首页> 外文期刊>Korean Journal of Fisheries and Aquatic Sciences >Effects of Temperature and Light Intensity on the Gametophyte Fragment Growth of Ecklonia cava Kjellman (Laminariales, Phaeophyta)
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Effects of Temperature and Light Intensity on the Gametophyte Fragment Growth of Ecklonia cava Kjellman (Laminariales, Phaeophyta)

机译:温度和光照强度对Ecklonia cava Kjellman(Laminariales,Phaeophyta)配子体片段生长的影响

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We examined the effects of temperature and light intensity on gametophyte growth of Ecklonia cava Kjellman. The growth of female and male gametophytes was investigated before maturation. Gametophytes prepared from Mun-seom, Jeju, Korea in October 2014were separated by sex and maintained under the following conditions: 15°C, 20 umolm~(-2)-s~(-1) and a 12-h/l2-h light/dark cycle. The experiments were conducted at five temperatures (10, 15,20,25, and 30°C) and three light intensities (5,20, and 40 umolm~2s~(-1)). Daily growth rates were estimated by the increase in filamentous frond area. The optimal growth conditions for female gametophytes were 20°C and 40 umol-m~(-2)-s~(-1);the optimal conditions for male gametophytes were 15°C and 20 umolm~(-2)s~(-1). The relative growth rates (RGR) of female and male gametophytes decreased at 25°C and 30°C, respectively. At 30°C, RGRs of gametophytes decreased by approximately 1.0% day'. In addition, RGRs of male gametophytes were higher than those of female gametophytes. These results indicate that female gametophytes were more sensitive to temperature and light intensity than male gametophytes. Moreover, these results suggest that E. cava growth rates could decrease as a result of global warming.
机译:我们检查了温度和光强度对Ecklonia cava Kjellman配子体生长的影响。在成熟前研究雌雄配子体的生长。 2014年10月从韩国济州文宗制备的配子体按性别分离并保持在以下条件下:15°C,20 umolm〜(-2)-s〜(-1)和12-h / l2-h亮/暗循环。实验在五个温度(10、15、20、25和30°C)和三个光强度(5,20和40 umolm〜2s〜(-1))下进行。通过丝状叶面积的增加来估计日增长率。雌配子体的最佳生长条件为20°C和40 umol-m〜(-2)-s〜(-1);雄配子体的最佳生长条件为15°C和20 umolm〜(-2)s〜( -1)。雌配子体和雄配子体的相对生长率(RGR)分别在25°C和30°C时下降。在30°C时,配子体的RGR下降了约1.0%。另外,雄配子体的RGR高于雌配子体。这些结果表明雌配子体比雄配子体对温度和光强度更敏感。此外,这些结果表明,由于全球变暖,大肠埃希氏菌的增长率可能下降。

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