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高温胁迫下高羊茅草坪草生理特性研究(英文) 被引量:9

Physiological response to heat stress in tall fescue turfgrasses
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摘要 从美国引进的39个高羊茅草坪草种分成了5个生态类型,在1999—2000年从每类中找出一个具有典型性状的草种,测定其周年草坪坪质表现、根系活力、叶片可溶性糖含量变化,同时测定各类草种在高温胁迫下保护酶活性与质膜透性的变化。结果表明,根系活力及可溶性糖含量在一定程度上影响着草坪坪质的周年变化。同时,草坪草叶片MDA含量的增长率和草坪草叶片的质膜透性增长率具有显著的正相关效应。在40℃高温胁迫下,草坪草叶片SOD与POD相对活性和MDA含量的增长率及PMP增长率具有显著的负相关效应,5个草种对高温的抗性能力大小顺序是:Gooden>Regi ment>Tomahawk>SR-8210>Brandy。在此基础上,最后对草坪草抗性的准确快速检测方法进行了讨论。 Thirty nine tall rescue varieties introttuced from America: were devided into five ecotypes, from which five cultivars were collected for testing the changes of turf quality, root activity, soluble sugar con tent around years,meanwhile antioxidant enzyme activity, lipid proxidation etc under heat stress conditions were tested too in 1999- 2000. The results indicated that changes of root activity and content of sol uble sugar in the leaves were to some extent responsible for adjusting the stress-resistance in heat stres ses, It implied that the two parameters had a great effect on the turf quality of tall rescue around the year. It was also indicated that the increasing rate of MDA content was significantly positively correlaied with the changes of electrolyte leakage in the leaves of turf grass. When exposed io 40 ℃heat stress,the relative activities of superoxide dismutase(SOD) and peroxidose(POD) in the leaf of turf'cultivars concerned were significantly negatively correlated with malonaldchyde'(MDA) and electrolyte leakage;Based on the index of active oxygen and electrolyie leakage, the ability of heat tolerance in the five ecotypes of tall rescue was in order : Gooden;〉 RegimenC〉 TomahawkS〉 SR-8210〉 Brandy. Finally, a rapid accurate laboratory procedure of measuring turf grass tolerance to heat was also disscussed.
出处 《草业科学》 CAS CSCD 2006年第2期75-84,共10页 Pratacultural Science
基金 福建省科技厅赞助项目(99-Z-101)
关键词 高羊茅草坪草 根系活力 可溶性糖含量 热胁迫 保护酶活性 质膜透性 tall rescue turfgrasses root activity content of soluble sugar heat stress antioxidant enzyme lipid peroxidation
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  • 1Funk C R,Wiley W K,King D E,et al.Registration of Mustang tall fescue[J].Crop Sci,1984,24:1211. 被引量:1
  • 2Beard J B.Turfgrass heat stress:What can be done?[J].Golf Course Mhmt,1995,63(12):52-55. 被引量:1
  • 3Santarius K A.Sites of heat sensitivity in chloroplasts and differential inactivation of cyclic and noncyclic photophosphorespiration by heating[J].Therm.Biol,1975,1:101-107. 被引量:1
  • 4Schreiber U,Bilger W.Rapid assessment of stress effects on plant leaves by chlorophyll fluorescence measurements[A].Plant response to stress[C].Germany:Springer-Verlag,Heidelberg,1987,27-53. 被引量:1
  • 5Paulsen G M.High temperature responses of crop plants[A].Physiology and determination of crop yield[C].Madison:ASA,CSSA,and SSSA,1994,365-389. 被引量:1
  • 6Howard H F,Watschk T L.Variable high-temperature tolerance among Kentucky bluegrass cultivars[J].Agron,1991,83:689-693. 被引量:1
  • 7Dhindsa R S,Matowe W.Drought tolerance in two mosses:Correlated with enzymatic defense against lipid peroxidation[J].Exp.Bot,1981,32:79-91. 被引量:1
  • 8Elstner E F.Oxygen activation and oxygen toxicity[J].Annu.Rev.Plant Physiol,1982,33:73-96. 被引量:1
  • 9Bowler C M,Montagu.V,Inze D.Superoxide dismutaseand stress tolerance[J].Annu.Rev.Plant Physiol.Plant Mol.Biol.1992,3:83-116. 被引量:1
  • 10Zhang J X,Kirkham M B.Drought-stress-induced changes in activities of superoxide dismutase,catalase,and peroxidase in wheat species[J].Plant Cell Physiol,1994,35:785-791. 被引量:1

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