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世界抗草甘膦大豆的新进展 被引量:11

Current Development of Glyphosate-resistant Soybean
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摘要 从1996年开始种植抗草甘膦大豆以来,农民迅速接受,种植面积持续扩大,其主要原因在于抗草甘膦大豆为农民提供了一种简而易行的除草方法,应用草甘膦既可防除大多数阔叶与禾本科杂草又不伤害后茬作物。抗草甘膦大豆促使苗后杂草防除,有利于实施免耕及窄行密植以提高产量。 Since roundup ready soybean introduction in 1996, it has been adopted by growers at a rapid rate in the world. The primary reason is believed to be the simplicity of roundup ready weed control program. Which allows growers to use one product-glyphosate to control a wide range of both broadleaf and grass weeds without sustaining crop injury. Instead of using several other herbicides to control weeds. Roundup ready soybeans fit into on going trends towards postemergence weed control. Adoption of zero tillage practices and narrow row production for increasing yields.
作者 苏少泉
机构地区 东北农业大学
出处 《农药》 CAS 北大核心 2007年第2期73-76,共4页 Agrochemicals
关键词 抗草甘膦大豆 苗后杂草防除 免耕 roundup ready soybean zero tillage narrow row production
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参考文献10

  • 1苏少泉.草甘膦述评[J].农药,2005,44(4):145-149. 被引量:151
  • 2OWEN M D K. Current Use of Transgenic Herbicide-resistant Soybean and Corn in the USA[J]. ⅪⅤth International Plant Protection Congress, 1999, 7: 25-30.
  • 3THOMPSON G A, HIATT W R, FACCIOTT D, et al. Expression in Plants of a Bacterial Gene Coding for Glyphosate Resistance[J]. Weed Sci, 1987, 35(Suppl): 19-23.
  • 4BRADSHAW L D, RADGETTE S R, KIMBALL S L. Perspectives on Glyphosate Resistance[J]. Weed Tech, 1997, 11:189-198.
  • 5MIAN C L, PANTALONE V R, MUELLER T C. A Novel Approach to Determine the Glyphosate Tolerant Trait in Soybeans[J]. J Agric Food Chem, 2004, 52: 1224-1227.
  • 6RAYMER P L, GREY T L. Challenges in Comparing Transgenic and Nontransgenic Soybean Cultivars[J]. Crop Sci,2003, 43: 1584-1589.
  • 7CARPENTER J, GIANESSI L. Herbicide Tolerant Soybeans:Why Growers are Adopting Round Ready Varieties[J].AgBioForum, 1999, 2: 65-72.
  • 8苏少泉.转基因抗除草剂大豆的种植与问题[J].世界农业,2006(2):41-42. 被引量:8
  • 9New Herbicides for Roundup Ready Soybean Receive US Approval[J]. International Pest Control, 2000, 42: 67.
  • 10NANDULA V K, READDY K N, DUKE S O, et al. Glyphasateresistant Weeds: Current Status and Future Outlook[J]. Outlooks on Pest Management-august, 2005, 183-187.

二级参考文献25

  • 1杨巍民.世界各国转基因作物的研发概述[J].世界农药,2004,26(4):41-43. 被引量:2
  • 2Thomas W E, Pline-Strniae W A, Thomas J E, et al. Glyphosate negatively attects pollen viability but no pollination and seed set in glyphosate-resistant corn[J]. Weed Sci, 2004, 52:725-734.
  • 3Wlldburn A T. Glyphosate: production, pricing and use worldwide[J].Pest Manag Sci, 2000, 56:309-312.
  • 4Baylis A D. Why glyphosate is a global herbicide: strengths,weadnesses and prospects[J]. Pest Manag Sci, 2000, 56:299-308.
  • 5Komoba D, Genniby I, Sandermann H. Plant metabolism of herbicide with C-P bonds: Glyphosate[J]. Pestic Biochem physidl, 1992, 43:85-94.
  • 6Hoagland R E. Effects of glyphosate on metabolism of phenolic compounds:Ⅵ. Effects of glyphosine and glyphosate metabolites on phenylalanine ammonia-lyase activity, growth,and protein.chlorophyll, and anthocyanin levels in soybean (Glycine max) seedlings[J]. Weed Sci, 1980, 28:393-400.
  • 7Padgette S R, Taylor N B, Nida B L, et al. The composition of glyphosate-tolerant soybean seeds is equivalent to that of conventional soybean[J]. Nutr, 1996, 126:702-716.
  • 8Arregui M C, Lenardon A, Sanchez D, et al. Monitoring glyphosate residues in transgenic glyphosate-resistant soybean.Pest Manag Sci[J], 2004, 60:163-166.
  • 9Reddy K N, Rimando A M, Duke S O. Aminomethylphosphoic acid, a metabolite of glyphosate, causes injury in glyphosatetreated, glyphosate-resistant soybean[J]. Agric Food Chem,2004, 52:5139-5143.
  • 10Newton M, Horner L M, Cowell J E, et al. Dissipation of glyphosate and aminomethylphosphonic acid in North American forests[J]. Agric Food Chem, 1994, 42:1795-1802.

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