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不同灌水条件下春小麦不同器官碳同位素分辨率与产量的相关性 被引量:4

Correlation between Carbon Isotope Discrimination of Different Organs and Yield of Wheat under Different Irrigations
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摘要 为确定碳同位素分辨率(Δ13 C)用于春小麦高产节水品种选育的最佳测定时期和器官,以2个小麦地方品种、14个育成品种(系)和2个引进品种为试验材料进行不同灌水处理,分析了小麦旗叶、茎秆和籽粒Δ13 C值的差异及其与产量的相关性。结果表明,同一品种不同部位Δ13 C存在较大差异,籽粒Δ13 C均低于开花期旗叶和基部秸秆、成熟期旗叶和基部秸秆的Δ13 C。小麦材料相同部位的Δ13 C在中度水分胁迫处理(T2)下低于其他灌水处理(T1、T3和T4),在T2和轻度水分胁迫处理(T3)下,拔节期旗叶Δ13 C与产量均呈显著负相关;在T3处理下,成熟期籽粒Δ13 C与产量呈显著正相关。 In order to determine the best determination stage and organ of the carbon isotope discrimi- nation (△^13C) used to breed high-yield and water saving varieties,2 local wheat landraces, 14 bred va- rieties (lines) and 2 introduced varieties were grown with different irrigation treatments in Ningxia. The correlation between the △^13C in leaf, stem and grain with yield of wheat were analyzed. The re- sults showed that there were bigger variation for the A of the same variety in different organs, the△^13C of wheat grain was lower than that of flag leaf and stems at flowering and mature stage. The △^13C of wheat grain under medium drought treatment (T2) was lower than that under other irrigation treatments (T1, T3 and T4), the △^13C of flag leaf at jointing stage was significantly and negatively associated with yield under both medium drought treatment (T2) and mild drought treatment (T3); the △^13C of grain was significantly and positively associated with yield under mild drought treatment (T3).
出处 《麦类作物学报》 CAS CSCD 北大核心 2013年第6期1190-1196,共7页 Journal of Triticeae Crops
基金 国家自然科学基金项目(31060190) 宁夏回族自治区科技攻关项目 宁夏回族自治区国际合作项目 澳大利亚国际农业研究中心(ACIAR)项目(CIM/2005/111) 宁夏回族自治区自然科学基金项目(NZ12259)
关键词 小麦 碳同位素分辨率 水分 产量 相关性 Wheat Carbon isotope discrimination Irrigation Yield Correlation
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参考文献16

  • 1张永清,苗果园.水分胁迫条件下有机肥对小麦根苗生长的影响[J].作物学报,2006,32(6):811-816. 被引量:74
  • 2Hall A E. Agriculture in semiarid environment [M 1. Heidel berg : Spriger- verlag, 1979. 被引量:1
  • 3Farquhar G D, Ricbards R A. Isotopic composition of plant carbon correlates with water-use-efficiency of wheat genotypes JJ. Australian Journal of Plant Physiology,1984,11(6) : 539- 552. 被引量:1
  • 4Hob Ckk, Farquhar G D. Carbon isotope discrimination and the ratio of carbon gained to water lost in barley cultivarsJJ. Plant, Cell Environment, 1989,12 z 795 804. 被引量:1
  • 5Ehdaie, Hall A E, Farquhar G D. Water-use efficiency and car bon isotope discrimination in wheat[-Jl. Crop Science, 1991,31 (5) 1282-1288. 被引量:1
  • 6Condon A G, Richards R A, Farquhar G D. Carbon isotope dis- crimination is positively correlated with grain yield and dry matter production in field grown wheatJ. Crop Science, 1987,27(5) :996 1001. 被引量:1
  • 7Morgan F A,Lecain D R,Mccaig T N,et al. Gas exchange, carbon isotope discrimination and productivity in winter wheat [J. Crop Science,1993,3a(1) :178-186. 被引量:1
  • 8Ehdaie B,Waines J G. Genetic analysis of carbon isotope dis crimination and agronomic characters in bread wheat cross J. Theoretical and Applied Genetics, 1994,83 : 1023-1028. 被引量:1
  • 9Sayre K D, Aceved E, Austin R B. Carbon isotope discrimina- tion and grain yield for three bread wheat germplasm groups grown at different levels of water stress[J. Field Crops Re- search, 1995,41 . 45-54. 被引量:1
  • 10Merah O, Delens E, Monneveux P, et al. Grain yield, carbon isotope discrimination, mineral and silicon content in durum wheat under different precipitation regimes[J]. Physiology Plantarum, 1999,107 . 387-394. 被引量:1

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