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首页> 外文期刊>Scientia horticulturae >Solar UV irradiation effects on photosynthetic performance, biochemical markers, and gene expression in highbush blueberry (Vaccinium corymbosum L.) cultivars
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Solar UV irradiation effects on photosynthetic performance, biochemical markers, and gene expression in highbush blueberry (Vaccinium corymbosum L.) cultivars

机译:太阳能紫外线辐照对光合性能,生化标志物和基因表达在高碱基蓝莓(髋臼瘤骨髓L.)栽培品种

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Solar UV irradiation allows life on Earth, but becomes harmful at high levels due to UV-B and UV-A irradiation, generating negative effects for all organisms, including plants. We determined the effects of solar UV irradiation on photosynthetic performance, biochemical markers, and gene expression in five-year-old plants of two highbush blueberry (Vacciniam corymbosum L.) cultivars, Legacy and Bluegold. Plants growing under field conditions were subjected to three solar UV irradiation filter treatments: UV-transmitting filter ( + UV-A/13), UV-B blocking filter (-UV-B), and UV-A/B blocking filter (-UV-A/B) during two seasons. Net photosynthesis did not change among solar radiation filter treatments in either cultivar. Bluegold showed a significant reduction in stomatal conductance (g(s)) during both seasons under + UV-A/B compared to -UV-A/B (control treatment); while effective quantum yield (Phi PSII) and electron transport rate (ETR) did not change in Legacy, Bluegold showed a reduction in Phi PSII and ETR during the 2014 season. The highest significant increase (P <= 0.05) in total phenol concentration was observed in Bluegold (40%) under + UV-A/B in the 2013 season compared to Legacy. A similar tendency in flavonoids and anthocyanin was observed but in both seasons. In conclusion, an interaction genotype-environment was observed, where Legacy and Bluegold cultivars were differentially affected by solar UV irradiation and seasons in field conditions. Although Bluegold maintains CO2 assimilation, activating antioxidant defense, gene expression (MYBPAI, CHS, and F3'H) and metabolites (fiavonoid and anthocyanins) to counteract + UV-A/B treatment, this cultivar was no able to reduce oxidative stress and to recover photochemical efficiency of PRI compared to Legacy. Our findings contribute to the understanding of blueberry responses to solar UV irradiation at physiological, molecular, and metabolite levels under field conditions.
机译:太阳能紫外线照射允许地球上的生命,但由于UV-B和UV-A辐射,对所有生物产生负面影响,对所有有机体产生负面影响,因此对高水平变得有害。我们确定了太阳能紫外线辐射对两岁的两岁植物(vacciniam corymbosum L.)品种,遗产和蓝戈尔的光合作用,生化标志物和基因表达的影响。在现场条件下生长的植物进行三种太阳能UV辐射滤网处理:UV透射滤波器(+ UV-A / 13),UV-B阻断过滤器(-UV-B)和UV-A / B阻挡过滤器( - UV-A / B)在两个季节。净光合作用在任何一种品种中的太阳辐射过滤器处理中都没有改变。与-uv-a / b相比,Bluegold在+ UV-A / B下的季节下的气孔导度(G(S))显着降低了(对照处理);虽然有效量子产量(PHI PSII)和电子传输速率(ETR)没有改变遗产,但在2014季节期间,Bluegold显示了Phi PSII和ETR的减少。与遗留相比,在2013赛季中的Bluegold(40%)下观察到总苯酚浓度的最高显着增加(p <= 0.05)。观察到类黄酮和花青素的趋势,但在两个季节。总之,观察到相互作用基因型环境,其中遗留和蓝巨片品种受到现场条件下的太阳紫外线照射和季节的差异影响。虽然Bluegold保持CO2同化,激活抗氧化防御,基因表达(MYBPAI,CHS和F3'H)和代谢物(FIAVONOID和花青素)来抵消+ UV-A / B处理,但这种品种不能降低氧化应激和与遗产相比,恢复PRI的光化学效率。我们的调查结果有助于了解在田间条件下的生理,分子和代谢物水平对太阳能紫外线辐射的蓝莓反应。

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