School of Life Sciences, University of Warwick, Wellesbourne Campus, Warwickshire, CV35 9EF, UK.
Plant J. 2018 Jun;94(6):1098-1108. doi: 10.1111/tpj.13922. Epub 2018 May 17.
Seed vigour is a key trait essential for the production of sustainable and profitable crops. The genetic basis of variation in seed vigour has recently been determined in Brassica oleracea, but the relative importance of the interaction with parental environment is unknown. We produced seeds under a range of maternal environments, including global warming scenarios. Lines were compared that had the same genetic background, but different alleles (for high and low vigour) at the quantitative trait loci responsible for determining seed vigour by altering abscisic acid (ABA) content and sensitivity. We found a consistent effect of beneficial alleles across production environments; however, environmental stress during production also had a large impact that enhanced the genetic difference in seed performance, measured as germination speed, resistance to controlled deterioration and induction of secondary dormancy. Environmental interaction with allelic differences in key genes that determine ABA content and sensitivity develops a continuity in performance from rapid germination through to failure to complete germination, and increasing depths of seed dormancy. The genetic-environmental interaction revealed provides a robust mechanism of bet-hedging to minimize environmental risk during subsequent germination, and this could have facilitated the rapid change in seed behaviour (reduced dormancy and rapid germination) observed during crop domestication.
种子活力是生产可持续和盈利作物的关键特性。最近已经确定了甘蓝型油菜种子活力变异的遗传基础,但与亲本环境相互作用的相对重要性尚不清楚。我们在一系列母性环境下生产种子,包括全球变暖情景。比较了具有相同遗传背景但在决定种子活力的数量性状位点上具有不同等位基因(高活力和低活力)的系,这些等位基因通过改变脱落酸(ABA)含量和敏感性来决定种子活力。我们发现有益等位基因在生产环境中具有一致的影响;然而,生产过程中的环境胁迫也有很大的影响,增强了种子性能的遗传差异,表现在发芽速度、对可控劣化的抗性和诱导次生休眠上。决定 ABA 含量和敏感性的关键基因的等位基因差异与环境的相互作用,从快速发芽到无法完成发芽,以及增加种子休眠的深度,形成了性能的连续性。所揭示的遗传-环境相互作用提供了一种稳健的套期保值机制,以最大限度地降低随后发芽过程中的环境风险,这可能促进了在作物驯化过程中观察到的种子行为的快速变化(减少休眠和快速发芽)。