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Nickel and ozone stresses induce differential growth, antioxidant activity and mRNA transcription in Oryza sativa cultivars

机译:镍和臭氧胁迫诱导差异生长,抗氧化活性和MRNA转录菊属苜蓿品种

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This study evaluates the influences of nickel and ozone exposure individually and/ or in combination on growth performance, antioxidant activity and genes up regulation of two rice cultivars Sakha 101 and Giza 178. Ni treatment at high doses (100?μM Ni) and 75 ppb O 3 alone reduced the fresh weight, mineral content, membrane integrity and Rubisco content. There was an increase in SOD and APX activity in the shoots of rice cultivars, whereas, there was a decrease in GR and GST in the roots and shoots. In contrast combined stresses appeared to be stimulatory for growth and mineral contents, Rubisco content and antioxidant enzymes. Nonspecific lipid transfer protein and transmembrane protein genes were up regulation in rice cultivars in response to Ni stress. Carotenoid cleavage dioxygenase is upregulated in response to ozone stress; RNA pseudouridine synthase, heat shock proteins and cytochrome P450-like were upregulated in response to combined stresses. The results revealed that the interactive effects of both stresses were antagonistic on growth parameters and antioxidant activities to overcome the adverse effects of both pollutants.
机译:本研究评估镍和臭氧暴露的影响单独和/或组合于生长性能,抗氧化活性和两种水稻Sakha 101和Giza 178的调节。Ni治疗高剂量(100μm)和75 ppb O 3单独降低了新鲜的重量,矿物质含量,膜完整性和Rubisco含量。水稻品种枝条中的SOD和APX活性有所增加,而根部和射击中的GR和GST会减少。相比之下,综合应力似乎是生长和矿物质含量,Rubisco含量和抗氧化酶的刺激。非特异性脂转移蛋白和跨膜蛋白基因响应Ni应激的水稻品种调节。 Carotenoid切割二氧化酶响应于臭氧应激而上调; RNA假尿苷合酶,热休克蛋白和细胞色素p450样响应于组合应力而上调。结果表明,两种应激的互动效果对生长参数和抗氧化活性拮抗,以克服两种污染物的不良反应。

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