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Loss of floral repressor function adapts rice to higher latitudes in Europe

机译:丧失花卉抑制功能使水稻适应欧洲的高纬度地区

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摘要

The capacity to discriminate variations in day length allows plants to align flowering with the most favourable season of the year. This capacity has been altered by artificial selection when cultivated varieties became adapted to environments different from those of initial domestication. Rice flowering is promoted by short days when HEADING DATE 1 (Hd1) and EARLY HEADING DATE 1 (Ehd1) induce the expression of florigenic proteins encoded by HEADING DATE 3a (Hd3a) and RICE FLOWERING LOCUS T 1 (RFT1). Repressors of flowering antagonize such induction under long days, maintaining vegetative growth and delaying flowering. To what extent artificial selection of long day repressor loci has contributed to expand rice cultivation to Europe is currently unclear. This study demonstrates that European varieties activate both Hd3a and RFT1 expression regardless of day length and their induction is caused by loss-of-function mutations at major long day floral repressors. However, their contribution to flowering time control varies between locations. Pyramiding of mutations is frequently observed in European germplasm, but single mutations are sufficient to adapt rice to flower at higher latitudes. Expression of Ehd1 is increased in varieties showing reduced or null Hd1 expression under natural long days, as well as in single hd1 mutants in isogenic backgrounds. These data indicate that loss of repressor genes has been a key strategy to expand rice cultivation to Europe, and that Ehd1 is a central node integrating floral repressive signals.
机译:区分日长变化的能力使植物能够将开花与一年中最有利的季节对齐。当栽培品种适应了不同于最初驯化的环境时,通过人工选择已改变了这种能力。 HEADING DATE 1(Hd1)和EARLY HEADING DATE 1(Ehd1)诱导HEADING DATE 3a(Hd3a)和RICE FLOWERING LOCUS T 1(RFT1)编码的荧光蛋白的表达会在短时间内促进水稻开花。开花的阻遏物在长日照下拮抗这种诱导作用,维持营养生长并延迟开花。目前尚不清楚人工选择长日阻抑基因座在何种程度上促进了水稻种植向欧洲的发展。这项研究表明,欧洲品种无论天长短都可以激活Hd3a和RFT1表达,并且它们的诱导是由主要的长日花阻抑物的功能丧失突变引起的。但是,它们对开花时间控制的作用因位置而异。在欧洲种质中经常观察到突变的金字塔,但是单个突变足以使水稻适应较高纬度的花朵。 Ehd1的表达增加了,在自然的长日中,Hd1的表达减少或为零的品种,以及等基因背景中的单个hd1突变体。这些数据表明,阻遏基因的丧失是将水稻种植扩展到欧洲的关键策略,而Ehd1是整合花卉抑制信号的中心节点。

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