Effects of temperature on early development of the sea urchin Echinometra mathaei from the intertidal reef of Okinawa Island, Japan

M. Rahman, S. Rahman, T. Uehara
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引用次数: 6

Abstract

Temperature tolerances of the early development (up to 4-arm pluteus) of Echinometra mathaei were investigated at 16-34°C. The critical lower and higher temperatures for embryonic development were 16 and 34°C, respectively. At these two temperatures, 100% of the embryos showed abnormality within 48h after incubation. The lower and higher temperature for development of healthy embryos and larvae were 19°C and 31°C, respectively. The developmental times from the 2-cell to early larval stages showed significant differences among 19 to 31°C. At 19 and 31°C, the embryos reached in healthy 2-arm pluteus stage in 72 and 26h after incubation, respectively. The larval growth performance and relative growth ratios of the different organs of 4-arm larvae showed that they were able to tolerate a wide range of temperature without any abnormality. The present findings will be useful for elucidating the possible mechanisms of larval dispersal, as well as the distribution of this sea urchin in various marine locations worldwide.
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温度对冲绳岛潮间带礁海胆早期发育的影响
研究了马氏棘球蚴(Echinometra mathaei)在16-34°C的早期发育(高达4臂)的温度耐受性。胚胎发育的临界低温和临界高温分别为16℃和34℃。在这两个温度下,100%的胚胎在孵育后48h内出现异常。健康胚胎发育的最低温度为19℃,健康幼虫发育的最高温度为31℃。在19 ~ 31℃条件下,2细胞至早期幼虫期发育时间差异显著。在19°C和31°C条件下,胚胎分别在孵育后72和26h达到健康的2臂pluteus期。四臂幼虫的生长性能和各器官的相对生长比表明,四臂幼虫能够耐受较宽的温度范围而无异常。目前的研究结果将有助于阐明幼虫扩散的可能机制,以及这种海胆在世界各地的分布。
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