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温度依赖型小麦幼苗对缺氧的代谢适应。

Temperature-dependent metabolic adaptation of Triticum aestivum seedlings to anoxia.

机构信息

ARC Centre of Excellence in Plant Energy Biology, Bayliss Building, M316, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Western Australia, Australia.

出版信息

Sci Rep. 2018 Apr 18;8(1):6151. doi: 10.1038/s41598-018-24419-7.

Abstract

Wheat (Triticum aestivum) is considered anoxia intolerant but it shows variance in anoxia responses between genotypes and environmental treatments. We firstly examined 4 day old seedlings of five wheat genotypes in response to anoxia at 15 °C and 28 °C by assessing growth rate, tissue damage and changes in metabolite abundances. Significant genotypic variations in anoxia tolerance were observed, especially at 28 °C. Wheat seedlings grown at 15 °C appeared to be more anoxia tolerant and showed less genotypic variation than those at 28 °C. To minimize seedling size variations and define the temperature effects, we grew two contrasting genotypes at 15 °C for 3.5 d and adapted to 4 different temperatures for 0.5 d before exposing them to anoxia at each adapted temperature. Genotypic variation in abundance of anoxia induced metabolites occurred at 24 °C and 28 °C but not at 15 °C and 20 °C. Tissue- and temperature-dependent metabolic adaptations to anoxia were revealed. In roots, the ability to maintain sugar/sugar-phosphate and TCA cycle metabolite levels and the accumulation of amino acids when temperature was below 24 °C correlated with anoxia tolerance. Temperatures between 20 °C-24 °C are critical for metabolic adaptation and suggest that further assessment of waterlogging/flooding tolerance of wheat seedlings should consider the temperature-dependence of tolerance in evaluations.

摘要

小麦(Triticum aestivum)被认为是不耐缺氧的,但它在不同基因型和环境处理对缺氧的反应中表现出差异。我们首先通过评估生长速度、组织损伤和代谢物丰度的变化,研究了五个小麦基因型在 15°C 和 28°C 下对缺氧的 4 天龄幼苗的反应。观察到对缺氧的耐受性存在显著的基因型变异,尤其是在 28°C 时。在 15°C 下生长的小麦幼苗似乎更耐缺氧,与在 28°C 下生长的幼苗相比,基因型变异较小。为了最小化幼苗大小的变化并确定温度的影响,我们在 15°C 下生长了两个具有对比性的基因型 3.5 天,并在适应 4 种不同温度 0.5 天后,将它们暴露在每种适应温度下的缺氧环境中。在 24°C 和 28°C 下发生了缺氧诱导代谢物的基因型变异,但在 15°C 和 20°C 下没有。揭示了对缺氧的组织和温度依赖性代谢适应。在根部,当温度低于 24°C 时,维持糖/糖磷酸盐和 TCA 循环代谢物水平以及积累氨基酸的能力与缺氧耐受性相关。20°C-24°C 之间的温度对代谢适应至关重要,这表明在评估小麦幼苗的耐涝/耐湿性时,应考虑到耐受性的温度依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83dd/5906562/943875494624/41598_2018_24419_Fig1_HTML.jpg

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