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首页> 外文期刊>The New Phytologist >Fluctuating, warm temperatures decrease the effect of a key floral repressor on flowering time in Arabidopsis thaliana
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Fluctuating, warm temperatures decrease the effect of a key floral repressor on flowering time in Arabidopsis thaliana

机译:波动的温暖温度降低了拟南芥中关键阻花剂对开花时间的影响

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摘要

The genetic basis of growth and development is often studied in constant laboratory environments; however, the environmental conditions that organisms experience in nature are often much more dynamic. We examined how daily temperature fluctuations, average temperature, day length and vernalization influence the flowering time of 59 genotypes of Arabidopsis thaliana with allelic perturbations known to affect flowering time. For a subset of genotypes, we also assessed treatment effects on morphology and growth. We identified 17 genotypes, many of which have high levels of the floral repressor FLOWERING LOCUS C (FLC), that bolted dramatically earlier in fluctuating - as opposed to constant - warm temperatures (mean=22 degrees C). This acceleration was not caused by transient VERNALIZATION INSENSITIVE 3-mediated vernalization, differential growth rates or exposure to high temperatures, and was not apparent when the average temperature was cool (mean=12 degrees C). Further, in constant temperatures, contrary to physiological expectations, these genotypes flowered more rapidly in cool than in warm environments. Fluctuating temperatures often reversed these responses, restoring faster bolting in warm conditions. Independently of bolting time, warm fluctuating temperature profiles also caused morphological changes associated with shade avoidance or high-temperature' phenotypes. Our results suggest that previous studies have overestimated the effect of the floral repressor FLC on flowering time by using constant temperature laboratory conditions.
机译:生长和发育的遗传基础经常在恒定的实验室环境中进行研究;但是,有机体在自然界中遇到的环境条件往往更具动态性。我们检查了每日温度波动,平均温度,日长和春化处理如何影响拟南芥59个基因型的花时间,并已知等位基因扰动会影响花时间。对于基因型的子集,我们还评估了治疗对形态和生长的影响。我们鉴定了17个基因型,其中许多具有较高的花卉阻遏物FLOWERING LOCUS C(FLC),它们在波动(相对于恒定)温暖温度(平均值= 22摄氏度)之前急剧上升。这种加速不是由瞬态VERAALIZATION INSENSITIVE 3介导的春化作用,不同的生长速率或暴露于高温引起的,并且在平均温度较低(平均= 12摄氏度)时并不明显。此外,在恒定温度下,与生理预期相反,这些基因型在凉爽的地方比在温暖的环境下开花更快。温度的波动通常会逆转这些响应,从而在温暖的条件下恢复更快的螺栓连接。与螺栓连接时间无关,温暖的温度波动也会导致与避光或高温表型相关的形态变化。我们的结果表明,以前的研究通过使用恒温实验室条件,高估了阻花剂FLC对开花时间的影响。

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