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生物结皮中齿肋赤藓叶片细胞显微与亚显微结构特征 被引量:12

Microscopic and Submicroscopic Structure of Leaf Cells of Syntrichia caninervis Mitt. in Biological Soil Crusts
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摘要 利用光学显微镜和透射电镜,对新疆古尔班通古特沙漠生物结皮中齿肋赤藓叶片细胞的结构特征进行了观察研究。结果表明,齿肋赤藓叶片边缘背卷、中肋粗壮,多数叶片中上部具两层细胞,基部为单层细胞;透射电镜下细胞壁较厚,具疣状突起,且细胞壁通道较多,细胞中叶绿体、细胞核、线粒体、微体、液泡等细胞器明显。其中,叶绿体中基粒片层结构和类囊体清晰,纵向排列,细胞膜和叶绿体双层膜系统保持完好。表明生物结皮中齿肋赤藓对干旱环境具有较强的结构适应性。 The structures of leaf ceils of Syntrichia caninervis Mitt., which inhabits in biological soil crusts in the Gurbantunggut Desert, Xinjiang, were observed under the optical microscope and transmission electron microscope. The leaves of Syntrichia caninervis Mitt. have distinct midribs and the leaf edges roll to back; The upper parts of most leaves are arrayed with two-layer cells, and the base part with singlelayer cells. Under transmission electron microscope, the cell wall layer is thick and has verrucous protuberances and more vessels; the cell components, such as the chloroplast, nucleus, mitochondria, microbody, and vacuole are distinctly observed. For example, there are clear thylakoids and lamellar structure in chloroplast, being longitudinally distributed ; the membrane system of various kinds of cell structures remained intact. Suggested by the above observation the plant species of Syntrichia caninervis Mitt. in biological soil crusts is well adapted to harsh environment by adjusting its leaf structure in desert ecosystem.
出处 《中国沙漠》 CSCD 北大核心 2009年第3期493-498,共6页 Journal of Desert Research
基金 国家重点基础研究发展计划项目(2009CB825104) 中国科学院知识创新工程重要方向项目(KZCX2-YW-336) 国家自然科学基金项目(40771114)资助
关键词 生物结皮 齿肋赤藓 亚显微结构 结构适应 古尔班通古特沙漠 biological soil crust Syntrichia caninervis Mitt. ultrastructure leaf structural adaptation the Gurbantunggut Desert
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  • 1张元明,陈晋,王雪芹,潘惠霞,辜智慧,潘伯荣.古尔班通古特沙漠生物结皮的分布特征[J].地理学报,2005,60(1):53-60. 被引量:92
  • 2Harper K T,Marble J R.A role for non-vascular plants in management of arid and semi-arid rangelands[C]//Tueller P T.Application of Plant Sciences to Rangeland Management and Inventory.Amsterdam:Martimls Nijhoff/W.Junk,1998:135-169.
  • 3Eldridge D J,Greene R S B.Microbiotic soil crusts:a review of their roles in soil and ecological Processes in the rangelands of Australia[J].Australian Journal of Soil Research,1994(32):389-415.
  • 4Eldridge D J.Cayptogams vascular plants,and soil Hydrological relations:some preliminary results from the semiarid woodlands of eastern Australian[J].Great Basin Naturalist,1993(53):48-58.
  • 5ISichei A O.The role of algae and cyanobactefia in arid Lands:a review[J].Arid Soil Research and Rehabilitation,1990(4):1-17.
  • 6West N E.Structure and function of microphytie soil crusts in wildland ecosystems of arid and semi-arid regions[J].Advances in Ecological Research,1990(20):179-223.
  • 7Williams J D,Dobrowolski J P,West N E.Microbiotie crust influence on unsaturated hydraulic conductivity[J].Arid Soil Research and Reha bilitation,1999(13):145-154.
  • 8陈荣毅,魏文寿,张元明,吴楠,张静.干旱区生物土壤结皮对种子植物多样性的影响[J].中国沙漠,2008,28(5):868-873. 被引量:33
  • 9吴楠,张元明,张静,王红玲,聂华丽,陈荣毅.生物结皮恢复过程中土壤生态因子分异特征[J].中国沙漠,2007,27(3):397-404. 被引量:32
  • 10李新荣,陈应武,贾荣亮.生物土壤结皮:荒漠昆虫食物链的重要构建者[J].中国沙漠,2008,28(2):245-248. 被引量:23

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