首页> 外文期刊>Plant Physiology and Biochemistry >Leaf biochemical adjustments in two Mediterranean resprouter species facing enhanced UV levels and reduced water availability before and after aerial biomass removal
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Leaf biochemical adjustments in two Mediterranean resprouter species facing enhanced UV levels and reduced water availability before and after aerial biomass removal

机译:叶生化调整在两种地中海改革器物种面临增强的紫外线水平,避免空中生物质去除前后降低水可用性

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摘要

Effects of supplemented UV radiation and diminished water supply on the leaf concentrations of phenols and antioxidants of two Mediterranean resprouter species, Arbutus unedo and Quercus sober, were assessed before and after entire aerial biomass removal. Potted seedlings of both species were grown outdoors for 8 months with enhanced UV-A + LIV-B, enhanced UV-A or ambient UV, in combination with two watering conditions (field capacity or watering reduction). After this period, all aerial biomass was removed and new shoots (resprouts) developed for a further B months under the two treatments. In general, the investment in leaf phenols was substantially greater in A. unedo than in Q. sober, while Q. sober allocated more resources to non-phenolic antioxidants (ascorbate and glutathione). In response to enhanced UV-B radiation, Q. sober leaves rose their UV-screening capacity mainly via accumulation of kaempferols, accompanied by an increased concentration of rutins, being these effects exacerbated under low-watering conditions. Conversely, A. unedo leaves responded to UV-B radiation reinforcing the antioxidant machinery by increasing the overall amount of flavonols (especially quercetins) in seedlings, and of ascorbate and glutathione, along with catalase activity, in resprouts. Nevertheless, UV effects on the amount/activity of non-phenolic antioxidants of A. undo resprouts were modulated by water supply. Indeed, the highest concentration of glutathione was found under the combination of enhanced UV-B radiation and reduced watering, suggesting an enlargement of the antioxidant response in A. unedo resprouts. Different biochemical responses to enhanced LTV and drier conditions in seedlings and resprouts of these two species might modulate their competitive interactions in the near future.
机译:在整个空中的生物质去除之前和之后,评估了补充紫外线辐射和水供应减少对两种地中海改革器种类的酚类和抗氧化剂的抗氧化剂的影响。两种物种的盆栽幼苗在户外生长8个月,具有增强的UV-A + LIV-B,增强型UV-A或环境UV,与两个浇水条件(现场容量或降低)组合。在此期间之后,除去所有空中生物质,并在两种治疗中进一步开发的新芽(Resprouts)。一般而言,叶片酚的投资在A. UNEDO比Q.清醒,而Q.清醒分配给非酚醛抗氧化剂(抗坏血酸和谷胱甘肽)。响应于增强的UV-B辐射,Q. Q.。清醒的叶子主要通过Kaempferols的积累增加了紫外线筛分能力,伴随着芦丁浓度增加,这些效果在低浇水条件下加剧了这些效果。相反,A. UNEDO叶通过增加幼苗和抗坏血酸和谷胱甘肽的整体量的黄酮(特别是槲皮素)和抗坏血酸和谷胱甘肽以及过滤酶活性而增强抗氧化机械的UV-B辐射。然而,对撤消Resprout的非酚醛抗氧化剂的量/活性的UV效应被供水调节。实际上,在增强的UV-B辐射和降低的浇水中发现了最高谷胱甘肽的谷胱甘肽,表明A. Unedo Resprots中的抗氧化反应的放大。对这两个物种的幼苗和Resprots中增强LTV和干燥条件的不同生化反应可能会在不久的将来调制其竞争性互动。

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