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      https://www.riss.kr/link?id=A103619520

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      다국어 초록 (Multilingual Abstract)

      Hexaploid wheat (Triticum aestivum L.) exceeds about 30% of the world’s cereal production and cultivated over 220 million ha worldwide. Heat stress during the grain filling period gives detrimental effect on crop yields and has emerged as a serious ...

      Hexaploid wheat (Triticum aestivum L.) exceeds about 30% of the world’s cereal production and cultivated over 220 million ha worldwide. Heat stress during the grain filling period gives detrimental effect on crop yields and has emerged as a serious problem throughout the world. Korean wheat cultivars that were released since 1960s were developed for various aims such as winter hardness, earliness, and pest resistance, etc. However, heat stress resistance is an emerging target for wheat breeding nowadays. Selected 11 Korean wheat cultivars (“Baegjoong”, “Dajung”, “Goso”, “Hanbaek”, “Jokyung”, “Joeun”, “Jopum”, “Keumgang”, “Olgeuru”, “Sinmichal”, “Uri”) were exposed to high temperature from DAF (days after flowering) 9~13. In this study, plant responses to heat stress as measured by reduction ratios of total chlorophyll contents, 100 seed weight, shoot dry weight can be translated into degree of tolerance. Therefore, these parameters can be used in wheat breeding for heat tolerance during grain filling period. The obtained results allow us to classify cultivars for heat stress tolerance. Pedigree information of Korean cultivars was shown that wheat line of either tolerant, moderate tolerant, or susceptible trait is succeeded to their descendent, which enable breeders to develop heat stress tolerant wheat by appropriate parental choice.

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      참고문헌 (Reference)

      1 Gibson L, "Yield components of wheat grown under high temperature stress during reproductive growth" 39 : 1841-1846, 1999

      2 Chen X, "Wheat stripe rust epidemics and races of Puccinia striiformis f. sp. tritici in the United States in 2000" 86 : 39-46, 2000

      3 Simon A, "The use of ampicillin in a simplified selective medium for the isolation of fluorescent pseudomonads" 37 : 459-460, 1974

      4 Wardlaw I, "The response of wheat to high temperature following anthesis: The rate and duration of kernel filling" 22 : 391-397, 1995

      5 Porter JR, "Temperatures and the growth and development of wheat: a review" 10 : 23-36, 1999

      6 Tewari AK, "Temperature-stress-induced impairment of chlorophyll biosynthetic reactions in cucumber and wheat" 117 : 851-858, 1998

      7 Xue GP, "TaMYB13 is a transcriptional activator of fructosyltransferase genes involved in β‐2, 6‐linked fructan synthesis in wheat" 68 : 857-870, 2011

      8 Randall P, "Some effects of temperature regime during grain filling on wheat quality" 41 : 603-617, 1990

      9 Grover D, "Post-harvest losses in wheat crop in punjab: Past and Present" 26 : 293-297, 2013

      10 Reynolds M, "Physiological and morphological traits associated with spring wheat yield under hot, irrigated conditions" 21 : 717-730, 1994

      1 Gibson L, "Yield components of wheat grown under high temperature stress during reproductive growth" 39 : 1841-1846, 1999

      2 Chen X, "Wheat stripe rust epidemics and races of Puccinia striiformis f. sp. tritici in the United States in 2000" 86 : 39-46, 2000

      3 Simon A, "The use of ampicillin in a simplified selective medium for the isolation of fluorescent pseudomonads" 37 : 459-460, 1974

      4 Wardlaw I, "The response of wheat to high temperature following anthesis: The rate and duration of kernel filling" 22 : 391-397, 1995

      5 Porter JR, "Temperatures and the growth and development of wheat: a review" 10 : 23-36, 1999

      6 Tewari AK, "Temperature-stress-induced impairment of chlorophyll biosynthetic reactions in cucumber and wheat" 117 : 851-858, 1998

      7 Xue GP, "TaMYB13 is a transcriptional activator of fructosyltransferase genes involved in β‐2, 6‐linked fructan synthesis in wheat" 68 : 857-870, 2011

      8 Randall P, "Some effects of temperature regime during grain filling on wheat quality" 41 : 603-617, 1990

      9 Grover D, "Post-harvest losses in wheat crop in punjab: Past and Present" 26 : 293-297, 2013

      10 Reynolds M, "Physiological and morphological traits associated with spring wheat yield under hot, irrigated conditions" 21 : 717-730, 1994

      11 Alkhatib K, "Photosynthesis and productivity during high-temperature stress of wheat genotypes from major world regions" 30 : 1127-1132, 1990

      12 Maestri E, "Molecular genetics of heat tolerance and heat shock proteins in cereals" 48 : 667-681, 2002

      13 Dupont FM, "Molecular and biochemical impacts of environmental factors on wheat grain development and protein synthesis" 38 : 133-146, 2003

      14 Huang L, "Map-based cloning of leaf rust resistance gene Lr21 from the large and polyploid genome of bread wheat" 164 : 655-664, 2003

      15 Mullarkey M, "Isolation and analysis of thermotolerant mutants of wheat" 51 : 139-146, 2000

      16 Hairat S, "Improving photosynthetic responses during recovery from heat treatments with brassinosteroid and calcium chloride in Indian bread wheat cultivars" 6 : 1827-1849, 2015

      17 Mittler R, "How do plants feel the heat?" 37 : 118-125, 2012

      18 Paulsen GM., "High temperature responses of crop plants" Phy. Det. Of Crop Yield 365-389, 1994

      19 Wardlaw I, "Heat tolerance in temperate cereals: an overview" 21 : 695-703, 1994

      20 Fokar M, "Heat tolerance in spring wheat. I. Estimating cellular thermotolerance and its heritability" 104 : 1-8, 1998

      21 Wahid A, "Heat tolerance in plants: an overview" 61 : 199-223, 2007

      22 Liu X, "Heat stress injury in relation to membrane lipid peroxidation in creeping bentgrass" 40 : 503-510, 2000

      23 Spiertz J, "Heat stress in wheat (Triticum aestivum L.):effects on grain growth and quality traits" 26 : 89-95, 2006

      24 Xu Q, "Functional and ultrastructural injury to photosynthesis in wheat by high temperature during maturation" 35 : 43-54, 1995

      25 Savin R, "Final grain weight in wheat as affected by short periods of high temperature during pre- and post-anthesis under field conditions" 26 : 453-458, 1999

      26 Ellen J., "Effects of plant density and nitrogen fertilization in winter wheat (Triticum aestivum L.) I. Production pattern and grain yield" 35 : 155-162, 1987

      27 Wiegand C, "Duration of grain filling and kernel weight of wheat as affected by temparature" 21 : 95-101, 1981

      28 Streck NA, "Climate change and agroecosystems:the effect of elevated atmospheric CO2 and temperature on crop growth, development, and yield" 35 : 730-740, 2005

      29 Rawson H, "Changes in leaf photosynthesis with plant ontogeny and relationships with yield per ear in wheat cultivars and 120progeny" 10 : 503-514, 1983

      30 Simpson G., "Association between grain yield per plant and photosynthetic area above the flag-leaf node in wheat" 48 : 253-260, 1968

      31 Saini H, "Abnormal sporogenesis in wheat (Triticum aestivum L.) induced by short periods of high temperature" 49 : 835-846, 1982

      32 Stone P, "A survey of the effects of high temperature during grain filling on yield and quality of 75wheat cultivars" 46 : 475-492, 1995

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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.6 0.6 0.49
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.45 0.41 0.952 0.07
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