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Asynchronous flowering and within-plant flowering diversity in wheat and the implications for crop resilience to heat

机译:小麦的异步开花和植物内开花多样性及其对作物耐热性的影响

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摘要

Self-pollination dominates in wheat , with a small level of out-crossing due to flowering asynchrony and male sterility. However, the timing and synchrony of male and female flowering in wheat is a crucial determinant of seed set and may be an important factor affecting gene flow and resilience to climate change. Here, a methodology is presented for assessing the timing and synchrony of flowering in wheat. From the onset of flowering until the end of anthesis, the anther and stigma activity of each floret was assessed on the first five developing ears in potted plants grown under ambient conditions and originating from cv Paragon or cvs Spark-Rialto backgrounds. At harvest maturity, seed presence, size and weight was recorded for each floret scored. The synchrony between pollen dehiscence and stigma collapse within a flower was dependent on its relative position in a spike and within a floret. Determined on the basis of synchrony within each flower, the level of pollination by pollen originating from other flowers reached approximately 30% and did not change throughout the duration of flowering. A modelling exercise parameterised by flowering observations indicated that the temporal and spatial variability of anther activity within and between spikes may influence the relative resilience of wheat to sudden, extreme climatic events which has direct relevance to predicted future climate scenarios in the UK.
机译:自花授粉在小麦中占主导地位,由于开花不同步和雄性不育,杂交很少。然而,小麦中雄花和雌花的开花时间和同步性是决定种子结实的关键因素,并且可能是影响基因流和抵御气候变化能力的重要因素。在这里,提出了一种方法,用于评估小麦开花的时间和同步性。从开花开始到花期结束,在环境条件下生长的,源自cv Paragon或css Spark-Rialto背景的盆栽植物的前五个发育穗上评估每个小花的花药和柱头活性。在收获成熟时,记录每个得分的小花的种子存在,大小和重量。花粉开裂和柱头塌陷之间的同步性取决于其在穗状花序和小花中的相对位置。根据每朵花的同步性确定,源自其他花的花粉的授粉水平达到约30%,并且在整个开花过程中都没有变化。开花观测参数化的模拟运动表明,峰值内和峰值之间花药活动的时间和空间变化可能会影响小麦对突然的极端气候事件的相对复原力,这与英国的未来气候预测情景直接相关。

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