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首页> 外文期刊>Plant signaling & behavior >Mesophyll-localized phytochromes gate stress- and light-inducible anthocyanin accumulation in Arabidopsis thaliana.
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Mesophyll-localized phytochromes gate stress- and light-inducible anthocyanin accumulation in Arabidopsis thaliana.

机译:叶肉定位的植物色素对拟南芥中的胁迫和光诱导性花色苷积累有影响。

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摘要

Abiotic stress and light induce anthocyanin accumulation in Arabidopsis. Here, we demonstrate that mesophyll-localized phytochromes regulate nitrogen-, phosphate- and cold-induced anthocyanin accumulation in shoots of Arabidopsis. Whereas ecotype-dependent differences result in distinct total levels of anthocyanin accumulation in response to light, cold, or nutrient-deficient treatments, phytochromes generally gate light- and/or stress-induced anthocyanin accumulation in shoots, as plants depleted of mesophyll-localized phytochromes lack or have highly attenuated induction of anthocyanins. Observed interactions between light and stress were found to be wavelength dependent, with red and far-red light stimulating higher total levels of anthocyanin accumulation under cold temperatures, especially in response to nitrogen limitation, whereas blue light did not. The roots of plants depleted of mesophyll-localized phytochromes still respond to nutrient deficiency as determined by elongation of primary roots and root hair elongation when plants are grown under nitrogen- or phosphate-limited conditions. Plants which are constitutively deficient in photoreceptors in both shoots and roots, i.e., phy or cry mutants, exhibit defects in light- and stress-induced anthocyanin accumulation and defects in root development. Taken together, these results suggest that the response to nutrient limitation in roots and shoots is under distinct control by spatial-specific pools of phytochromes in Arabidopsis.CAS Registry Numbers 7727-37-9 14265-44-2 11121-56-5
机译:非生物胁迫和光诱导拟南芥中花色苷的积累。在这里,我们证明了叶肉定位的植物色素调节拟南芥芽中氮,磷酸盐和冷诱导的花色苷积累。生态型依赖性差异导致对光,冷或缺乏营养的处理产生不同的总花色苷累积水平,而植物色素通常会耗尽芽中的光和/或胁迫诱导的花色素苷累积,因为植物中缺乏叶肉定位的植物色素缺乏或具有高度减弱的花色苷诱导作用。发现光和应力之间的观察到的相互作用是波长依赖性的,红色和远红色光在寒冷的温度下刺激花青素积累的总水平更高,尤其是在氮限制下,而蓝光则没有。当植物在氮或磷酸盐限制的条件下生长时,贫乏叶肉定位的植物色素的植物根仍然对营养缺乏产生反应,这取决于初级根的伸长和根毛的伸长。在茎和根中均缺乏光感受器的植物,即phy或cry突变体,在光和应力诱导的花色苷积累和根发育中均表现出缺陷。综上所述,这些结果表明,拟南芥中植物色素的空间特异性池对根和芽中营养限制的响应受到不同的控制。CAS登记号7727-37-9 14265-44-2 11121-56-5

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