Inostroza-Blancheteau Claudio, Reyes-Díaz Marjorie, Arellano Alejandro, Latsague Mirtha, Acevedo Patricio, Loyola Rodrigo, Arce-Johnson Patricio, Alberdi Miren
Plant Physiol Biochem. 2014 Dec;85:85-95. doi: 10.1016/j.plaphy.2014.10.015.
The effects of increased doses of UV-B radiation on anatomical, biochemical and molecular features of leaves of two highbush blueberry (Vaccinium corymbosum L. cv. Brigitta and Bluegold) genotypes were investigated. Plants were grown in a solid substrate and exposed to 0, 0.07, 0.12 and 0.19 Wm(-2) of biologically effective UV-B radiation for up to 72 h. Leaf thickness and the adaxial epidermis thickness fell more than 3-fold in both genotypes at the highest UV-B dose. Moreover, in Bluegold an evident disorganization in the different cell layers was observed at the highest UV-B radiation. A significant decrease in chlorophyll a/b after 6 h in Brigitta under the greater UV-B doses was observed. Anthocyanin and total phenolics were increased, especially at 0.19 Wm(-2), when compared to the control in both genotypes.Chlorogenic acid was the most abundant hydroxycinnamic acid in Brigitta, and was significantly higher (P ≤ 0.05) than in Bluegold leaves. Regarding the expression of phenylpropanoid genes, only the transcription factor VcMYBPA1 showed a significant and sustained induction at higher doses of UV-B radiation in both genotypes compared to the controls. Thus, the reduction of leaf thickness concomitant with a lower lipid peroxidation and rapid enhancement of secondary metabolites, accompanied by a stable induction of the VcMYBPA1 transcription factor suggest a better performance against UV-B radiation of the Brigitta genotype.
研究了增加剂量的UV-B辐射对两种高丛蓝莓(越桔属蓝丰品种和蓝金品种)叶片的解剖学、生物化学和分子特征的影响。植株种植在固体基质中,暴露于0、0.07、0.12和0.19 Wm(-2)的生物有效UV-B辐射下长达72小时。在最高UV-B剂量下,两个品种的叶片厚度和上表皮厚度下降超过3倍。此外,在蓝金品种中,在最高UV-B辐射下观察到不同细胞层明显紊乱。在较高UV-B剂量下,6小时后蓝丰品种的叶绿素a/b显著下降。与对照相比,两个品种的花青素和总酚含量均增加,尤其是在0.19 Wm(-2)时。绿原酸是蓝丰品种中最丰富的羟基肉桂酸,且显著高于(P≤0.05)蓝金品种的叶片。关于苯丙烷类基因的表达,与对照相比,仅转录因子VcMYBPA1在两个品种的较高UV-B辐射剂量下表现出显著且持续的诱导。因此,叶片厚度的降低伴随着较低的脂质过氧化以及次生代谢产物的快速增加,同时VcMYBPA1转录因子的稳定诱导表明蓝丰品种对UV-B辐射具有更好的耐受性。