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Senescence-Induced Serotonin Biosynthesis and Its Role in Delaying Senescence in Rice Leaves

机译:衰老诱导的5-羟色胺生物合成及其在延缓水稻叶片衰老中的作用

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摘要

Serotonin, which is well known as a pineal hormone in mammals, plays a key role in conditions such as mood, eating disorders, and alcoholism. In plants, although serotonin has been suggested to be involved in several physiological roles, including flowering, morphogenesis, and adaptation to environmental changes, its regulation and functional roles are as yet not characterized at the molecular level. In this study, we found that serotonin is greatly accumulated in rice (Oryza sativa) leaves undergoing senescence induced by either nutrient deprivation or detachment, and its synthesis is closely coupled with transcriptional and enzymatic induction of the tryptophan biosynthetic genes as well as tryptophan decarboxylase (TDC). Transgenic rice plants that overexpressed TDC accumulated higher levels of serotonin than the wild type and showed delayed senescence of rice leaves. However, transgenic rice plants, in which expression of TDC was suppressed through an RNA interference (RNAi) system, produced less serotonin and senesced faster than the wild type, suggesting that serotonin is involved in attenuating leaf senescence. The senescence-retarding activity of serotonin is associated with its high antioxidant activity compared to either tryptophan or chlorogenic acid. Results of TDC overexpression and TDC RNAi plants suggest that TDC plays a rate-limiting role for serotonin accumulation, but the synthesis of serotonin depends on an absolute amount of tryptophan accumulation by the coordinate induction of the tryptophan biosynthetic genes. In addition, immunolocalization analysis revealed that serotonin was abundant in the vascular parenchyma cells, including companion cells and xylem-parenchyma cells, suggestive of its involvement in maintaining the cellular integrity of these cells for facilitating efficient nutrient recycling from senescing leaves to sink tissues during senescence.
机译:5-羟色胺是哺乳动物中的一种松果激素,在情绪,饮食失调和酒精中毒等疾病中起着关键作用。在植物中,尽管有人建议血清素参与多种生理作用,包括开花,形态发生和对环境变化的适应性,但其调节和功能作用尚未在分子水平上表征。在这项研究中,我们发现5-羟色胺在受营养剥夺或脱离诱导的水稻叶片中大量积累,其合成与色氨酸生物合成基因以及色氨酸脱羧酶的转录和酶促诱导密切相关( TDC)。 TDC过度表达的转基因水稻植物比野生型植物积累了更高水平的血清素,并显示了水稻叶片的衰老。但是,转基因水稻植株中的TDC通过RNA干扰(RNAi)系统被抑制,其产生的5-羟色胺含量和衰老速度都快于野生型,这表明5-羟色胺参与了叶片衰老的减弱。与色氨酸或绿原酸相比,5-羟色胺的延缓衰老活性与其高抗氧化活性有关。 TDC过表达和TDC RNAi植物的结果表明TDC对5-羟色胺积累起限速作用,但5-羟色胺的合成取决于色氨酸生物合成基因的协同诱导,其绝对量取决于色氨酸的积累。此外,免疫定位分析表明,在包括结合细胞和木质部薄壁组织在内的血管薄壁组织细胞中,血清素含量丰富,表明其参与维持这些细胞的细胞完整性,以促进衰老过程中从衰老叶片到沉陷组织的有效营养循环。 。

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