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植物根系的化学信号及其遗传改良 被引量:2

Chemical Signals in Plant Roots and its Genetic Improvement
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摘要 综述了植物根系在不同条件下产生的化学信号及其特点。植物根系的化学信号与地上部植株的生长、作物产量、品质和抗性有着密切关系。根系产生的化学信号受环境条件和植物本身的基因型的双重影响。因此,研究根系化学信号的规律可以为作物遗传改良提供新的思路和途径。 In the proper paper, the chemical signals their characteristics were summarized. The signals in produced in plant roots under different conditions and the roots are closely related to the growth of the upper parts of the plants, yield and quality, as well as the resistance. To study the rules of chemical signals produced in roots can provide us some new thoughts and methods in genetic improvement in crops.
出处 《中国农学通报》 CSCD 2007年第2期279-281,共3页 Chinese Agricultural Science Bulletin
关键词 根系 化学信号 遗传改良 Roots, Chemical signals, Genetic improvement
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参考文献22

  • 1Boyer J S,Westgate M E.Grain yields with limited water.Journal of Experimental Botany,2004,55:2385-2394.
  • 2Bahrun A,Jensen C R,Asch F,Mogensen V O.Drought-induced changes in xylem pH,ionic composition,and BA concentration act as early signals in field-grown maize.Journnal of ExperimentalBotany,2002,53:251-263.
  • 3Croker J,Witte W T,Auge R,Stomatal sensitivity of six temperate deciduous tree species to nonhydraulic root-to-shoot signaling of partial soil drying.Journal of Experimental Botany,1998,49:761-774.
  • 4Jackson M B.Long-distance signaling from roots to shoots assessed:The flooding story.Journal of Botany,2002,53(367):175-181.
  • 5Abd A M H.Regulation of nodule formation in soybean -Bradyrhizobium symbiosis is controlled by shoot or/root signalsl Plant GROWTH Regulation,2002,34:241-250.
  • 6涂书新,孙锦荷,郭智芬,谷峰.植物根系分泌物与根际营养关系评述[J].土壤与环境,2000,9(1):64-67. 被引量:126
  • 7黄发松.水稻根系生长生理与根系遗传育种研究[A].∥作物育种学术论文集[C].北京:中国农业出版社,1998.
  • 8陈新红,刘凯,奚岭林,王志琴,杨建昌.土壤水分与氮素对水稻地上器官脱落酸和细胞分裂素含量的影响[J].作物学报,2005,31(11):1406-1414. 被引量:15
  • 9杨建昌,常二华,张文杰,王志琴,刘立军.根系化学讯号与稻米品质的关系[J].中国农业科学,2006,39(1):38-47. 被引量:33
  • 10徐晓燕,孙五三,李章海,李金才.烤烟根系合成烟碱的能力及pH值对其根系和品质的影响[J].安徽农业大学学报,2004,31(3):315-319. 被引量:46

二级参考文献154

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同被引文献78

  • 1刘鸿雁,黄建国,魏成熙,周焱.磷高效基因型玉米的筛选研究[J].土壤肥料,2004(5):25-29. 被引量:32
  • 2Barber S.A., and MacKay A.D., 1986, Root growth and phospho- rus and potassium uptake by two corn genotypes in the field, Nutr. Cycl. Agroecosys., 10(3): 213-217.
  • 3Bonser A., Lynch J.H., and Snapp S., 1996, Effect of phosphorus deficiency on growth angle of basal roots in Phaseolous vul- garis, New Phytol., 132(2): 281-288.
  • 4Chaubey C., Senadhira N.D., and Gregorio G.B., 1994, Genetic analysis of tolerance for phosphorus deficiency in rice (Oryza sativa L.), Yheor. Appl. Genet., 89(2-3): 313-317.
  • 5Fohse D., Claassen N., and Jungk A., 1991, Phosphorus efficien- cy of plants, II significance of root radius, root hairs and cation-anion balance for phosphorus influx in seven plant species, Plant and Soil, 132:261-272.
  • 6Hermans C., Hammond J.P., White P.J., and Verbruggen N., 2006, How do plants respond to nutrient shortage by bio- mass allocation Trends in Plant Science, 11(12): 610-617.
  • 7Lambers H., Shane M.W., Cramer M.D., Pearse S.J., and Vene- klaas E.J., 2006, Root structure and functioning for efficient acquisition of phosphorus: matching morphological and physiological traits, Ann. Bot., 98(4): 693-713.
  • 8梁泉.2007,大豆磷效率相关根系形状的遗传特性研究及QTL定位分析,博士学位论文,华南农业大学,导师:严小龙,pp.25-27.
  • 9Majumder N.D., Borthakur D.N., and Rakshit S.C., 1989, Het- erosis in rice under phosphorus stress, Indian J. Genet., 49 (2): 231-235.
  • 10Ni J.J., Wu P., Senadhira D., and Huang N., 1998, Mapping of QTLs for phosphorus deficiency tolerance in rice (Oryza sa- tiva L.), Theor. Appl. Genet., 97(8): 1361-1369.

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