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Accession-specific flowering time variation in response to nitrate fluctuation in

机译:响应硝酸盐波动的加入特异性开花时间变化

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摘要

Flowering time, a key transition point from vegetative to reproductive growth, is regulated by an intrinsic complex of endogenous and exogenous signals including nutrient status. For hundreds of years, nitrogen has been well known to modulate flowering time, but the molecular genetic basis on how plants adapt to ever-changing nitrogen availability remains not fully explored. Here we explore how Arabidopsis natural variation in flowering time responds to nitrate fluctuation. Upon nitrate availability change, we detect accession- and photoperiod-specific flowering responses, which also feature a accession-specific dependency on growth traits. The flowering time variation correlates well with the expression of floral integrators, SOC1 and FT, in an accession-specific manner. We find that gene expression variation of key hub genes in the photoperiod-circadian-clock (GI), aging (SPLs) and autonomous (FLC) pathways associates with the expression change of these integrators, hence flowering time variation. Our results thus shed light on the molecular genetic mechanisms on regulation of accession- and photoperiod-specific flowering time variation in response to nitrate availability.
机译:开花时间,从营养生殖增长的关键过渡点是由内源性和外源信号的内在复合物调节,包括营养状况。据众所周知,氮气已经众所周知,氮气调节开花时间,但分子遗传基础对植物适应变化不断变化的氮可用性仍未完全探索。在这里,我们探索开花时间的自然变化如何应对硝酸盐波动。在硝酸盐可用性变化时,我们检测加入和光周期特异性开花响应,该响应还具有对生长特征的加入依赖性。开花时间变化在加入特异性方式中与花卉集成商,SOC1和FT的表达良好相关。我们发现光周期 - 昼夜昼夜时钟(GI),老化(SPL)和自主(FLC)途径的基因表达变化与这些积分器的表达变化,因此开花时间变化。因此,我们对硝酸盐可用性的调节和光周期特异性开花时间变化调节的分子遗传机制的结果。

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