Huang Yong-Fang, Liu Lin, Wang Fei, Yuan Xin-Wei, Chen Huan-Chun, Liu Zheng-Fei
State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, Hubei, China.
Wuhan Frasergen Bioinformatics Co., Ltd., Wuhan, Hubei, China.
Microbiol Spectr. 2023 Feb 27;11(2):e0429022. doi: 10.1128/spectrum.04290-22.
The three-dimensional (3D) genome structure of an organism or cell is highly relevant to its biological activities, but the availability of 3D genome information for bacteria, especially intracellular pathogens, is still limited. Here, we used Hi-C (high-throughput chromosome conformation capture) technology to determine the 3D chromosome structures of exponential- and stationary-phase Brucella melitensis at a 1-kb resolution. We observed that the contact heat maps of the two B. melitensis chromosomes contain a prominent diagonal and a secondary diagonal. Then, 79 chromatin interaction domains (CIDs) were detected at an optical density at 600 nm (OD) of 0.4 (exponential phase), with the longest CID being 106 kb and the shortest being 12 kb. Moreover, we obtained 49,363 significant -interaction loci and 59,953 significant -interaction loci. Meanwhile, 82 CIDs of B. melitensis at an OD of 1.5 (stationary phase) were detected, with the longest CID being 94 kb and the shortest being 16 kb. In addition, 25,965 significant -interaction loci and 35,938 significant -interaction loci were obtained in this phase. Furthermore, we found that as the B. melitensis cells grew from the logarithmic to the plateau phase, the frequency of short-range interactions increased, while that of long-range interactions decreased. Finally, combined analysis of 3D genome and whole-genome transcriptome (RNA-seq) data revealed that the strength of short-range interactions in Chr1 is specifically and strongly correlated with gene expression. Overall, our study provides a global view of the chromatin interactions in the B. melitensis chromosomes, which will serve as a resource for further study of the spatial regulation of gene expression in Brucella. The spatial structure of chromatin plays important roles in normal cell functions and in the regulation of gene expression. Three-dimensional genome sequencing has been performed in many mammals and plants, but the availability of such data for bacteria, especially intracellular pathogens, is still limited. Approximately 10% of sequenced bacterial genomes contain more than one replicon. However, how multiple replicons are organized within bacterial cells, how they interact, and whether these interactions help to maintain or segregate these multipartite genomes are unresolved issues. Brucella is a Gram-negative, facultative intracellular, and zoonotic bacterium. Except for Brucella suis biovar 3, Brucella species have two chromosomes. Here, we applied Hi-C technology to determine the 3D genome structures of exponential- and stationary-phase Brucella melitensis chromosomes at a 1-kb resolution. Combined analysis of the 3D genome and RNA-seq data indicated that the strength of short-range interactions in B. melitensis Chr1 is specifically and strongly correlated with gene expression. Our study provides a resource to achieve a deeper understanding of the spatial regulation of gene expression in Brucella.
生物体或细胞的三维(3D)基因组结构与其生物学活性高度相关,但细菌尤其是细胞内病原体的3D基因组信息仍然有限。在此,我们使用Hi-C(高通量染色体构象捕获)技术,以1 kb的分辨率确定了指数期和稳定期布鲁氏菌的3D染色体结构。我们观察到,两株布鲁氏菌染色体的接触热图包含一条明显的主对角线和一条次对角线。然后,在600 nm光密度(OD)为0.4(指数期)时检测到79个染色质相互作用结构域(CID),最长的CID为106 kb,最短的为12 kb。此外,我们获得了49363个显著相互作用位点和59953个显著相互作用位点。同时,在OD为1.5(稳定期)时检测到布鲁氏菌的82个CID,最长的CID为94 kb,最短的为16 kb。此外,在此阶段获得了25965个显著相互作用位点和35938个显著相互作用位点。此外,我们发现,随着布鲁氏菌细胞从对数期生长到稳定期,短程相互作用的频率增加,而长程相互作用的频率降低。最后,3D基因组和全基因组转录组(RNA测序)数据的联合分析表明,Chr1中短程相互作用的强度与基因表达具有特异性且强烈的相关性。总体而言,我们的研究提供了布鲁氏菌染色体中染色质相互作用的全局视图,这将为进一步研究布鲁氏菌基因表达的空间调控提供资源。染色质的空间结构在正常细胞功能和基因表达调控中起着重要作用。三维基因组测序已在许多哺乳动物和植物中进行,但细菌尤其是细胞内病原体的此类数据仍然有限。大约10%的已测序细菌基因组包含不止一个复制子。然而,多个复制子在细菌细胞内如何组织、它们如何相互作用以及这些相互作用是否有助于维持或分离这些多分体基因组仍是未解决的问题。布鲁氏菌是一种革兰氏阴性、兼性细胞内寄生的人畜共患病细菌。除猪布鲁氏菌生物变种3外,布鲁氏菌属有两条染色体。在此,我们应用Hi-C技术以1 kb的分辨率确定了指数期和稳定期布鲁氏菌染色体的3D基因组结构。3D基因组和RNA测序数据的联合分析表明,布鲁氏菌Chr1中短程相互作用的强度与基因表达具有特异性且强烈的相关性。我们的研究提供了一个资源,以更深入地了解布鲁氏菌基因表达的空间调控。