首页> 外文期刊>Photosynthesis Research: An International Journal >High light exposure on seed coat increases lipid accumulation in seeds of castor bean (Ricinus communis L.), a nongreen oilseed crop
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High light exposure on seed coat increases lipid accumulation in seeds of castor bean (Ricinus communis L.), a nongreen oilseed crop

机译:种皮的高光照增加了蓖麻籽(Ricinus communis L。)(一种非绿色油料作物)种子中脂质的积累

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Little was known on how sunlight affects the seed metabolism in nongreen seeds. Castor bean (Ricinus communis L.) is a typical nongreen oilseed crop and its seed oil is an important feedstock in industry. In this study, photosynthetic activity of seed coat tissues of castor bean in natural conditions was evaluated in comparison to shaded conditions. Our results indicate that exposure to high light enhances photosynthetic activity in seed coats and consequently increases oil accumulation. Consistent results were also reached using cultured seeds. High-throughput RNA-Seq analyses further revealed that genes involved in photosynthesis and carbon conversion in both the Calvin-Benson cycle and malate transport were differentially expressed between seeds cultured under light and dark conditions, implying several venues potentially contributing to light-enhanced lipid accumulation such as increased reducing power and CO2 refixation which underlie the overall lipid biosynthesis. This study demonstrated the effects of light exposure on oil accumulation in nongreen oilseeds and greatly expands our understanding of the physiological roles that light may play during seed development in nongreen oilseeds. Essentially, our studies suggest that potential exists to enhance castor oil yield through increasing exposure of the inflorescences to sunlight either by genetically changing the plant architecture (smart canopy) or its growing environment.
机译:关于阳光如何影响非绿色种子的种子代谢知之甚少。蓖麻子(Ricinus communis L.)是典型的非绿色油料种子作物,其种子油是工业上的重要原料。在这项研究中,与遮荫条件相比,在自然条件下评估了蓖麻子种皮组织的光合作用活性。我们的结果表明,暴露于强光下会增强种皮的光合作用活性,从而增加油的积累。使用培养的种子也获得了一致的结果。高通量RNA-Seq分析进一步表明,在明亮和黑暗条件下培养的种子之间差异表达了参与卡尔文-本森循环和苹果酸转运的光合作用和碳转化的基因,这暗示着可能促进光增强脂质积累的几个场所例如增加的还原能力和CO2固定,这是整个脂质生物合成的基础。这项研究证明了光照对非绿色油料种子中油积累的影响,并大大扩展了我们对光在非绿色油料种子发育过程中可能发挥的生理作用的理解。本质上,我们的研究表明存在通过基因改变植物结构(智能树冠)或其生长环境来增加花序暴露在阳光下来提高蓖麻油产量的潜力。

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