Jia Chenghao, Zhang Yue, Xu Qiang, Sun Chunyang, Wang Yanan, Gao Fei
State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan University, Haikou 570228, China.
College of Ecology and Environment, Hainan University, Haikou 570228, China.
Animals (Basel). 2022 Sep 5;12(17):2303. doi: 10.3390/ani12172303.
In this study, the eukaryotic composition of gut contents in three tropical sea cucumber species, , and were surveyed and compared by metabarcoding analysis based on 18S rRNA gene V4 region. The sequences were assigned to 21.80 ± 1.07, 22.60 ± 0.68 and 22.40 ± 0.25 different phyla from the gut contents of , and respectively, and those in sediment samples were assigned to 21.00 ± 1.67 phyla. The results of α-diversity showed that surface sediments had a greater eukaryotic diversity than gut contents, yet the guts of sea cucumbers had an enrichment effect on some microorganisms, including Diatomea and Apicomplex. A comparison of the gut eukaryotic community among the three species suggested that the feeding preference was different: fed mainly on Diatomea and Arthropoda, and the other two species had higher Apicomplexa concentrations, which may be due to differences in the morphology of the tentacles and habitat preferences. Moreover, obvious different eukaryotic community composition in the gut contents of the three sea cucumber species and the surrounding sediments also might result from the animals' selective feeding for sediment patches. The current study filled in gaps about feeding mechanisms of tropical sea cucumbers and provided a basis for further exploring the mechanism about selective feeding and sea cucumber-sediment interaction in the future.
在本研究中,通过基于18S rRNA基因V4区域的宏条形码分析,对三种热带海参( 、 和 )肠道内容物的真核生物组成进行了调查和比较。从 、 和 的肠道内容物中分别鉴定出21.80±1.07、22.60±0.68和22.40±0.25个不同的门,而沉积物样本中的序列被鉴定为21.00±1.67个门。α多样性结果表明,表层沉积物的真核生物多样性高于肠道内容物,但海参肠道对某些微生物具有富集作用,包括硅藻纲和顶复门。对这三种海参肠道真核生物群落的比较表明,它们的摄食偏好不同: 主要以硅藻纲和节肢动物为食,而另外两种海参的顶复门浓度较高,这可能是由于触手形态和栖息地偏好的差异所致。此外,三种海参肠道内容物与周围沉积物中明显不同的真核生物群落组成,也可能是由于动物对沉积物斑块的选择性摄食所致。本研究填补了热带海参摄食机制方面的空白,并为未来进一步探索选择性摄食和海参-沉积物相互作用的机制提供了依据。