首页> 美国卫生研究院文献>Taylor Francis Open Select >Exogenous spermine pretreatment confers tolerance to combined high-temperature and drought stress in vitro in trifoliate orange seedlings via modulation of antioxidative capacity and expression of stress-related genes
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Exogenous spermine pretreatment confers tolerance to combined high-temperature and drought stress in vitro in trifoliate orange seedlings via modulation of antioxidative capacity and expression of stress-related genes

机译:外源精胺预处理可通过调节抗氧化能力和胁迫相关基因的表达赋予对三叶形橙苗体外高温和干旱胁迫的耐受性

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摘要

Spermine (Spm) is thought to play an important role in drought or high-temperature (HT) tolerance. However, it is not clear whether Spm confers similar resistance in the presence of both drought and HT, which often occur simultaneously. In the present study, the trifoliate orange (Poncirus trifoliata (L.) Raf.) seedlings were pretreated with 1 mmol L−1 Spm to evaluate their tolerance to combined drought and HT (45 ºC) stress. Spm-pretreated seedlings showed less leaf wilting, less water loss and less electrolyte leakage than control leaves not treated with Spm within 180 min of treatment. Histochemical staining with diaminobenzidine and nitro blue tetrazolium showed that Spm-pretreated seedlings accumulated less hydrogen peroxide and superoxide than those of control plants 60, 120 and 180 min after treatment when exposed to both drought and HT (45 ºC). However, superoxide dismutase, peroxidase and catalase were significantly more active in Spm-pretreated seedlings than in control seedlings. In addition, Spm-pretreated seedlings showed significantly higher expression of heat shock proteins, abscisic acid (ABA)-responsive element binding factor and 9-cis-epoxycarotenoid dioxygenase 3 than controls either before (0 min) or after (60, 120 and 180 min) combined drought and HT treatment. All of these data suggest that exogenous Spm pretreatment confers tolerance to simultaneously occurring drought and HT stresses. Spm may influence this by activating antioxidant enzymes, increasing the effectiveness of scavenging of reactive oxygen species. It may also increase the expression levels of stress-related genes that protect trifoliate orange seedlings from stress damage.
机译:精胺(Spm)被认为在干旱或高温(HT)耐受性中起重要作用。但是,尚不清楚在干旱和高温的情况下,Spm是否赋予相似的抗性,而干旱和高温通常同时发生。在本研究中,对三叶橙色(Poncirus trifoliata(L.)Raf。)幼苗进行了1mmol L -1 Spm预处理,以评估其对干旱和高温(45ºC)胁迫的耐受性。经SPM预处理的幼苗与未在180分钟内未经Spm处理的对照叶片相比,枯萎,水分流失和电解质泄漏少。用二氨基联苯胺和硝基蓝四唑鎓进行的组织化学染色显示,经Spm预处理的幼苗在暴露于干旱和高温(45ºC)后60、120和180分钟后比对照植物积累更少的过氧化氢和超氧化物。但是,超氧化物歧化酶,过氧化物酶和过氧化氢酶在Spm预处理的幼苗中比在对照幼苗中活性更高。此外,经Spm预处理的幼苗在(0分钟)之前或之后(60、120和180)的热激蛋白,脱落酸(ABA)响应元件结合因子和9-顺式-环氧类胡萝卜素双加氧酶3的表达明显高于对照。分钟)结合干旱和高温处理。所有这些数据表明,外源Spm预处理赋予了对同时发生的干旱和高温胁迫的耐受性。 Spm可能会通过激活抗氧化剂来影响这种作用,从而提高清除活性氧的效率。它还可能增加胁迫相关基因的表达水平,从而保护三叶形橙色幼苗免受胁迫损害。

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