National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency, Pathum Thani, 12120, Thailand.
National Omics Center, National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency, Pathum Thani, Thailand.
Sci Rep. 2020 Feb 24;10(1):3239. doi: 10.1038/s41598-020-60192-2.
Unilateral eyestalk ablation in the female black tiger shrimp Penaeus monodon is commonly employed to induce ovarian maturation. However, the importance of complementing this practice with the provision of live feed supplement (such as polychaetes) has not been emphasized in previous studies. Indeed, it has been less emphasized that female broodstock must be fed with live feeds such as polychaetes for this practice to be effective. While the effects of eyestalk ablation have been thoroughly studied in various aspects, the synergistic effects of feeding with live feeds and the ablation have never been elucidated at a transcriptome-wide level. With recent advances in the next-generation sequencing platforms, it is now possible to investigate the effects of eyestalk ablation and live feeds at the transcriptomic levels. This study employed both short-read Illumina RNA sequencing and long-read Pacific Biosciences (PacBio) isoform sequencing (Iso-seq) to generate the first high-quality ovarian reference transcriptome in P. monodon. This novel assembly allowed us to dissect the effects of feeds and eyestalk ablation and reveal their synergistic effects at the transcriptomic level through the regulation of important genes involved in fatty acid regulation, energy production, and hormone-mediated oocyte maturation pathways. The synergistic effects between the polychaete feeding and the eyestalk ablation in the process of ovarian maturation in black tiger shrimp suggest that without having proper nutrients from the polychaetes, female broodstock might not be ready to develop its ovary. However, even with proper nutrients, the eyestalk ablation is still necessary to perhaps manipulate the female endocrine of the black tiger shrimp. These findings shed the light on molecular mechanisms and key molecular pathways that lead to successful ovarian maturation.
在雌性斑节对虾 Penaeus monodon 中,单侧眼柄切除通常用于诱导卵巢成熟。然而,在以前的研究中,没有强调补充这种做法与提供活饲料补充(如多毛类)的重要性。事实上,人们较少强调,为了使这种做法有效,雌性亲虾必须用活饲料如多毛类喂养。虽然眼柄切除的影响已经在各个方面进行了深入研究,但在转录组水平上,活饲料喂养和眼柄切除的协同作用从未被阐明过。随着新一代测序平台的最新进展,现在可以在转录组水平上研究眼柄切除和活饲料的影响。本研究采用短读 Illumina RNA 测序和长读 Pacific Biosciences (PacBio) 异构体测序 (Iso-seq) 生成了第一个高质量的斑节对虾卵巢参考转录组。这个新的组装使我们能够解析饲料和眼柄切除的影响,并通过调节参与脂肪酸调节、能量产生和激素介导的卵母细胞成熟途径的重要基因,揭示它们在转录组水平上的协同作用。在斑节对虾卵巢成熟过程中,多毛类喂养和眼柄切除的协同作用表明,如果没有多毛类提供适当的营养,雌性亲虾可能还没有准备好发育卵巢。然而,即使有适当的营养,眼柄切除仍然是必要的,也许可以操纵斑节对虾的雌性内分泌。这些发现揭示了导致成功卵巢成熟的分子机制和关键分子途径。