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一对花调控因子设定了水稻中 Hd3a 成花素表达的关键日长。

A pair of floral regulators sets critical day length for Hd3a florigen expression in rice.

机构信息

Photosynthesis and Photobiology Research Unit, National Institute of Agrobiological Sciences, Tsukuba, Japan.

出版信息

Nat Genet. 2010 Jul;42(7):635-8. doi: 10.1038/ng.606. Epub 2010 Jun 13.

Abstract

The critical day length triggering photoperiodic flowering is set as an acute, accurate threshold in many short-day plants, including rice. Here, we show that, unlike the Arabidopsis florigen gene FT, the rice florigen gene Hd3a (Heading date 3a) is toggled by only a 30-min day-length reduction. Hd3a expression is induced by Ehd1 (Early heading date 1) expression when blue light coincides with the morning phase set by OsGIGANTEA(OsGI)-dependent circadian clocks. Ehd1 expression is repressed by both night breaks under short-day conditions and morning light signals under long-day conditions. Ghd7 (Grain number, plant height and heading date 7) was acutely induced when phytochrome signals coincided with a photosensitive phase set differently by distinct photoperiods and this induction repressed Ehd1 the next morning. Thus, two distinct gating mechanisms--of the floral promoter Ehd1 and the floral repressor Ghd7--could enable manipulation of slight differences in day length to control Hd3a transcription with a critical day-length threshold.

摘要

在许多短日照植物中,包括水稻,触发光周期开花的关键日长被设定为一个急性、准确的阈值。在这里,我们表明,与拟南芥成花素基因 FT 不同,水稻成花素基因 Hd3a(抽穗期 3a)仅通过 30 分钟的日长缩短即可切换。当蓝光与由 OsGIGANTEA(OsGI)依赖性生物钟设定的早晨阶段相吻合时,Ehd1(早期抽穗日期 1)表达诱导 Hd3a 表达。在短日照条件下的夜间中断和长日照条件下的早晨光信号均抑制 Ehd1 的表达。在光周期和这种诱导不同设定的光敏感阶段下,当光质体信号与光敏相吻合时,Ghd7(粒数、株高和抽穗期 7)被急剧诱导,而下一个早晨,这种诱导抑制了 Ehd1 的表达。因此,两个不同的门控机制——花启动子 Ehd1 和花抑制剂 Ghd7——可以通过关键日长阈值来控制 Hd3a 转录,从而操纵日长的微小差异。

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