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Light response, oxidative stress management and nucleic acid stability in closely related Linderniaceae species differing in desiccation tolerance

机译:干燥耐受性不同的密切相关的桔梗科植物的光响应,氧化应激管理和核酸稳定性

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摘要

In the present study, three closely related Linderniaceae species which differ in their sensitivity to desiccation are compared in response to light and oxidative stress defence. Lindernia brevidens, a desiccation-tolerant plant, displayed intense purple pigmentation in leaves under long-day conditions in contrast to Craterostigma plantagineum (desiccation tolerant) and Lindernia subracemosa (desiccation sensitive). The intense pigmentation in leaves does not affect the desiccation tolerance behaviour but seems to be related to oxidative stress protection. Green leaves of short-day and purple leaves of long-day plants provided suitable material for comparing basic photosynthetic parameters. An increase in non-photochemical quenching in purple leaves appears to prevent photoinhibition. Treatment with methyl viologen decreased the photochemical activities in both long-day and short-day plants but long-day plants which accumulate anthocyanins maintained a higher non-photochemical quenching than short-day plants. No differences were seen in the expression of desiccation-induced proteins and proteins involved in carbohydrate metabolism in short-day and long-day grown plants, whereas differences were observed in the expression of transcripts encoding chloroplast-localised stress proteins and transcripts encoding antioxidant enzymes. While the expression of genes encoding antioxidant enzymes were either constitutive or up-regulated during desiccation in C. plantagineum, the expression was down-regulated in L. subracemosa. RNA expression analysis indicated degradation of mRNA during desiccation in L. subracemosa but not in desiccation tolerant species. These results indicate that a better oxidative stress management and mRNA stability are correlated with desiccation tolerance.
机译:在本研究中,比较了三种对干燥敏感度不同的密切相关的Linderniaceae物种,以应对光和氧化胁迫防御。耐干燥的植物Lindernia brevidens在长时间条件下的叶子中会显示出强烈的紫色色素沉淀,而Craterostigma plantagineum(耐干燥)和Lindernia subracemosa(对干燥敏感)则相反。叶片中强烈的色素沉着不会影响耐干燥性,但似乎与氧化应激保护有关。短日的绿叶和长日的植物的紫色叶为比较基本的光合参数提供了合适的材料。紫色叶片中非光化学猝灭的增加似乎阻止了光抑制作用。在长日和短日植物中用甲基紫精处理均降低了光化学活性,但是积累花色苷的长日植物比短日植物保持更高的非光化学猝灭。在短日和长日生长的植物中,脱水诱导的蛋白质和参与碳水化合物代谢的蛋白质的表达均未见差异,而叶绿体定位胁迫蛋白的转录本和抗氧化酶的转录本的表达均未见差异。虽然在植物假单胞菌的干燥过程中编码抗氧化酶的基因的表达是组成性的或上调的,但在草种L. subracemosa中的表达却下调了。 RNA表达分析表明,在干燥过程中,亚种L.subracemosa中的mRNA降解,但在耐干燥性的物种中却没有。这些结果表明更好的氧化应激管理和mRNA稳定性与干燥耐性相关。

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