期刊文献+

外源硝态氮提高淹水甜樱桃根系糖含量及蔗糖相关酶活性 被引量:8

Exogenous NO_3^- Enhanced Sugar Contents and Sucrose Correlated Enzymes Activity in Roots of Sweet Cherry Under Waterlogging Condition
原文传递
导出
摘要 以‘大青叶’(Prunus pseudocerasus var.‘Daqingye’)嫁接甜樱桃‘岱红’(P.avium‘Daihong’)为试材,研究了淹水条件下外源硝态氮对甜樱桃根系蔗糖、葡萄糖、果糖和淀粉含量及蔗糖合酶(SS)合成和分解,蔗糖中性转化酶(NI)和蔗糖酸性转化酶(AI)活性的影响。结果表明,淹水过程中处理与对照根系蔗糖、葡萄糖、果糖和淀粉含量均呈先升后降趋势;与对照相比,外源NO3-提高了根系中蔗糖、葡萄糖、果糖和淀粉的含量,最大值分别比对照提高18.02%、21.97%、25.27%和11.41%。淹水过程中根系SS分解活性呈先升后降趋势,而SS合成活性、NI和AI活性呈下降趋势;加入NO3-后,4种酶活性均高于对照。这些结果表明,淹水条件下外源NO3-可通过调控根系的糖代谢而增强甜樱桃耐低氧能力。 Effects of exogenous NO3 - on sucrose, glucose, fructose and starch contents as well as sucrose synthase (SS) disassemble activity, sucrose synthase synthesis activity, neutral invertase activity (NI) and acid invertase activity (AI) in roots of sweet cherry (Prunus avium ' Daihong' ) with P. pseudocerasus var. ' Daqingye' as rootstock under waterlogging condition were studied. The results showed that under water- logging condition, sucrose, glucose, fructose and starch in roots of sweet cherry increased significantly in the early period and then decreased in the later period in both treatment and control. Exogenous NO3 - enhanced the contents of sucrose, glucose, fructose and starch, which were higher than control, while to the maximum, which were 18.02% , 21.97% , 25.27% and 11.41% higher than that of control respectively when reached to the maximum. The sucrose synthase disassemble activity in roots of sweet cherry increased to the highest level and then declined gradually in both treatment and control. Meanwhile, the sucrose synthase synthesis, NI and AI activities decreased gradually, but four enzymes activities of treatment were higher than that of control after using exogenous NO3 - We conclude that the addition of NO3 - can enhance the tolerance of the roots of sweet cherry to hypoxia through regulation of sugar metabolism.
出处 《园艺学报》 CAS CSCD 北大核心 2009年第7期937-944,共8页 Acta Horticulturae Sinica
基金 国家‘十一五’科技支撑重点项目(2008BADA4B05) 山东省良种工程项目
关键词 甜樱桃 根系 硝态氮 淹水 酶活性 sweet cherry roots nitrate waterlogging enzyme activity
  • 相关文献

参考文献33

  • 1Albrecht G, Mustroph A, Foxt C. 2004. Sugar and fructan accumulation during metabolic adjustment between respiration and fermentation under low oxygen conditions in wheat root. Physiol Plant, 120:90 -105. 被引量:1
  • 2Albrecht G, Mustroph A. 2003a. Sucrose utilization via invertase and sucrose synthase with respect to accumulation of cellulose and eallose synthesis in wheat roots under oxygen deficiency. Russian Journal of Plant Physiology, 50:813 -820. 被引量:1
  • 3Albrecht G, Mustroph A. 2003b. Localization of sucrose synthase in wheat roots: Increased in situ activity of sucrose synthase correlates with cell wall thickening by cellulose deposition under hypoxia. Planta, 217:252 -260. 被引量:1
  • 4Allegre A, Silvestre J, Morard P, Kallerhoff J, Pinelli E. 2004. Nitrate reductase regulation in tomato roots by exogenous nitrate: A possible role in tolerance to long-term root anoxia. Exp Bot, 55:2625 -2634. 被引量:1
  • 5Biemelt S, Hajirezaei M R, Melzer M, Albrecht G, Sonnewald U, 1999. Sucrose synthase activity does not restrict glycolysis in roots of transgenic potato plants under hypoxia conditions. Planta, 210:41 -49. 被引量:1
  • 6Castonguay Y, Nadean P, Simard R R. 1993. Effects of flooding on carbohydrate and ABA levels in roots and shoots of alfalfa. Plant, Cell and Environment, 16 : 695 - 702. 被引量:1
  • 7Chen Hong-jun, Quails R G, Blank R R. 2005. Effect of soil flooding on photosynthesis, carbohydrate partitioning and nutrient uptake in the invasive exotic Lepidium latifolium. Aquatic Botany, 82:250 -268. 被引量:1
  • 8Dravatt D A. 2003. Oxyen deficiency affects carbohydrate reserves in overwintering forage crops. Exp Bot, 54:1721 - 1730. 被引量:1
  • 9Gibbs J, Greenway H. 2003. Mechanisms of anoxia tolerance in plants. I. Growth, survival and anaerobic catabolism. Functional Plant Biology, 30: 1-47. 被引量:1
  • 10Guglielminetti L, Yamaguchi J, Perata P, Alpi A. 1995. Amylolyticactivities in cereal seeds under aerobic and anaerobic conditions. Plant Physiol, 109 : 1069 - 1076. 被引量:1

二级参考文献31

  • 1陈明,沈文飚,阮海华,徐朗莱.一氧化氮对盐胁迫下小麦幼苗根生长和氧化损伤的影响[J].植物生理与分子生物学学报,2004,30(5):569-576. 被引量:85
  • 2高洪波,郭世荣.外源γ-氨基丁酸对营养液低氧胁迫下网纹甜瓜幼苗抗氧化酶活性和活性氧含量的影响[J].植物生理与分子生物学学报,2004,30(6):651-659. 被引量:49
  • 3Foyer C H, Champing M L, Valadier M H. Partitioning of photosynthetic carbon: The role of nitrate activation of protein kinases[ A ]. Sharry P, Halford N, Holey R et al. Proceeding of the phytochemlcal society of Europe[ C]. Oxford : Clarendon Press, 1996 : 35-51. 被引量:1
  • 4Deng H. Biochemical basis of heterosis in rice[A]. Klaus L. Hybrid rice[M]. Manila Philippines: International Rice Research Institute, 1998. 55-66. 被引量:1
  • 5Kita A S. Physiological bases of heterosis in rice[A]. Klaus L. Hybrid rice[M]. Manila Philippines: International Rice Research Institute, 1985. 67-77. 被引量:1
  • 6Lin Z F, Li S S, Lin G Z. Superoxide dismutate activity and lipid experoxidation in relation to senescence of rice leaves[J]. Acta Bot. Sin., 1984, 26: 605-615. 被引量:1
  • 7Mohammadi M, Karr A L. Membrance lipid peroxidation, nitrogen fixaction and leghemoglobin content in soybean root nodules [ J]. J. Plant Physiol., 2001, 158: 9-19. 被引量:1
  • 8Malavolate E. Studies on the nitrogenous nutrition of rice[ J]. Plant Physiol., 1954, 29: 98-90. 被引量:1
  • 9Arnon D. Ammonium and nitrate nitrogen nutrition of barley and rice at different seasons in relation to hydrogen-ion concentrations, manganese, copper and oxygen supplied[J]. Soil Sci., 1937, 44:91 - 121. 被引量:1
  • 10Jackson M B, Drew M, Effects of flooding on growth and metabolism of herbaceous plants[ A]. Kozlwski T(Ed. ). Flooding and plant growth [ M ]. Orlando : Academic Press. 1984. 47-128. 被引量:1

共引文献17

同被引文献129

引证文献8

二级引证文献71

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部