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Apigenin pretreatment enhances growth and salinity tolerance of rice seedlings

机译:Apigenin预处理增强了水稻幼苗的生长和盐度耐受性

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摘要

Soil salinity is a limiting factor in rice production. Since flavonoids present in most plant tissues play multiple roles in plant-environment interactions, in this study, we focused on the contribution of flavone aglycone (Apigenin) to the adaptation of salinity-sensitive rice cultivar 'Koshihikari,' to salinity stress, for the first time. Rice seeds were soaked in Apigenin solution (10 ppm) for 24 h, then air-dried and grown hydroponically under 50 mM NaCl for 14 days. Apigenin pretreatment improved the growth of rice seedlings by enhancing shoot elongation and dry mass accumulation under both unstressed and NaCl-stress conditions, compared with that in the non-pretreated seedlings. Apigenin pretreatment significantly reduced Na+ accumulation in the salinity stressed seedlings, and helped to maintain a lower Na+/K+ ratio in all plant organs, compared with that in the non-pretreated seedlings, possibly by regulating the expression of some important Na+ transporter-encoding genes (OsHKT2;1, OsCHGC1, OsSOS1). Higher levels of lipid peroxidation and hydrogen peroxide (H2O2) concentrations were observed in the shoots of the salinity-stressed seedlings; however, lower levels of lipid per oxidation and H2O2 concentration were detected in the Apigenin-treated seedlings. Apigenin pretreatment was associated with the induction of the rice antioxidant defense system represented by the induced activities of the antioxidant enzymes Catalase (CAT) and Ascorbate peroxidase (APX) in the roots, as well as by increased accumulation of the non-enzymatic antioxidants carotenoids and flavonoids in the shoots, relative to that in the untreated seedlings, under salinity stress conditions. Together, these results suggest that Apigenin pretreatment can alleviate the damaging effects of salinity on rice seedlings, presumably by regulating selective ion uptake by the roots and translocation to the shoots, thereby maintaining higher K+/Na+ ratios critical for normal plant growth under salini
机译:土壤盐度是水稻生产中的限制因素。由于大多数植物组织中存在的黄酮类化合物在植物环境中发挥多种作用,因此在本研究中,我们专注于黄酮糖精(Apigenin)对盐度敏感水稻品种“Koshihikari”的适应的贡献,为盐度压力第一次。将水稻种子浸泡在Apigenin溶液(10ppm)中24小时,然后在50mM NaCl下空气干燥并生长50mM NaCl 14天。与非预处理幼苗相比,Apigenin预处理通过增强射击伸长率和干燥的质量积累来改善水稻幼苗的生长。 Apigenin预处理显着降低了盐度胁迫幼苗的Na +积累,并有助于在所有植物器官中保持较低的Na + / k +比,与非预处理幼苗相比,可能通过调节一些重要的Na +转运蛋白编码基因的表达(oskkt2; 1,OSCHGC1,OSSOS1)。在盐度胁迫幼苗的芽中观察到更高水平的脂质过氧化和过氧化氢(H2O2)浓度;然而,在Apigenin处理的幼苗中检测到每个氧化和H 2 O 2浓度的较低水平的脂质。 Apigenin预处理与抗氧化酶过氧化酶(CAT)和根部抗坏血酸过氧化物酶(APX)的诱导活性表示的水稻抗氧化剂防御系统的诱导相关,以及通过增加非酶促抗氧化剂类胡萝卜素的积累在盐度胁迫条件下,芽中的黄酮类化合物,相对于未经处理的幼苗。这些结果表明,Apigenin预处理可以缓解盐度对水稻幼苗的破坏性影响,推测通过通过根部的选择性离子吸收和对芽的易位来调节选择性离子吸收,从而保持较高的K + / Na +比对于萨尔尼下的正常植物生长至关重要

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