Oak Ridge Institute for Science and Education, Agricultural Research Service Research Participation Program, Oak Ridge, TN, United States of America.
United States Department of Agriculture, Agricultural Research Service, Aquatic Animal Health Research Unit, Auburn, AL, United States of America.
PLoS One. 2024 Sep 26;19(9):e0309397. doi: 10.1371/journal.pone.0309397. eCollection 2024.
The catfish industry is the largest sector of U.S. aquaculture production. Given its role in food production, the catfish immune response to industry-relevant pathogens has been extensively studied and has provided crucial information on innate and adaptive immune function during disease progression. To further examine the channel catfish immune system, we performed single-cell RNA sequencing on nuclei isolated from whole spleens, a major lymphoid organ in teleost fish. Libraries were prepared using the 10X Genomics Chromium X with the Next GEM Single Cell 3' reagents and sequenced on an Illumina sequencer. Each demultiplexed sample was aligned to the Coco_2.0 channel catfish reference assembly, filtered, and counted to generate feature-barcode matrices. From whole spleen samples, outputs were analyzed both individually and as an integrated dataset. The three splenic transcriptome libraries generated an average of 278,717,872 reads from a mean 8,157 cells. The integrated data included 19,613 cells, counts for 20,121 genes, with a median 665 genes/cell. Cluster analysis of all cells identified 17 clusters which were classified as erythroid, hematopoietic stem cells, B cells, T cells, myeloid cells, and endothelial cells. Subcluster analysis was carried out on the immune cell populations. Here, distinct subclusters such as immature B cells, mature B cells, plasma cells, γδ T cells, dendritic cells, and macrophages were further identified. Differential gene expression analyses allowed for the identification of the most highly expressed genes for each cluster and subcluster. This dataset is a rich cellular gene expression resource for investigation of the channel catfish and teleost splenic immunome.
鲶鱼产业是美国水产养殖生产中最大的部门。鉴于其在食品生产中的作用,鲶鱼对与行业相关的病原体的免疫反应已经得到了广泛的研究,并为疾病进展过程中固有和适应性免疫功能提供了重要信息。为了进一步研究斑点叉尾鮰的免疫系统,我们对来自主要淋巴器官鱼体脾脏的细胞核进行了单细胞 RNA 测序。文库使用 10X Genomics Chromium X 与 Next GEM Single Cell 3'试剂制备,并在 Illumina 测序仪上进行测序。每个去复用样本都与 Coco_2.0 斑点叉尾鮰参考组装对齐,进行过滤和计数,以生成特征条形码矩阵。从整个脾脏样本中,分别分析和综合数据集的输出。三个脾脏转录组文库平均从 8157 个细胞中产生 278717872 个读数。综合数据包含 19613 个细胞,20121 个基因的计数,中位数为 665 个基因/细胞。对所有细胞进行聚类分析,确定了 17 个聚类,分为红细胞、造血干细胞、B 细胞、T 细胞、髓样细胞和内皮细胞。对免疫细胞群进行了亚群分析。在此,进一步鉴定了未成熟 B 细胞、成熟 B 细胞、浆细胞、γδT 细胞、树突状细胞和巨噬细胞等不同的亚群。差异基因表达分析允许鉴定每个聚类和亚聚类中表达最高的基因。该数据集是研究斑点叉尾鮰和硬骨鱼脾脏免疫组的丰富细胞基因表达资源。