl)与 UV0-NaCl 和 UV 菌株 2(UV2-NaCl)与 UV0-NaCl 之间转录组和蛋白质组分析的重叠基因数量分别为 137、19 和 21。转录组和蛋白质组分析之间重叠的 Gene Ontology(GO)富集包括不同比较中的 ATP 酶偶联有机膦酸盐、膦酸盐跨膜转运活性和 ABC 转运复合物。此外,五个常见基因在三个比较中在 mRNA 和蛋白质水平上表现出不同的表达模式。这些基因包括 orf01280、orf00986、orf01283、orf01282 和 orf01284。qPCR 验证证实,五个常见基因中有三个在 NaCl 和 UV 处理后表达明显下调。这项研究强调了这五个常见基因在调节海洋盐单胞菌属菌株中章鱼胺生产中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5967/11577897/5256b3dc5677/12864_2024_11003_Fig1_HTML.jpg

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