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Truncation of grain filling in wheat (Triticum aestivum) triggered by brief heat stress during early grain filling: association with senescence responses and reductions in stem reserves

机译:早期籽粒灌浆过程中短暂的热胁迫触发小麦籽粒充实的截断:与衰老反应和茎储备减少相关

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摘要

Short heat waves during grain filling can reduce grain size and consequently yield in wheat (Triticum aestivum L.). Grain weight responses to heat represent the net outcome of reduced photosynthesis, increased mobilisation of stem reserves (water-soluble carbohydrates, WSC) and accelerated senescence in the grain. To compare their relative roles in grain weight responses under heat, these characteristics were monitored in nine wheat genotypes subjected to a brief heat stress at early grain filling (37 degrees C maximum for 3 days at 10 days after anthesis). Compared with the five tolerant varieties, the four susceptible varieties showed greater heat-triggered reductions in final grain weight, grain filling duration, flag leaf chla and chlb content, stem WSC and PSII functionality (F-v/F-m). Despite the potential for reductions in sugar supply to the developing grains, there was little effect of heat on grain filling rate, suggesting that grain size effects of heat may have instead been driven by premature senescence in the grain. Extreme senescence responses potentially masked stem WSC contributions to grain weight stability. Based on these findings, limiting heat-triggered senescence in the grain may provide an appropriate focus for improving heat tolerance in wheat.
机译:籽粒灌浆过程中短时间的热浪可以减小小麦的籽粒尺寸,从而降低单产(小麦)。谷物对热量的响应代表了光合作用降低,茎储备(水溶性碳水化合物,WSC)动员增加和谷物衰老加速的最终结果。为了比较它们在加热下对谷物重量响应中的相对作用,在九个小麦基因型中,在灌浆初期(花后10天最高37摄氏度,持续3天,最高37摄氏度)对这些基因型进行了监测。与五个耐性品种相比,四个易感品种在最终粒重,籽粒充实持续时间,旗叶chla和chlb含量,茎WSC和PSII功能性(F-v / F-m)上表现出更大的热触发降低。尽管有可能减少向发育中谷物的糖供应,但热量对谷物填充率的影响很小,这表明热量的晶粒尺寸效应可能已由谷物中的过早衰老驱动。极端的衰老反应可能掩盖了茎干WSC对谷物重量稳定性的贡献。基于这些发现,限制谷物中热触发的衰老可能为提高小麦的耐热性提供了适当的重点。

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