首页> 外文期刊>Acta Physiologiae Plantarum >Exogenous application of thiamin promotes growth and antioxidative defense system at initial phases of development in salt-stressed plants of two maize cultivars differing in salinity tolerance
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Exogenous application of thiamin promotes growth and antioxidative defense system at initial phases of development in salt-stressed plants of two maize cultivars differing in salinity tolerance

机译:硫胺素的外源施用促进了两个耐盐性不同的玉米品种的盐胁迫植物在发育初期的生长和抗氧化防御系统。

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摘要

The effects of thiamin (Thi) applied as seed soaking or foliar spray on some key physiological parameters were investigated in two differentially salt-responsive maize (Zea mays L.) cultivars, DK 5783 and Apex 836 F1, exposed to saline stress in two different experiments. An initial experiment (germination experiment) was designed to identify appropriate doses of Thi which could lessen the deleterious effects of salt on plants and screen all available maize cultivars for their differential tolerance to salt stress (100 mM NaCl). The seeds of nine maize cultivars were soaked for 24 h in solutions containing six levels of Thi (25, 50, 75, 100, 125 and 150 mg l(-1)). Based on the results obtained from the germination experiment, maize cultivar DK 5783 was found to be the most salt tolerant and Apex 836 as the most sensitive cultivar. Also, of six Thi levels used, two levels (100 and 125 mg l(-1)) were chosen for subsequent studies. In the second experiment (glasshouse experiment), two maize cultivars, DK 5783 (salt tolerant) and Apex 836 (salt sensitive) were subjected to saline regime (100 mM NaCl) and two levels of Thi (100 and 125 mg l(-1)) applied as foliar spray. Salt stress markedly suppressed shoot and root dry mass, total chlorophylls ("a'' ? "b''), leaf water potential and maximum fluorescence yield (Fv/Fm) in the plants of both maize cultivars, but it increased proline accumulation, leaf osmotic pressure, malondialdehyde (MDA) and hydrogen peroxide (H2O2) concentrations, electrolyte leakage (EL) as well as activities of some key antioxidant enzymes, superoxide dismutase (SOD; EC. 1.15.1.1), peroxidase (POD; EC. 1.11.1.7) and catalase (CAT; EC. 1.11.1.6). Salt-induced reduction in plant growth parameters was higher in the salt-sensitive cultivar, Apex 836, which was found to be associated with relatively increased EL, and MDA and H2O2 levels, and decreased activities of the key antioxidant enzymes. Application of Thi as seed soaking or foliar spray partly mitigated the deleterious effects of salinity on plants of both maize cultivars. The most promising effect of Thi on alleviation of adverse effects of salt stress on maize plants was found when it was applied as foliar spray at 100 mg l(-1). Thiamin application considerably reduced tissue Na+ concentration, but improved those of N, P, Ca2+ and K+ in the salt-stressed maize plants. Exogenously applied thiamin-induced growth improvement in maize plants was found to be associated with reduced membrane permeability, MDA and H2O2 levels, and altered activities of some key antioxidant enzymes such as CAT, SOD and POD as well as increased photosynthetic pigment concentration under saline regime.
机译:在两个不同盐胁迫的玉米品种DK 5783和Apex 836 F1中,研究了两种浸盐胁迫下玉米中硫胺素(Thi)浸种或叶面喷洒对某些关键生理参数的影响。实验。设计了一个初始实验(发芽实验)以鉴定适当剂量的Thi,该剂量可以减轻盐对植物的有害影响,并筛选所有可用的玉米品种对盐胁迫(100 mM NaCl)的不同耐受性。将九个玉米品种的种子在含有六种Thi(25、50、75、100、125和150 mg l(-1))的溶液中浸泡24小时。根据发芽实验的结果,发现玉米品种DK 5783具有最高的耐盐性,而Apex 836是最敏感的品种。同样,在使用的六个Thi水平中,选择了两个水平(100和125 mg l(-1))用于后续研究。在第二个实验(温室实验)中,对两个玉米品种DK 5783(耐盐)和Apex 836(耐盐)进行了盐溶液处理(100 mM NaCl)和两个水平的Thi(100和125 mg l(-1) ))以叶面喷雾的形式使用。盐胁迫显着抑制了两个玉米品种的植物的茎和根干重,总叶绿素(“ a”→“ b”),叶水势和最大荧光产量(Fv / Fm),但增加了脯氨酸的积累,叶片渗透压,丙二醛(MDA)和过氧化氢(H2O2)浓度,电解质泄漏(EL)以及某些关键抗氧化酶,超氧化物歧化酶(SOD; EC.1.15.1.1),过氧化物酶(POD; EC.1.11)的活性.1.7)和过氧化氢酶(CAT; EC.1.11.1.6)。在对盐敏感的品种Apex 836中,盐诱导的植物生长参数的降低更高,这与EL,MDA和H2O2含量相对增加以及关键抗氧化酶活性降低有关。 Thi浸种或叶面喷洒可部分减轻盐度对两种玉米品种植物的有害影响。当以100 mg l(-1)的叶面喷施Thi时,发现Thi减轻盐胁迫对玉米植物的不利影响的最有希望的作用。硫胺素的施用显着降低了盐胁迫玉米植物中的组织Na +浓度,但改善了N,P,Ca2 +和K +的浓度。发现外源性硫胺素诱导的玉米植物生长改善与膜通透性降低,MDA和H2O2水平降低以及某些关键抗氧化剂酶(如CAT,SOD和POD)的活性改变以及盐分条件下光合色素浓度的升高有关。

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