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纳米氧化锌对盐胁迫下小麦品种生理生化特性的影响。

Nano-Zinc Oxide and Effects on Physiological and Biochemical Aspects of Wheat Cultivars under Saline Conditions.

出版信息

Pak J Biol Sci. 2020 Mar;23(4):478-490. doi: 10.3923/pjbs.2020.478.490.

Abstract

BACKGROUND AND OBJECTIVE

Saline soils are restrictive factors to agriculture in arid and semi-arid regions, plant growth and productivity. Thus, it was important to consider how, nano-zinc oxide or bulk zinc oxide alleviates the oxidative salt stress in the presence of Arbuscular mycorrhiza (AM) fungi by two wheat cultivars (Sids 13 and Sakha 94).

MATERIALS AND METHODS

A field experiment was carried out during two winter successive seasons to study the beneficial role of nano-zinc oxide or bulk zinc oxide with different concentrations (5 and 10 mg L-1) in enhancing growth, some biochemical and physiological of two wheat cultivars under saline soil.

RESULTS

Soaking both wheat cultivars with nano-zinc oxide or bulk zinc oxide in the presence of AM improved growth parameters. All treatments increased significantly photosynthetic pigments, IAA, phenols contents, organic antioxidant enzyme activities and significant decrease in lipid peroxidation. some changes are observed in protein patterns, so several proteins were disappear, but others were selectively improved and synthesis of the new groups of protein was formed, some of these responses were observed through the effect of nano-zinc oxide or bulk zinc oxide and AM.

CONCLUSION

Nano-ZnO (10 mg L-1) in the presence of AM was the most effective treatments on both cultivars. Results showed superiority of Sakha 94 cultivar in most growth parameters and biochemical aspects than Sids 13 cultivar.

摘要

背景与目的

在干旱和半干旱地区,盐渍土是农业、植物生长和生产力的限制因素。因此,考虑纳米氧化锌或块状氧化锌如何在丛枝菌根真菌(AM)存在的情况下缓解盐胁迫的氧化,这对两种小麦品种(Sids 13 和 Sakha 94)来说非常重要。

材料与方法

在两个连续的冬季进行田间试验,研究纳米氧化锌或块状氧化锌在不同浓度(5 和 10 mg L-1)下对两种小麦品种在盐渍土中生长、一些生化和生理特性的有益作用。

结果

在 AM 存在的情况下,用纳米氧化锌或块状氧化锌浸泡两种小麦品种均可提高生长参数。所有处理均显著增加了光合色素、IAA、酚类物质含量、有机抗氧化酶活性,并显著降低了脂质过氧化。蛋白质图谱发生了一些变化,一些蛋白质消失,但其他蛋白质则选择性地得到改善并形成新的蛋白质组,这些反应中的一些是通过纳米氧化锌或块状氧化锌和 AM 的作用观察到的。

结论

在 AM 存在的情况下,纳米 ZnO(10 mg L-1)对两种品种均为最有效处理。结果表明,Sakha 94 品种在大多数生长参数和生化方面优于 Sids 13 品种。

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