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Chlorophyll fluorescence as a selection tool for cold tolerance of photosynthesis in maize (Zea mays L.)

机译:叶绿素荧光作为玉米光合作用耐寒性的选择工具

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摘要

The possibility of using quenching analysis of chlorophyll a fluorescence as a selection tool for improving the cold tolerance of maize was investigated in six genotypes differing greatly in the ability to develop a competent photosynthetic apparatus at low temperature. Upon gradual cooling, measurements of the quantum yield of electron transport (ΦPSII) indicated that leaves of tolerant genotypes, that developed at suboptimal temperature (15 °C), maintained higher rates of electron transport than leaves of sensitive genotypes. This difference was largely due to the ability of the tolerant plants to keep higher efficiency of excitation energy capture by open photosystem II reaction centres (F′v/F′m). The absence of genotypic differences in leaves that developed at optimal temperature indicates that the trait is not expressed constitutively, but relies on adaptation mechanisms. Furthermore, the genotypic difference was not expressed under increasing illumination at 15 °C and 25 °C suggesting that the trait is also low-temperature-specific and is not expressed solely in response to increasing excess light energy. Applying the method to flint and dent breeding population led to a substantial increase (up to 31%) in the photosynthetic capacity of hybrids between selected F3 inbreeding families grown at suboptimal temperature, demonstrating that the method is an efficient selection tool for improving the cold tolerance of maize through breeding
机译:对六种基因型使用叶绿素a荧光淬灭分析作为提高玉米耐寒性的选择工具的可能性进行了研究,这六种基因型在低温下开发出能胜任光合作用能力的能力差异很大。逐渐冷却后,对电子传递的量子产率(ΦPSII)的测量表明,在亚适温(15°C)下发育的耐受基因型叶片比敏感基因型叶片保持更高的电子传递速率。这种差异主要是由于耐性植物通过开放的光系统II反应中心(F'v / F'm)保持更高的激发能捕获效率的能力。在最佳温度下发育的叶片中没有基因型差异表明该性状不是组成型表达,而是依赖于适应机制。此外,在15°C和25°C的光照增加下没有表达出基因型差异,这表明该性状也是低温特异性的,并非仅响应于增加的过量光能而表达。将方法应用到火石和凹痕繁殖种群中,使在次适温下生长的选定F3近交系之间的杂种的光合能力大大提高(高达31%),这表明该方法是提高耐寒性的有效选择工具育种玉米

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