期刊文献+

禾草类内生真菌的研究进展 被引量:24

RECENT RESEARCH PROGRESS ON GRASS-ENDOPHYTE SYMBIOSIS
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摘要 感染内生真菌的禾草在牧草和草坪业上具有重要的生态和经济意义。关于禾草和内生真菌的互利共生作用已有大量报道 ,文中就近年来有关禾草类内生真菌的起源和进化、内生真菌的生物和生态学作用以及内生真菌的应用前景方面的研究进展作一综述 。 Grasses infected by endophytes have an extraordinary impact on the ecology and economy of pasture and turf. In this review, we presented recent research progress on origin and evolution, biological and ecological impact, and perspective of the association in order to make full use of the widely distributed endophyte resources.
出处 《微生物学通报》 CAS CSCD 北大核心 2004年第2期130-133,共4页 Microbiology China
基金 国家自然科学基金资助项目 (No 30 2 4 0 0 83) (No 30 370 2 39) 教育部科学技术研究重点资助项目 (No 0 30 4 6 )~~
关键词 内生真菌 禾草 起源 胁迫 Endophyte, Grass, Origin, Stress
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参考文献16

  • 1Tredway L P, White J F, Gaut B S, et al. Mycological Research, 1999, 103 (12): 1593- 1603.
  • 2Clay K, Schardl C. American Naturalist, 2002, 160 (suppl): 99- 127.
  • 3Malinowski D, Leuchtmann A, Schrmidt D, et al. Agron J, 1997, 89:833 - 839.
  • 4Eerens J P J, Lucas R J, Easton H S, et al. NZ J Agric Res, 1998, 41: 219-226.
  • 5Easton H S, Latch G C M, Tapper B A, et al. Crop Sci, 2002, 42:51 - 57.
  • 6Schulz B, Rommert A K, Dammenn U, et al. Mycol Res, 1999, 103:1275 - 1283.
  • 7Clay K, Holah J. Science, 1999, 285:1742 - 1744.
  • 8Omacini M, Chaneton E J, Ghersa C M, et al. Nature, 2001, 409:78 - 81.
  • 9Hill N S, Hiatt E E, Bouton J H, et al. Crop Science, 2002, 42: 1627- 1630.
  • 10Wang J, Machado C, Panaccione D, et al. Fungal Genet News, 1999, 46: 120.

二级参考文献31

  • 1蒋明义,杨文英,徐江,陈巧云.渗透胁迫下水稻幼苗中叶绿素降解的活性氧损伤作用[J].Acta Botanica Sinica,1994,36(4):289-295. 被引量:193
  • 2陈军,戴俊英.干旱对不同耐性玉米品种光合作用及产量的影响[J].作物学报,1996,22(6):757-762. 被引量:46
  • 3Arachevaleta, M., C. W. Bacon, C. S. Hoveland & D. E. Radciffe. 1989. Effect of the tall fescue endophyte on plant response to environmental stress. Agronomy Journal, 81: 83~90.
  • 4Assuero, S. G., C. Matthew & P. D. Kemp. 2000. Morphological and physiological effects of water deficit and endophyte infection on contrasting tall fescue cultivars. New Zealand Journal of Agricultural Research, 43: 49~61.
  • 5Bacon, C. W., J. K. Porter & J. D. Robbins. 1977. Epichloe typhina from toxic tall fescue grasses. Applied and Environmental Microbiology, 34:576~581.
  • 6Bacon, C. W. 1993. Abiotic stress tolerances (moisture, nutrients) and photosynthesis in endophyte-infected tall fescue. Agriculture, Ecosystems and Environment, 44:123~141.
  • 7Barker, D. J., D. E.Hume & P. E.Quigley. 1997. Negligible physiological responses to water deficit in endophyte-infected and uninfected perennial ryegrass. In: Bacon, C.W. & N.S. Hill eds. Neotyphodium/grass interactions. New York: Plenum Press. 137~139.
  • 8Belesky, D. P. & J. M. Fedders. 1995. Tall fescue development in response to Acremonium coenophialum and soil acidity. Crop Science, 35:529~553.
  • 9Belesky, D.P., W. C. Stringer & N. S. Hill. 1989. Influence of endophyte and water regime upon tall fescue accessions. I. Growth characteristics. Annals of Botany, 63:495~503.
  • 10Cheplick, G. P. 1997. Effects of endophytic fungi on the phenotypic plasticity of Lolium perenne. American Journal of Botany, 84:34~40.

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