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首页> 外文期刊>Photosynthesis Research >Gene Loci in Maize Influencing Susceptibility to Chilling Dependent Photoinhibition of Photosynthesis
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Gene Loci in Maize Influencing Susceptibility to Chilling Dependent Photoinhibition of Photosynthesis

机译:玉米中的基因位点影响低温对光合作用光抑制的敏感性

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摘要

Variation in tolerance in chilling-dependent photoinhibition has been associated with a wide range of traits in comparative physiological studies. A sweet corn (Zea mays L.) population of 214 F2:3 families previously mapped to near-saturation with 93 RFLP DNA markers were subjected to low temperature and high-light events prior to measurement of the maximum dark-adapted quantum efficiency of PS II (F v /F m ), to identify loci associated with variation in chilling-dependent photoinhibition. In the first assay with ten families varying in seedling growth and germination, significant differences were observed among families in their response to and recovery from exposure to high light at low temperature. All the 214 F2:3 families from this population were then evaluated for tolerance of chilling-dependent photoinhibition in a controlled environment and then in three replicated trials in the field, each following naturally occurring chilling events during spring. The measured effects on F v /F m were analyzed with software that mapped segregating loci that regulate trait expression and linked to genetic markers (PLABQTL). QTL 3.096 (i.e. 96 cM on chromosome three) was consistently identified in both controlled environment and in the mean of the three field trails. Another QTL at 8.025, described the greatest percentage of total phenotypic variance (ca. 10%) for the mean reduction in F v /F m of all three periods of measurement in the field. A third QTL (4.136) showed a highly significant association in the third field trial. These three QTLs were closely associated with genes that have been mechanistically related to photoinhibition tolerance and repair. The results suggest that the ratio of F v /F m is an approach that may be used in establishing marker-assisted breeding for improved tolerance to chilling of maize in the light and in turn better early-season growth in cool temperate climates.
机译:在比较生理学研究中,低温依赖性光抑制的耐受性变化与多种性状有关。在测得最大暗适应度之前,先对甘薯(Zea mays L.)的214个F2:3 家族的近邻进行了低温和高光处理,这些群体之前已用93个RFLP DNA标记定位为接近饱和。 PS II(F v / F m )的量子效率,以识别与冷依赖性光抑制变化相关的基因座。在第一个试验中,十个科的幼苗生长和发芽各不相同,观察到各科在低温下暴露于高光下的反应和从中恢复的显着差异。然后评估了该种群中所有214个F2:3 家族在受控环境中对低温依赖性光抑制的耐受性,然后在田间进行了三项重复试验,每项试验均在春季自然发生低温事件之后进行。使用软件绘制了对F v / F m 的测量影响,该软件绘制了映射分离的基因座,该基因座调节性状表达并与遗传标记关联(PLABQTL)。在受控环境中和在三个野外试验的平均值中均一致地鉴定出QTL 3.096(即在3号染色体上为96 cM)。另一个位于8.025的QTL描述了在该领域中所有三个测量周期中F v / F m 的平均降低所占的总表型方差的最大百分比(约10%)。第三项QTL(4.136)在第三项田间试验中显示出很高的关联性。这三个QTL与与光抑制耐受性和修复机制相关的基因密切相关。结果表明,F v / F m 的比率是一种可用于建立标记辅助育种的方法,以提高玉米对冷光的耐受性,进而改善早期季节在凉爽的温带气候中生长。

著录项

  • 来源
    《Photosynthesis Research》 |2005年第3期|319-326|共8页
  • 作者单位

    Departamento de Fitotecnia Universidade Federal Rural do Rio de Janeiro 23851-970 Seropédica RJ Brazil;

    Departments of Crop Science and of Plant Biology 190 Plant and Animal Biotechnology Laboratory University of Illinois 1201 W Gregory Drive 61801 Urbana Illinois USA;

    Natural Resources and Environmental Sciences University of Illinois Urbana IL 61801 USA;

    Departments of Crop Science and of Plant Biology 190 Plant and Animal Biotechnology Laboratory University of Illinois 1201 W Gregory Drive 61801 Urbana Illinois USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chilling; chlorophyll fluorescence; low temperature; photoinhibition; photosynthesis; PSII; QTL; Zea mays;

    机译:低温;叶绿素荧光;低温;光抑制;光合作用;PSII;QTL;玉米;

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