光照强度对青色系与红色系仿刺参生长与能量分配的影响
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1. 中国海洋大学 海水养殖教育部重点实验室, 山东 青岛 2660032. 山东大学 (威海)海洋学院, 山东 威海 264209

作者简介:

张鹏(1979-), 男, 在读博士, 从事海水养殖生态学和海洋生物学研究. E-mail: feilong0631@sdu.edu.cn

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S968.9

基金项目:

国家自然科学基金资助项目(30771661).


Effect of light intensity on the growth and energy allocation of green and red variants of Apostichopus japonicas Selenka
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1. College of Fisheries, Ocean University of China, Qingdao 266003, China;2. Weihai College, Shandong University, Weihai 264209, China

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    摘要:

    (6.28±0.02) g、和对照组两种色系仿刺参生长速度与光强呈负相关)抑制仿刺参的摄食率<0.05)不存在显著差异>0.05(分析青色系仿刺参作为对比

    Abstract:

    We evaluated the effect of light intensity on the specific growth rate (SGR), food intake (FI), food conversion efficiency (FCE), and the energy budget of red and green variants of the sea cucumber . We reared 96 green (6.28 g ± 0.02 g) and 96 red (6.34 g ± 0.04 g) individuals under six light intensities (0, 50, 300, 1 000, 2 000, or 3 500 lx) for 60 d at 16. Light intensity had a significant effect on specific growth rate (SGR) (3 500 lx, there was a negative relationship between the SGR of sea cucumber and illumination intensity. Both red and green variants grew fastest (<0.05) were observed in individuals reared under 50 lx. Stronger light intensity inhibits FI and reduces the efficiency of food conversion. The lower FCE under stronger intensity lighting may be function of the oxygen consumption rate (OCR). Our results suggest that OCR is significantly affected by light intensity (<0.05). The minimum OCR was observed in animals reared under 50 lx, suggesting that little energy was expended on respiration, with most being invested in growth. Energy metabolism was significantly affected by light intensity ( allocate 7% for growth and 90% for respiration and production of feces. As light intensity increases, the energy allocated to growth decreases and is instead diverted to respiration and production of feces.

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张鹏,董双林.光照强度对青色系与红色系仿刺参生长与能量分配的影响[J].中国水产科学,2013,20(4):778-784
ZHANG Peng, DONG Shuanglin. Effect of light intensity on the growth and energy allocation of green and red variants of Apostichopus japonicas Selenka[J]. Journal of Fishery Sciences of China,2013,20(4):778-784

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  • 在线发布日期: 2013-07-18
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