期刊文献+

海草光合作用研究进展 被引量:14

Review on Research of Seagrass Photosynthesis
在线阅读 下载PDF
导出
摘要 生活在潮间带和潮下带海水中的单子叶植物海草,在生理生态方面对海洋沉水环境形成了一系列的适应,其光合作用受到光照、温度、无机碳和盐度等环境因子的影响,其中光照和无机碳常常成为限制因子。为了适应低无机碳的海洋环境,海草具有利用HCO-3能力,并在光合代谢上形成一定的适应性。全球气候变化与人类活动可以通过改变光照、温度等环境因子进而影响到海草床的演化。 Seagrass are endogen plants living in intertidal and subtidal zones develope a series of ecophysiological changes adaptive to submersed sea water environments. This paper reviewed seagrass photosynthesis that is impacted by factors such as light, temperature, inorganic carbon and salinity, of which light and inorganic carbon are the common restriction factors. Seagrass are capable of acquiring HCO3^- as a source of inorganic carbon because of the shortage of inorganic carbon in the seawater. Less available light radiation also restricts the rate of their photosynthesis. Global climate change and human activities would influence the succession of the seagrass beds through variation of environmental elements such as temoerature and light etc.
出处 《广西科学》 CAS 2007年第2期180-185,192,共7页 Guangxi Sciences
基金 UNDP/GEF-SOA"中国南部沿海生物多样性管理" 广西908专项 广西大学学术带头人基金资助
关键词 海草 光合作用 环境因子 seagrass, photosynthesis, environmental factors
  • 相关文献

参考文献51

  • 1PHILLIPS R C,MENEZ E G.Seagrass[M].Washington DC:Smithsonian Institution Press,1988:32-33.
  • 2杨宗岱.中国海草的生态学研究[J].海洋科学,1982,(2):34-37.
  • 3DUARTE C M,CEBRIAN J.The fate of marine autrophic prodution[J].Limnology and ouanography,1996,41:1758-1766.
  • 4KIRK J T O.Light and photosynthesis in aquatic ecosystems[M].Cambridge:Cambridge University Press,1983:540-545.
  • 5DEN HARTOG C.The saegrass of the world[M].Amsterdam:North Holland Publishing Company,1970:234-240.
  • 6DENNISON W C,ORth R J,MOORE K A,et al.Assessing water quality with submersed aquatic vegetation[J].BioScience,1993,43:86-94.
  • 7DUARTE C M.Seagrass depth limits[J].Aquatic Botany,1991,40:363-377.
  • 8ERFTEMEIJER P L A,OSING R,MARS A E.Primary production of seagrass beds in South S ulawesi:a comparison of habitates,methods and species[J].Aquatic Botany,1993,40:67-90.
  • 9DREW E A.Physiological aspects of primary production in seagrass[J].Bol,1979,7:139-150.
  • 10KENWORTHY W J,FONSECA M S.Light requirement of seagrass Halodule wrightii and Syingodium filiforme derived from the relationship between diffuse light attenuation and maximun depth distribution[J].Estuaries,1996,19:47-54.

二级参考文献59

  • 1中国海湾志编写委员会.中国海湾志(第三分册)[M].海洋出版社,1991.61-64.
  • 2(美)罗斯D A.海洋学导论[M].北京:科学出版社,1973.14.
  • 3Bowes G. Facing the inevitable: plants and increasing atmospheric CO2. Ann. Rev. Plant Physiol. Plant Mol. Biol., 1993, 44: 309~332.
  • 4Drake B J, Gonzalez-Meler M A and Long S P. More efficient plants: a consequence of rising atmospheric CO2? Ann. Rev. Plant Physiol. Plant Mol. Biol., 1997, 48: 609~639.
  • 5Makino A and Mae T. Photosynthesis and plant growth at elevated levels of CO2. Plant Cell Physiol., 1999, 40(10): 999~1006.
  • 6Moore B D, Cheng S H, Sims D, et al. The biochemical and molecular basis for photosynthetic acclimation to elevated atmospheric CO2. Plant Cell Enrivon., 1999, 22: 567~582.
  • 7Stitt M and Krapp A. The interaction between elevated carbon dioxide and nitrogen nutrition: the physiological and molecular background. Plant Cell Environ.,1999, 22: 583~621.
  • 8Quay PK, Tilbrool B and Wong C S. Oceanic uptake of fossil fuel CO2: carbon-13 evidence. Science, 1992, 256:74~79.
  • 9Kübler J E, Johnston A M and Raven J A. The effects reduced and elevated CO2 and O2 on the seaweed Lomentaria articulata. Plant Cell Envir., 1999, 22: 1303~1310.
  • 10Thom R M. CO2-enrichment effects on eelgrass (Zostera marina L.) and bull kelp (Nereocystis lyetkeana (Ment)P. &R.). Water Air Soil Pollution, 1996, 88: 383~391.

共引文献72

同被引文献234

引证文献14

二级引证文献102

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部