珠母贝幼虫运动、自然沉降及摄食行为
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1. 中国水产科学研究院 南海水产研究所, 农业部南海渔业资源开发利用重点实验室, 广东 广州 510300;
2. 上海海洋大学 水产与生命学院, 上海 201306;
3. 余江县画桥中学, 江西 鹰潭 335000

作者简介:

邓正华(1989-),男,研究实习员,硕士,从事海洋贝类遗传育种与苗种繁育研究.E-mail:dengzhenghua89@163.com

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中图分类号:

S968

基金项目:

国家自然科学基金项目(31372525);现代农业(贝类)产业技术体系建设专项项目(CARS-49).


Swimming, natural sedimentation and ingestion of pearl oyster Pinctada margaritifera larvae
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Affiliation:

1. Key Laboratory of South China Sea Fishery Resources Exploitation & Utilization of Ministry of Agriculture;South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China;
2. College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China;
3. Yujiang County Huaqiao Middle School, Yingtan 335000, China

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    摘要:

    主要通过分析幼虫形态变化、幼虫运动、自然沉降及摄食行为等生物学信息,为珠母贝()幼虫培育设施及饵料投喂策略提供优化思路。在显微镜下观察不同日龄幼虫形态变化、幼虫运动状态、测量幼虫运动速率,观察幼虫静置下自然沉降及幼虫对单胞藻摄食过程。结果显示,幼虫依靠面盘外周纤毛摆动维持运动并完成摄食,运动时幼虫开壳朝上,壳顶朝下,面盘伸出壳外牵引幼虫运动。俯视观幼虫绕一定半径的圆顺时针方向运动,垂直方向螺旋上升或下降。水平运动速率范围246.88~3641.94 μm/s,运动速率+37.2690<0.05)。随着幼虫生长,体重增加,面盘逐渐退化,面盘纤毛摆动难以维持幼虫悬浮,静置时幼虫沉降率增加,13 dph(days post hatching,孵化后天数)后沉降至底部的幼虫壳长显著(<0.05)大于悬浮幼虫。幼虫饵料投喂过多,导致饵料不消化或不完全消化就排出体外,以致摄食的饵料不能完全消化利用。

    Abstract:

    The pearl oyster is noted for producing the largest and most valuable colored pearls in the world. In French Polynesia, is the most important aquaculture species, far ahead of any other main food species. Indeed, the pearl culture industry plays a major economic role and represents the largest export industry in the region. Traditionally, culture has been based on spat collected from the wild, which are then on-grown to a suitable size prior to seeding for pearl production. However, in a number of Pacific countries, the abundance of adult pearl oysters is low and there is limited natural spatfall. Hatchery production has been considered as an important alternative to wild spat collection for pearling industries. However, high mortality rates during spatfall and a few days after settlement have been limiting factors. This study was conducted using larvae at different stages to observe their swimming behavior, swimming speed, natural sedimentation, and the filtering of microalgae under an optical microscope, so as to provide information for optimizing larval breeding facilities and feeding strategies. The results showed that the larvae swim and filter microalgae by beating their cilia. When functional, the double shells on the top of the larvae open with the umbo toward the bottom, and the velum projecting from back of the shell is used to propel the body when swimming. Larvae swim around clockwise in circles of a certain radius, and in the vertical direction the larvae swim in a spiral either rising or falling. The 1~25-day-old post-hatch (dph) larvae have a horizontal swimming speed ranging from 246.88 μm/s to 3641.94 μm/s, and the relationship between shell length 2 +37.2690 P<0.05) positive correlation between the swimming speed and the surrounding radius. With an increase in body weight and degeneration of the velum, the velum can no longer be used for larval swimming, which causes an increase in the natural sedimentation rate, and at 13 dph the shell length of larvae settled on the bottom substrate was significantly (<0.05) larger than that when in suspension. Excessive ingestion of baits would lead to indigestion, with bait being directly excreted from the body without being fully digested and exploited.

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邓正华,李海梅,张博,苏家齐,刘宝锁,范嗣刚,周凤,吴开畅,喻达辉.珠母贝幼虫运动、自然沉降及摄食行为[J].中国水产科学,2018,25(1):116-123
DENG Zhenghua, LI Haimei, ZHANG Bo, SU Jiaqi, LIU Baosuo, FAN Sigang, ZHOU Feng, WU Kaichang, YU Dahui. Swimming, natural sedimentation and ingestion of pearl oyster Pinctada margaritifera larvae[J]. Journal of Fishery Sciences of China,2018,25(1):116-123

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  • 在线发布日期: 2018-01-19
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