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拟南芥材料中春化作用温度范围的自然变异。

Natural variation in the temperature range permissive for vernalization in accessions of Arabidopsis thaliana.

机构信息

Graduate Program in Cellular and Molecular Biology, University of Wisconsin-Madison, 433 Babcock Drive, Madison, WI 53706, USA.

出版信息

Plant Cell Environ. 2012 Dec;35(12):2181-91. doi: 10.1111/j.1365-3040.2012.02548.x. Epub 2012 Jun 22.

Abstract

Vernalization is an acceleration of flowering in response to chilling, and is normally studied in the laboratory at near-freezing (2-4 °C) temperatures. Many vernalization-requiring species, such as Arabidopsis thaliana, are found in a range of habitats with varying winter temperatures. Natural variation in the temperature range that elicits a vernalization response in Arabidopsis has not been fully explored. We characterized the effect of intermediate temperatures (7-19 °C) on 15 accessions and the well-studied reference line Col-FRI. Although progressively warmer temperatures are gradually less effective at activating expression of the vernalization-specific gene VERNALIZATION-INSENSITIVE 3 (VIN3) and in accelerating flowering, there is substantial natural variation in the upper threshold (T(max) ) of the flowering-time response. VIN3 is required for the T(max) (13 °C) response of Col-FRI. Surprisingly, even 16 °C treatment caused induction of VIN3 in six tested lines, despite the ineffectiveness of this temperature in accelerating flowering for two of them. Finally, we present evidence that mild acceleration of flowering by 19 °C exposure may counterbalance the flowering time delay caused by non-inductive photoperiods in at least one accession, creating an appearance of photoperiod insensitivity.

摘要

春化作用是指植物对低温诱导开花的反应,通常在接近冰点(2-4°C)的实验室温度下进行研究。许多需要春化作用的物种,如拟南芥,存在于具有不同冬季温度的各种生境中。拟南芥春化反应的温度范围的自然变异尚未得到充分探索。我们研究了中间温度(7-19°C)对 15 个品系和经过充分研究的 Col-FRI 参考系的影响。虽然逐渐升高的温度对激活春化特异性基因 VERNALIZATION-INSENSITIVE 3 (VIN3) 的表达和加速开花的效果逐渐减弱,但在开花时间响应的上限(T(max))方面存在很大的自然变异。VIN3 是 Col-FRI 的 T(max)(13°C)响应所必需的。令人惊讶的是,即使在 16°C 处理下,也能诱导六个测试品系中 VIN3 的表达,尽管对于其中两个品系来说,这种温度对加速开花没有效果。最后,我们提供了证据表明,19°C 暴露对开花时间的轻度加速可能会抵消至少一个品系中非诱导光周期引起的开花时间延迟,从而产生光周期不敏感性的表观现象。

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