首页> 外文期刊>Turkish Journal of Botany >Promotive effect of exogenously applied thiourea on key physiological parameters and oxidative defense mechanism in salt-stressed Zea mays L. plants
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Promotive effect of exogenously applied thiourea on key physiological parameters and oxidative defense mechanism in salt-stressed Zea mays L. plants

机译:外源施用硫脲对盐胁迫玉米中重要生理参数和氧化防御机制的促进作用

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摘要

A greenhouse experiment was conducted to examine the alleviating role of thiourea (TU) on antioxidants and some vital physiological attributes in salt-stressed plants of two maize cultivars. The maize cv. DK 5783 performed better than cv. Apex 836 in an initial experiment. Of the six TU levels used in the initial experiment, 400 and 500 mg L-1 were chosen for subsequent studies. The two cultivars were subjected to saline stress (100 mM NaCl) and two levels of TU were applied presowing or as foliage spray. Salt stress suppressed total biomass, maximum fluorescence yield (F-v/F-m), chlorophyll, and leaf water potential (Psi(w)), but it increased proline, hydrogen peroxide (H2O2), malondialdehyde (MDA), leaf osmolality (LO), membrane permeability (MP), and antioxidant enzymes. Exogenous TU application resulted in considerable increases in the dry weight of salt sensitive and tolerant cultivars (38% and 35%, respectively). TU partially improved the salt tolerance of maize plants; it reduced Na+ but increased N, K+, Ca2+, and P in the maize plants under saline regimes. TU regulated the growth of maize plants under stress conditions by reducing MP, MDA, and H2O2 levels, and altering activities of antioxidant enzymes as well as increasing photosynthetic pigments under a saline regime.
机译:进行了温室试验,以研究硫脲(TU)对两种玉米盐胁迫植物的抗氧化剂和一些重要生理特性的缓解作用。玉米简历。 DK 5783的性能优于简历。 Apex 836在初始实验中。在初始实验中使用的六个TU水平中,选择400和500 mg L-1进行后续研究。使两个品种经受盐胁迫(100 mM NaCl),并在播种前或以叶面喷施两种水平的TU。盐胁迫抑制了总生物量,最大荧光产量(Fv / Fm),叶绿素和叶片水势(Psi(w)),但增加了脯氨酸,过氧化氢(H2O2),丙二醛(MDA),渗透压(LO),膜通透性(MP)和抗氧化酶。外源施用TU导致盐敏感和耐盐品种的干重显着增加(分别为38%和35%)。 TU部分改善了玉米植物的耐盐性;在盐溶液中,它减少了玉米中的Na +,但增加了N,K +,Ca2 +和P。 TU通过降低MP,MDA和H2O2含量,改变抗氧化酶的活性以及增加盐分条件下的光合色素来调节胁迫条件下玉米的生长。

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