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首页> 外文期刊>Environmental and experimental botany >The role of antioxidant defense systems at differential salt tolerance of Hordeum marinum Huds. (sea barleygrass) and Hordeum vulgare L. (cultivated barley)
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The role of antioxidant defense systems at differential salt tolerance of Hordeum marinum Huds. (sea barleygrass) and Hordeum vulgare L. (cultivated barley)

机译:抗氧化剂防御系统在大麦大麦耐盐性差异中的作用。 (大麦草)和大麦(栽培大麦)

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摘要

Barley (Hordeum vulgare), one of the world's most extensively cultivated crops, is regarded as salt tolerant compared with other Triticeae members. There are also differences in salt tolerance between barley species. Hordeum marinum (sea barleygrass) inhabiting salt marshes is regarded as being markedly more salt tolerant than H. vulgare (cultivated barley). Moreover, it has been considered one of the most important wild species of barley in terms of having a source of genes for improvement of salt tolerance of wheat. The role of osmoregulation and ion homeostasis on salt tolerance of H. marinum has already been reported. However, the role of antioxidant defense system on salt tolerance of H. marinum has not been addressed yet. Therefore, in the present study, we investigated the changes in the lipid peroxidation, antioxidant enzyme activities [superoxide dismutase (SOD), catalase (CAT), peroxidase (POX), ascorbate peroxidase (APX) and glutathione reductase (GR)] and isoenzymatic profiles of some antioxidant enzymes (SOD, APX, GR) in H. marinum and H. vulgare cv. Tokak 157/37, comparatively. H. marinum and H. vulgare were subjected to 0, 150 and 300mM NaCl stress for 7 days. Shoot FW (fresh weight) and DW (dry weight) of both species were decreased at 300mM NaCl, being more pronounced in H. vulgare. Shoot RGR (relative growth rate) of H. vulgare was more sensitive to NaCl than H. marinum. Similarly, stomatal conductance (g s) was also reduced in both species by salt treatment, but it was more pronounced in H. vulgare. Salt treatment had no effects on chlorophyll fluorescence (Fv/Fm) in both species. Peroxidation of lipid membranes showed no change in H. marinum under salt stress while it increased by 60% in H. vulgare at 300mM NaCl. At 150mM NaCl, the activities of all antioxidant enzymes (except SOD) increased in both species. However, the activities of some antioxidant enzymes and their isoenzymes in H. vulgare either remained unchanged (CAT, POX and APX) or even decreased (SOD, GR) at 300mM NaCl. Nevertheless, the activities of all antioxidant enzymes of H. marinum increased significantly at 300mM NaCl. Moreover, while new isoenzymes (APX5, GR5) were identified in H. marinum, intensities of some isoenzymes (APX1, 2, 6, 7 and GR1, 3, 6, 7) increased at 300mM NaCl. These findings possibly suggest that H. marinum has a better protection mechanism against salt-induced oxidative damage than H. vulgare, by inducing activity of antioxidant enzymes and their isoenzymes.
机译:大麦(大麦)是世界上种植最广泛的农作物之一,与其他小麦的成员相比,被认为具有耐盐性。大麦种类之间的耐盐性也有所不同。居住在盐沼中的海洋大麦(海大麦)被认为比普通大麦(H. vulgare)对盐的耐受性强。此外,就其具有改善小麦耐盐性的基因来源而言,它被认为是最重要的大麦野生种之一。渗透调节和离子稳态对海藻的耐盐性的作用已有报道。然而,抗氧化剂防御系统对海藻的耐盐性的作用尚未得到解决。因此,在本研究中,我们研究了脂质过氧化,抗氧化酶活性[超氧化物歧化酶(SOD),过氧化氢酶(CAT),过氧化物酶(POX),抗坏血酸过氧化物酶(APX)和谷胱甘肽还原酶(GR)]和同工酶的变化。 marinum和H. vulgare cv中某些抗氧化酶(SOD,APX,GR)的分布相对而言,Tokak 157/37。将H. marinum和H. vulgare置于0、150和300mM NaCl胁迫下7天。在300mM NaCl中,这两个物种的新梢FW(鲜重)和DW(干重)均降低,在寻常豆中更为明显。菜豆的芽RGR(相对生长速率)比菜豆更对NaCl敏感。同样,通过盐处理,两种物种的气孔导度(g s)也会降低,但在大头菜中更为明显。盐处理对两种物种的叶绿素荧光(Fv / Fm)均无影响。在盐胁迫下,脂膜的过氧化没有显示出H. marinum的变化,而在300mM NaCl的H. vulgare中,其增加了60%。在150mM NaCl中,两个物种中所有抗氧化酶(SOD除外)的活性均增加。然而,在300mM NaCl中,普通小球藻中的某些抗氧化酶及其同工酶的活性保持不变(CAT,POX和APX),甚至下降(SOD,GR)。尽管如此,在300mM NaCl溶液中,H.marinum的所有抗氧化酶的活性均显着增加。此外,尽管在海藻中发现了新的同工酶(APX5,GR5),但某些同工酶(APX1、2、6、7和GR1、3、6、7)的强度在300mM NaCl时增加。这些发现可能表明,H.marinum通过诱导抗氧化酶及其同工酶的活性,具有比H. vulgare更好的抗盐诱导的氧化损伤的保护机制。

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