首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Effects of UV-B radiation on growth, photosynthesis, UV-B-absorbing compounds and NADP-malic enzyme in bean (Phaseolus vulgaris L.) grown under different nitrogen conditions
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Effects of UV-B radiation on growth, photosynthesis, UV-B-absorbing compounds and NADP-malic enzyme in bean (Phaseolus vulgaris L.) grown under different nitrogen conditions

机译:UV-B辐射对不同氮气条件下生长的豆豆(Phableolusulusulis L.)生长,光合作用,UV-B吸收化合物和NADP苹果酶的影响

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摘要

The effects of UV-B radiation on growth, photosynthesis, UV-B-absorbing compounds and NADP-malic enzyme have been examined in different cultivars of Phaseolous vulgaris L. grown under 1 and 12 mM nitrogen. Low nitrogen nutrition reduces chlorophyll and soluble protein contents in the leaves and thus the photosynthesis rate and dry-matter accumulation. Chlorophyll, soluble protein and Rubisco contents and photosynthesis rate are not significantly altered by ambient levels of UV-B radiation (17 #mu#Wm~(-2), 290-320 nm, 4 h/day for one week). Comparative studies show that under high nitrogen, UV-B radiation slightly enhances leaf expansion and dry-matter accumulation in cultivar Pinto, but inhibits these parameters in Vilmorin. These results suggest that the UV-B effect on growth is mediated through leaf expansion, which is particularly sensitive to UV-B, and that Pinto is more tolerant than Vilmorin. The effect of UV-B radiation on UV-B-absorbing compounds and on NADP-malic enzyme (NADP-ME) activity is also examined. Both UV-B radiation and low-nitrogen nutrition enhance the content of UV-B-absorbing compounds, and among the three cultivars used, Pinto exhibit the highest increases and Arroz the lowest. The same trend is observed for the specific activity and content of NADP-ME. On a leaf-area basis, the amount of UV-B-absorbing compounds is highly correlated with the enzyme activity (r~2=0.83), suggesting that NADP-ME plays a key role in biosynthesis of these compounds. Furthermore, the higher sensitivity of Vilmorin than Pinto to UV-B radiation appears to be related to the activity of NADP-ME and the capacity of the plants to accumulate UV-B-absorbing compounds.
机译:已经在不同品种的vullaris L.在1和12mm氮下的不同品种中检查了UV-B辐射对生长,光合作用,UV-B吸收化合物和NADP-苹果酶的影响。低氮营养在叶片中减少叶绿素和可溶性蛋白质含量,从而减少光合速率和干物质积累。通过UV-B辐射的环境水平(17#mu#wm〜(-2),290-320nm,4 h /天为一周的环境水平没有显着改变叶绿素,可溶性蛋白质和rubisco含量和光合速率。比较研究表明,在高氮下,UV-B辐射略微增强了品种番茄中的叶片膨胀和干物质积累,但抑制了vilmorin的这些参数。这些结果表明UV-B对生长的影响是通过叶片膨胀介导的,这对UV-B特别敏感,并且Pinto比Vilmorin更耐受。还研究了UV-B辐射对UV-B吸收化合物和NADP苹果酶(NADP-ME)活性的影响。 UV-B辐射和低氮营养均增强UV-B吸收化合物的含量,并且在使用的三种品种中,Pinto表现出最高的增加和最低的Arroz。对于NADP-ME的特定活动和内容,观察到相同的趋势。在叶面积的基础上,UV-B吸收化合物的量与酶活性高(R〜2 = 0.83),表明NADP-ME在这些化合物的生物合成中起关键作用。此外,vilmorin的敏感性高于pinto至uv-b辐射似乎与NADP-ME的活性和植物积聚UV-B吸收化合物的活性有关。

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