首页> 外文期刊>American Journal of Plant Sciences >Isolation and Expression Profiling of a CONSTANS-Like Gene and Two FLOWERING LOCUS T-Like Genes from Spinacia oleracea L.
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Isolation and Expression Profiling of a CONSTANS-Like Gene and Two FLOWERING LOCUS T-Like Genes from Spinacia oleracea L.

机译:菠菜中CONSTANS样基因和两个花期T样基因的分离与表达谱分析

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Spinach (Spinacia oleracea L.) develops leaf rosettes under short-day conditions, and starts reproductive growth including bolting and flowering under long-day conditions. Japanese people prefer Oriental spinach that bolts easily with a shorter photoperiod than European spinach. This is one of the main reasons that Oriental spinach is difficult to grow year-round. In order to understand spinach flowering mechanisms and obtain knowledge for spinach breeding, we isolated one CONSTANS-like (COL) and two FLOWERING LOCUS T (FT) homologs, which are key components of photoperiodic regulation of flowering time, from a Japanese cultivar. The expression of SoCOL1 showed diurnal rhythm with the highest expression at the end of the dark cycle. This diurnal rhythm is similar to the expression of BvCOL1 from sugar beet (Beta vulgaris), whose flower-promoting effect was observed when overexpressed in Arabidopsis. Phylogenetic analysis showed that SoCOL1 is the closest homolog of BvCOL1, suggesting that SoCOL1 is an ortholog of BvCOL1. SoFT1 and SoFT2 are closely related to BvFT1 and BvFT2, respectively. The expression of SoFT1 and SoFT2 were induced in advance of flower bud formation after changing the photoperiod, but the expression level of SoFT1 was much lower than SoFT2. Currently, we are speculating that SoFT2 is a flower-promoting factor of spinach, and that SoFT1 has a role in light signaling because the expression of SoFT1 showed a diurnal rhythm.
机译:菠菜(Spinacia oleracea L.)在短日条件下会长成叶片玫瑰花结,在长日条件下会开始生殖生长,包括抽ing和开花。日本人更喜欢东方菠菜,这种菠菜比欧洲菠菜更容易用较短的光周期螺栓。这是东方菠菜难以全年生长的主要原因之一。为了了解菠菜的开花机理并获得菠菜育种知识,我们从日本栽培种中分离出一种CONSTANS样(COL)和两种FLOWERING LOCUS T(FT)同系物,它们是光周期调节开花时间的关键成分。 SoCOL1的表达表现出昼夜节律,在黑暗周期结束时表达最高。这种昼夜节律类似于甜菜(Beta vulgaris)中BvCOL1的表达,在拟南芥中过表达时观察到了其促花作用。系统发育分析表明,SoCOL1是BvCOL1的最接近同源物,表明SoCOL1是BvCOL1的直系同源物。 SoFT1和SoFT2分别与BvFT1和BvFT2密切相关。改变光周期后,在花芽形成之前诱导了SoFT1和SoFT2的表达,但SoFT1的表达水平远低于SoFT2。目前,我们推测SoFT2是菠菜的促花因子,并且SoFT1在光信号中具有作用,因为SoFT1的表达表现出昼夜节律。

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