生物
转录组
牡蛎
牡蛎
太平洋牡蛎
免疫系统
幼虫
儿茶酚胺能
热休克蛋白
动物
基因表达
基因
细胞生物学
微生物学
免疫学
生态学
遗传学
内分泌学
儿茶酚胺
作者
Zhaoqun Liu,Lingling Wang,Zhi Zhou,Yu Liu,Miren Dong,Weilin Wang,Xiaorui Song,Mengqiang Wang,Qiang Gao,Linsheng Song
标识
DOI:10.1016/j.dci.2017.03.005
摘要
Bacterial infection and heat stress, as two major environmental threats of marine molluscs, could affect larval development and dramatically promote mortality of oysters. In the present study, next-generation sequencing, together with determinations of mRNA expression and measurements of enzyme activities, were employed to understand the response patterns of oyster larvae under acute heat and bacterial stress. After RNA-seq, a total of 9472 differentially expressed genes including 4895 significantly up-regulated ones and 4577 significantly down-regulated ones were obtained from 12 transcriptome libraries. GO overrepresentation analysis of the up-regulated genes revealed that the neuroendocrine immunomodulation pathway was activated after acute heat and bacterial stimulation, in which the catecholaminergic regulation played an important role. GO overrepresentation analysis of the down-regulated genes suggested that the immune capacity of Crassostrea gigas larvae was suppressed under stress, which was further validated since superoxide dismutase (SOD) and phenoloxidase (PO) activities in the total protein extract of larvae decreased dramatically after stress. Moreover, the shell formation of trochophore was inhibited and severe mortality was caused after acute heat and bacterial stress. These results collectively indicated that acute heat and bacterial stress could significantly inhibit larval development and suppress immune response of oyster C. gigas larvae. And the neuroendocrine immunomodulation, especially the catecholaminergic regulation, played an indispensable role in the stress response of molluscan larvae.
科研通智能强力驱动
Strongly Powered by AbleSci AI