首页> 外文期刊>Acta Oceanologica Sinica >Ecophysiological characteristics of four intertidal marine macroalgae during emersion along Shantou coast of China, with a special reference to the relationship of photosynthesis and CO_2
【24h】

Ecophysiological characteristics of four intertidal marine macroalgae during emersion along Shantou coast of China, with a special reference to the relationship of photosynthesis and CO_2

机译:汕头海岸出海过程中四种潮间带海洋大藻的生理生态特征,特别涉及光合作用与CO_2的关系

获取原文
获取原文并翻译 | 示例
           

摘要

Intertidal marine macroalgae experience periodical exposures during low tide due to their zonational distribution. The duration of such emersion leads to different exposures of the plants to light and aerial CO_2, which then affect the physiology of them to different extents. The ecophysiological responses to light and CO_2 were investigated during emersion in two red algae Gloiopeltis jurcata and Gigartina intermedia, and two brown algae Petalonia fascia and Sargassum hemiphyllum, growing along the Shantou coast of China. The light-saturated net photosynthesis.in G. Jurcata and P. fascia showed an increase followed by slightly desiccation, whereas that in G. intermedia, and S. hemiphyllum exhibited a continuous decrease with water loss. In addition, the upper-zonated G. jurcata and P. fascia, exhibited higher photosynthetic tolerance to desiccation and required higher light level to saturate their photosynthesis than the lower-zonated G. intermedia and S. hemiphyllum. Desiccation had less effect on dark respiration in these four algae compared with photosynthesis. The light-saturated net photosynthesis increased with increased CO_2 concentrations, being saturated at CO_2 concentrations higher than the present atmospheric level in G. furcata, G. intermedia and S. hemiphyllum during emersion, It was evident that the relative enhancement of photosynthesis by elevated CO_2 in those three algae increased, though the absolute values of photosynthetic enhancement owing to CO_2 increase were reduced when the desiccation statuses became more severe. However, in the case of desiccated P. fascia (water loss being greater than 20 %), light saturated net photosynthesis was saturated with current ambient atmospheric CO_2 level. It is proposed that increasing atmospheric CO_2 will enhance the daily photosynthetic production in intertidal macroalgae by varied extents that were related to the species and zonation.
机译:潮间带海洋大型藻类由于其动物分布而在低潮时经历周期性的暴露。这种出苗的持续时间导致植物不同程度地暴露于光和空气中的CO_2,从而在不同程度上影响植物的生理。研究了在中国汕头沿海生长的两个红藻Gloiopeltis jurcata和Gigartina intermedia以及两个褐藻Petalonia fascia和Sargassum hemiphyllum对苗期光和CO_2的生态生理响应。 G. Jurcata和P. fascia的光饱和净光合作用表现为增加,随后略有干燥,而中间G.和半球形S.phylphyllum则表现出随着水分流失而持续减少的趋势。此外,与较低区域的中间G. jumedia和S. hemiphyllum相比,较高区域的G. jurcata和P. fascia表现出更高的对干旱的光合作用耐受性,并且需要更高的光照水平才能使其光合作用达到饱和。与光合作用相比,这四种藻类的干燥对暗呼吸的影响较小。出苗期间,光饱和净光合作用随CO_2浓度的增加而增加,当CO_2浓度高于当前大气水平时,饱和光合净光合作用的速率逐渐增加。明显的是,CO_2浓度升高相对增强了光合作用。在这三种藻类中,虽然干燥状态变得更加严重,但由于CO_2的增加而使光合作用增强的绝对值降低了,但是这三个藻类中的藻类却增加了。但是,在干燥的筋膜假单胞菌(水分损失大于20%)的情况下,光饱和的净光合作用在当前环境大气CO_2水平下达到饱和。有人提出,增加大气中的CO_2可以通过与物种和分区有关的不同程度,提高潮间带大型藻类的光合作用。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号