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RNA干涉技术与棉花高油育种 被引量:8

RNA Interference and Genetic Improvement for High Content of Cottonseed Oil
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摘要 棉子脂肪酸既是重要的食用油,又是重要的工业原料。但是关于棉子遗传改良的研究报道甚少。研究表明,PEPcase和ACCase的相对活性决定种子的蛋白质与油脂的含量,应用RNAi技术抑制PEPcase催化活性,可以提高脂肪酸总量。本文概述了棉花油分与RNAi技术的研究现状,并阐述了应用RNAi技术改良棉花高油分育种的技术路线。 Cottonseed was one of the important products of cotton production.Cottonseed oil plays a valuable role not only in human diet,but also in industrial material.However,there are few researches on the genetic improvement on cottonseed oil,so that the nutritional composition of seed,such as fatty acid content,has been ignored for many years.Recent progress has been achieved on the biochemistry and biotechnology,such as RNA interference,to create genetically modified plants with improved and/or regulated nutritional composition.On the other hand,cottonseed oil,which could be used as a putative material to produce biological diesel oil,has been ignored too.Here a summary on genetic improvement of cottonseed oil and application of RNA interference was presented,a new strategy had been proposed to create new genetic modified cotton stocks or varieties with high content of fatty acid and low content of protein by interfering with PEP.
出处 《棉花学报》 CSCD 北大核心 2011年第2期178-183,共6页 Cotton Science
基金 教育部"新世纪优秀人才支持计划"(NCET-06-0106) 国家自然科学基金(30871563) 中国博士后科学基金(20060400536) 国家重大专项(2009ZX08005-024B)
关键词 棉花 RNAI 含油量 cotton RNA interference content of cottonseed fatty acid
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参考文献37

  • 1MICHAEL K, Deborah L, William R, et al. Fatty acid profiles of cottonseed genotypes from the national cotton variety trials [J]. Journal of Cotton Science, 2010, 14: 64-73.
  • 2NAPOLI C, Lemieux C, Jorgensen R. Introduction of a chimeric chalcone synthase gene into petunia results in reversible co-sup pression of homologous genes in trans[J]. The Plant Cell, 1990, 2: 279-289.
  • 3PLASTERK R H. RNA silencing: the genome's immune system [J].Science, 2002, 296 (5571): 1263-1265.
  • 4HAMMOND S M. Dicing and slicing: the core machinery of the RNA interference pathway[J]. FEBS Lett, 2005, 579: 5822-5829.
  • 5VAUCHERET H. Post-transcriptional small RNA pathways in plants: mechanisms and regulations[J]. Genes Develop, 2006, 20: 759-771.
  • 6TRIBOULET R, Marl 1 B, Lin Y-L, et al. Suppression of mi- croRNA-silencing pathway by HIV-I during virus replication[J]. Science, 2007, 315(5818): 1579-1582.
  • 7SRIDHAR V V, Kapoor A, Zhang K-L, et al. Control of DNA methylation and heterochromatic silencing by histone H2B deu- biquitination[J]. Nature, 2007, 447: 735-738.
  • 8MEISTER G, Tuschl T. Mechanisms of gene silencing by dou- ble-stranded RNA[J]. Nature, 2004, 431: 343-349.
  • 9O'Donnel K A, Boeke J D. Mighty Piwis defend the germline against genome intruders[J]. Cell, 2007, 129 (1): 37-44.
  • 10SOPPE W J, Jacobsen S E, Alonso-Blanco C J, et al. The late flowering phenotype of fwa mutants is caused by gain-of-func- tion epigenetic alleles of a homeodomain gene[J]. Mol Cell, 2000, 6: 791-802.

二级参考文献5

  • 1李昌珠,蒋丽娟,程树棋.生物柴油--绿色能源[M].北京:化学工业出版社,2003:238-239.
  • 2德国标准.Diesel Fuel to Bio Fuel,DIN 51606:1997.
  • 3陈嘉珉.如何应对石油短缺[N].经济日报,北京:2004-09-17.
  • 4刘芳.2004年世界能源展望:纵论石油市场格局[N].经济参考报,北京:2004-10-27.
  • 5忻耀年,B.Sondermann.现代生物柴油的生产工艺及产品质量[J].中国油脂,2003,28(11):62-64. 被引量:23

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