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Quantifying the relationship between temperature regulation in the ear and floret development stage in wheat (Triticum aestivum L.) under heat and drought stress

机译:定量研究高温和干旱胁迫下小麦(Triticum aestivum L.)的穗部温度调节与小花发育阶段之间的关系。

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摘要

Thermal imaging is a valuable tool for the elucidation of gas exchange dynamics between a plant and its environment. The presence of stomata in wheat glumes and awns offers an opportunity to assess photosynthetic activity of ears up to and during flowering. The knowledge of spatial and temporal thermodynamics of the wheat ear may provide insight into interactions between floret developmental stage (FDS), temperature depression (TD) and ambient environment, with potential to be used as a high-throughput screening tool for breeders. A controlled environment study was conducted using six spring wheat (Triticum aestivum L.) genotypes of the elite recombinant inbred line Seri/Babax. Average ear temperature (AET) was recorded using a hand held infrared camera and gas exchange was measured by enclosing ears in a custom built cuvette. FDS was monitored and recorded daily throughout the study. Plants were grown in pots and exposed to a combination of two temperature and two water regimes. In the examined wheat lines, TD varied from 0.1°C to 0.6°C according to the level of stress imposed. The results indicated that TD does not occur at FDS F3, the peak of active flowering, but during the preceding stages prior to pollen release and stigma maturity (F1-F2). These findings suggest that ear temperature during the early stages of anthesis, prior to pollen release and full extension of the stigma, are likely to be the most relevant for identifying heat stress tolerant genotypes.
机译:热成像是阐明工厂及其环境之间的气体交换动力学的宝贵工具。小麦颖片和芒中的气孔的存在为评估直至开花期的耳朵的光合作用提供了机会。小麦穗的时空热力学知识可以提供对小花发育阶段(FDS),温度降低(TD)和周围环境之间相互作用的深入了解,并有可能被用作育种者的高通量筛选工具。使用六种优良重组自交系Seri / Babax的春小麦(Triticum aestivum L.)基因型进行了对照环境研究。使用手持式红外热像仪记录平均耳朵温度(AET),并通过将耳朵封闭在定制的比色杯中来测量气体交换。在整个研究过程中每天监测和记录FDS。使植物在盆中生长并暴露于两种温度和两种水处理的组合。在所检查的小麦品系中,TD根据施加的压力水平在0.1°C至0.6°C之间变化。结果表明TD不会出现在FDS F3上,它是活跃开花的高峰,而是在花粉释放和柱头成熟(F1-F2)之前的阶段。这些发现表明,在花粉释放和柱头完全伸长之前,花期早期的耳温可能与鉴定耐热基因型最相关。

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