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首页> 外文期刊>Environmental Science and Pollution Research >Spermidine application reduces fluoride uptake and ameliorates physiological injuries in a susceptible rice cultivar by activating diverse regulators of the defense machinery
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Spermidine application reduces fluoride uptake and ameliorates physiological injuries in a susceptible rice cultivar by activating diverse regulators of the defense machinery

机译:通过激活国防机械的各种监管机构,氟胺应用减少了氟化物摄取和改善了易感水稻品种的生理损伤

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摘要

The manuscript illustrates the ameliorative effects of exogenously applied higher polyamine (PA), spermidine (Spd) in the susceptible indica rice cultivar IR-64 subjected to prolonged fluoride stress. The Spd treatment drastically reduced fluoride bioaccumulation by restricting entry of the anions through chloride channels and enabled better maintenance of the proton gradient via accumulation of P-H+/ATPase, thereby improving the root and shoot lengths, fresh and dry weights, RWC, chlorophyll content and activities of pyruvate dehydrogenase (PyrDH), alpha-amylase, and nitrate reductase (NR) in the Spd-treated, stressed plants. Expression of RuBisCo, PyrDH, alpha-amylase, and NR was stimulated. Spd supplementation reduced the molecular damage indices like malondialdehyde, lipoxygenase, protease activity, electrolyte leakage, protein carbonylation, H2O2, and methylglyoxal (detoxified by glyoxalase II). Mitigation of oxidative damage was facilitated by the accumulation and utilization of proline, glycine-betaine, total amino acids, higher PAs, anthocyanin, flavonoids, beta-carotene, xanthophyll, and phenolics as verified from the expression of genes like P5CS, BADH1, SAMDC, SPDS, SPMS, DAO, PAO, and PAL. Spd treatment activated the ascorbate-glutathione cycle in the stressed seedlings. Expression and activities of enzymatic antioxidants showed that GPOX, APX, GPX, and GST were the chief ROS scavengers. Exogenous Spd promoted ABA accumulation by upregulating NCED3 and suppressing ABA8ox1 expression. ABA-dependent osmotic stress-responsive genes like Osem, WRKY71, and TRAB1 as well as ABA-independent transcription factor encoding gene DREB2A were induced by Spd. Thus, Spd treatment ameliorated fluoride-mediated injuries in IR-64 by restricting fluoride uptake, refining the defense machinery and activating the ABA-dependent as well as ABA-independent stress-responsive genes.
机译:手稿说明了外源应用更高的多胺(PA),硫代胺(SPD)在易受氟化物胁迫的敏感籼稻品种IR-64中的改进效果。通过限制阴离子通过氯化物通道的进入并使得通过积聚P-H + / ATP酶的积聚来改善根部和枝条,红细胞,RWC,叶绿素含量,rwc,叶绿素含量的累积,使所述阴离子的进入急剧减少氟化物生物累积,从而使所述质子梯度更好地维持所述质子梯度。丙酮酸脱氢酶(Pyrdh),α-淀粉酶和硝酸盐还原酶(NR)的活性在SPD处理,应激植物中的活性。刺激了Rubisco,Pyrdh,α-淀粉酶和NR的表达。 SPD补充剂降低了丙二醛,脂氧合酶,蛋白酶活性,电解质泄漏,蛋白质羰基化,H 2 O 2和甲基乙二醛等分子损伤指数(通过乙醛酸酶II解毒)。通过脯氨酸,甘氨酸 - 甜菜碱,总氨基酸,较高的PAS,花青素,黄酮,β-胡萝卜素,黄酮,苯酚,酚醛酸,如P5CS,Badh1,Samdc等基因的表达所验证的,促进了氧化损伤的减缓,spds,spms,dao,pao和pal。 SPD处理在应力幼苗中激活抗坏血酸谷胱甘肽循环。酶促抗氧化剂的表达和活性表明,GPOX,APX,GPX和GST是首席ROS清除剂。外源性SPD通过上调NCED3并抑制ABA8OX1表达来促进ABA积累。 SPD诱导了ABA依赖性渗透应激响应基因,如OSEM,WRKY71和TRAB1以及编码基因DREB2A的ABA无关的转录因子。因此,通过限制氟化物摄取,精炼防御机械和激活ABA依赖性的应力响应基因,SPD处理在IR-64中改善了IR-64中的氟化物损伤。

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