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Effects of LED illumination spectra on glucosinolate and sulforaphane accumulation in broccoli seedlings

机译:LED照明光谱对西兰花幼苗葡萄糖苷和亚磺酸盐积累的影响

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摘要

Glucosinolates (GSLs) are well known for plant defense and human nutrition. In this study, broccoli seedlings were illuminated under different LED light, including white, red, blue, and 75% red + 25% blue (200 mmol.m(-2).s(-1)) for 4 weeks to investigate the effects of LED light on GSLs and sulforaphane biosynthesis. Results showed that red light promoted GSL biosynthesis and sulforaphane accumulation because red light could induce SOT18 expression to advance aliphatic GSLs biosynthesis, whereas the high tryptophan content and the upregulation of CYP79B2, CYP79B3, and CYP83B1 were attributed to indole GSL biosynthesis. Low-level methionine content and downregulated SOT18 were the main factors inhibiting GSLs and sulforaphane accumulation under blue LED illumination. BoHY5 gene expression was induced significantly and the yeast one-hybrid assay demonstrated BoHY5 could bind to SOT18 promoter. Consequently, BoHY5 inhibited SOT18 expression, and played a negative role in the GSL biosynthetic network.
机译:葡萄糖苷(GSL)是植物防御和人类营养的众所周知。在这项研究中,将西兰花幼苗在不同的LED光下照亮,包括白色,红色,蓝色和75%红色+ 25%蓝色(200mmol.m(-2))4周探讨LED光对GSL和亚磺酸盐生物合成的影响。结果表明,红光促进了GSL生物合成和亚磺酸盐的积累,因为红光可以诱导SOT18表达以提前脂族GSL生物合成,而CYP79B2,CYP79B3和CYP83B1的高色球含量和上调归因于吲哚GSL生物合成。低水平甲硫氨酸含量和下调的SOT18是在蓝色LED照明下抑制GSL和亚磺酸盐积累的主要因素。显着诱导Bohy5基因表达,并且酵母单杂合物测定表明BoHy5可与SOT18启动子结合。因此,BoHy5抑制了SOT18表达,并在GSL生物合成网络中发挥了负面作用。

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