Ye Shaopan, Yu Xiaoyan, Chen Huiying, Zhang Yin, Wu Qingyang, Tan Huaqiang, Song Jun, Saqib Hafiz Sohaib Ahmed, Farhadi Ardavan, Ikhwanuddin Mhd, Ma Hongyu
Guangdong Provincial Key Laboratory of Marine Biotechnology, Shantou University, Shantou 515063, China.
STU-UMT Joint Shellfish Research Laboratory, Shantou University, Shantou 515063, China.
Biology (Basel). 2022 Jul 7;11(7):1026. doi: 10.3390/biology11071026.
The lack of high-quality juvenile crabs is the greatest impediment to the growth of the mud crab () industry. To obtain high-quality hybrid offspring, a novel hybrid mud crab ( ♀ × ♂) was successfully produced in our previous study. Meanwhile, an interesting phenomenon was discovered, that some first-generation (F1) hybrid offspring's eyestalks were displaced during the crablet stage I. To uncover the genetic mechanism underlying eyestalk displacement and its potential implications, both single-molecule real-time (SMRT) and Illumina RNA sequencing were implemented. Using a two-step collapsing strategy, three high-quality reconstructed transcriptomes were obtained from purebred mud crabs () with normal eyestalks (SPA), hybrid crabs with normal eyestalks (NH), and hybrid crabs with displaced eyestalks (DH). In total, 37 significantly differential alternative splicing (DAS) events (17 up-regulated and 20 down-regulated) and 1475 significantly differential expressed transcripts (DETs) (492 up-regulated and 983 down-regulated) were detected in DH. The most significant DAS events and DETs were annotated as being endoplasmic reticulum chaperone BiP and leucine-rich repeat protein lrrA-like isoform X2. In addition, the top ten significant GO terms were related to the cuticle or chitin. Overall, high-quality reconstructed transcriptomes were obtained for the novel interspecific hybrid crab and provided valuable insights into the genetic mechanisms of eyestalk displacement in mud crab ( spp.) crossbreeding.
优质幼蟹的匮乏是青蟹养殖业发展的最大障碍。为了获得优质的杂交后代,我们在先前的研究中成功培育出了一种新型杂交青蟹(♀×♂)。与此同时,还发现了一个有趣的现象,即一些第一代(F1)杂交后代在第一期幼蟹阶段出现眼柄移位。为了揭示眼柄移位背后的遗传机制及其潜在影响,我们实施了单分子实时(SMRT)测序和Illumina RNA测序。采用两步拼接策略,从眼柄正常的纯种青蟹(SPA)、眼柄正常的杂交蟹(NH)和眼柄移位的杂交蟹(DH)中获得了三个高质量的重构转录组。在DH中总共检测到37个显著差异可变剪接(DAS)事件(17个上调和20个下调)和1475个显著差异表达转录本(DET)(492个上调和983个下调)。最显著的DAS事件和DET被注释为内质网伴侣蛋白BiP和富含亮氨酸重复蛋白lrrA样异构体X2。此外,排名前十的显著GO术语与表皮或几丁质有关。总体而言,我们获得了新型种间杂交青蟹的高质量重构转录组,为青蟹(spp.)杂交中眼柄移位的遗传机制提供了有价值的见解。