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Effects of scion and rootstock genotypes on the anti-oxidant defense systems of grafted cucumber seedlings under NaCl stress

机译:接穗和砧木基因型对NaCl胁迫下嫁接黄瓜幼苗抗氧化防御系统的影响

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摘要

To assess the effects of scion and rootstock genotypes on plant growth and the anti-oxidant defense systems of cucumber, two cucumber cultivars ("Jinchun No. 2", a relatively salt-sensitive cultivar, and "Jinyu No. 1", a relatively salt-tolerant cultivar) were grafted onto two rootstocks ("Figleaf Gourd", a relatively salt-sensitive cultivar, and "Chaojiquanwang", a relatively salt-tolerant cultivar), respectively. The grafted plants were grown hydroponically and were exposed to 0 and 100 mmol L-1 NaCl stress under greenhouse conditions. The results showed that the salt injury index, leaf Na+ content and root hydrogen peroxide (H2O2) content in the plants grafted onto Figleaf Gourd were higher, whereas the activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) in the leaves and roots were lower than those of the plants grafted onto Chaojiquanwang under NaCl stress, independent of the scion genotypes. This resulted in smaller reductions in root dry weight, shoot dry weight and leaf area in the plants grafted onto Chaojiquanwang. The salt injury index was positively correlated with the leaf Na+ content and H2O2 content in the leaves and roots, but was negatively correlated with the activities of SOD and POD in the roots. The effects of scion on the salt injury index, Na+ content in the leaves, H2O2 content and activities of POD and CAT in the roots were significant, whereas there were no significant effects of scion on the root and shoot dry weights, leaf area and leaf relative water content. Overall, these results suggest the following: (1) the salt-tolerant rootstock was more important in determining the salt tolerance of the grafted cucumber seedlings under NaCl stress compared with the scion genotypes, (2) the higher salt tolerance of the grafted cucumber seedlings could be partially attributed to the lower leaf Na+ content and root H2O2 content and higher activities of SOD, POD and CAT in the roots.
机译:为了评估接穗和砧木基因型对黄瓜植物生长和抗氧化防御系统的影响,研究了两个黄瓜品种(相对盐敏感的品种“金春2号”和相对盐敏感的“金豫1号”)。将耐盐品种分别嫁接到两个砧木上(相对盐敏感品种“ Figleaf Gourd”和相对耐盐品种“ Chaojiquanwang”)。使嫁接的植物水培生长,并在温室条件下暴露于0和100 mmol L-1 NaCl胁迫。结果表明,嫁接到Figleaf Gourd上的植株的盐分伤害指数,叶片Na +含量和根系过氧化氢(H2O2)含量较高,而SOD,POD和过氧化氢酶活性较高。在NaCl胁迫下,其叶片和根系均低于嫁接到全基因王上的植株,而与接穗的基因型无关。这导致嫁接在超集全旺上的植物的根干重,茎干重和叶面积的减少较小。盐害指数与叶片和根系中的Na +和H 2 O 2含量呈正相关,而与根中SOD和POD的活性呈负相关。接穗对盐分伤害指数,叶片中Na +含量,根中H2O2含量以及根中POD和CAT活性的影响显着,而接穗对根部和枝干重量,叶面积和叶片没有显着影响。相对含水量。总体而言,这些结果表明:(1)与接穗基因型相比,耐盐砧木在决定NaCl胁迫下嫁接黄瓜幼苗的耐盐性方面更为重要;(2)嫁接黄瓜幼苗的耐盐性更高可能部分归因于较低的叶片Na +含量和根H2O2含量以及根中SOD,POD和CAT的较高活性。

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