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Effects of Light-Emitting Diode Irradiation on Growth Characteristics and Regulation of Porphyrin Biosynthesis in Rice Seedlings

机译:发光二极管辐射对水稻幼苗生长特性和卟啉生物合成调控的影响

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We examined the effects of light quality on growth characteristics and porphyrin biosynthesis of rice seedlings grown under different wavelengths from light emitting diodes (LEDs). After 10 days of exposure to various wavelengths of LEDs, leaf area and shoot biomass were greater in seedlings grown under white and blue LEDs than those of green and red LEDs. Both green and red LED treatments drastically decreased levels of protoporphyrin IX (Proto IX) and Mg-porphyrins compared to those of white LED, while levels of Mg-Proto IX monomethyl ester and protochlorophyllide under blue LED were decreased by 21% and 49%, respectively. Transcript levels of PPO1 were greatly upregulated in seedlings grown under red LED compared to white LED, whereas transcript levels of HO2 and CHLD were upregulated under blue LED. Overall, most porphyrin biosynthetic genes in the Fe-porphyrin branch remained almost constant or upregulated, while most genes in the Mg-porphyrin branch were downregulated. Expression levels of nuclear-encoded photosynthetic genes Lhcb and RbcS noticeably decreased after exposure to blue and red LEDs, compared to white LED. Our study suggests that specific wavelengths of LED greatly influence characteristics of growth in plants partly through altering the metabolic regulation of the porphyrin biosynthetic pathway, and possibly contribute to affect retrograde signaling.
机译:我们研究了光质量对发光二极管(LED)在不同波长下生长的水稻幼苗的生长特性和卟啉生物合成的影响。在暴露于各种波长的LED下10天后,在白色和蓝色LED下生长的幼苗的叶面积和枝条生物量大于绿色和红色LED。与白色LED相比,绿色和红色LED处理均显着降低了原卟啉IX(Proto IX)和Mg卟啉的水平,而蓝色LED下的Mg-Proto IX单甲酯和原叶绿素的水平分别降低了21%和49%,分别。与白色LED相比,红色LED下生长的幼苗中PPO1的转录水平显着上调,而蓝色LED下HO2和CHLD的转录水平上调。总体而言,铁-卟啉分支中的大多数卟啉生物合成基因几乎保持恒定或上调,而镁-卟啉分支中的大多数基因被下调。与白色LED相比,暴露于蓝色和红色LED后,核编码的光合基因Lhcb和RbcS的表达水平明显降低。我们的研究表明,LED的特定波长部分地通过改变卟啉生物合成途径的代谢调节来极大地影响植物的生长特性,并且可能有助于影响逆行信号。

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