College of Horticulture Science and Engineering, Shandong Agricultural University, China; State Key Laboratory of Crop Biology, Shandong Agricultural University, China.
Qilu University of Technology, China.
Plant Physiol Biochem. 2018 Mar;124:77-87. doi: 10.1016/j.plaphy.2017.12.039. Epub 2018 Jan 4.
We evaluated the effect of different light combinations on powdery mildew resistance and growth of melon seedlings. Light-emitting diodes were used as the light source and there were five light combinations: white light (420-680 nm); blue light (460 nm); red light (635 nm); RB31 (ratio of red and blue light, 3: 1); and RB71 (ratio of red and blue light, 7: 1). Compared with other treatments, blue light significantly decreased the incidence of powdery mildew in leaves of melon seedlings. Under blue light, HO showed higher accumulation, and the content of phenolics, flavonoid and tannins, as well as expression of the genes involved in synthesis of these substances, significantly increased compared with other treatments before and after infection. Lignin content and expression of the genes related to its synthesis were also induced by blue light before infection. Melon irradiated with RB31 light showed the best growth parameters. Compared with white light, red light and RB71, RB31 showed higher accumulation of lignin and lower incidence of powdery mildew. We conclude that blue light increases melon resistance to powdery mildew, which is dependent on the induction of secondary metabolism that may be related to HO accumulation before infection. Induction of tolerance of melon seeds to powdery mildew by RB31 is due to higher levels of sucrose metabolism and accumulation of lignin.
我们评估了不同光组合对粉霉病抗性和甜瓜幼苗生长的影响。使用发光二极管作为光源,有五种光组合:白光(420-680nm);蓝光(460nm);红光(635nm);RB31(红蓝光比例为 3:1);RB71(红蓝光比例为 7:1)。与其他处理相比,蓝光显著降低了甜瓜幼苗叶片粉霉病的发病率。在蓝光下,HO 表现出更高的积累,酚类、类黄酮和单宁的含量以及参与这些物质合成的基因的表达,在感染前后与其他处理相比显著增加。木质素含量和与其合成相关的基因表达也在感染前被蓝光诱导。用 RB31 光照射的甜瓜表现出最佳的生长参数。与白光、红光和 RB71 相比,RB31 表现出更高的木质素积累和更低的粉霉病发病率。我们得出结论,蓝光增加了甜瓜对粉霉病的抗性,这依赖于次生代谢的诱导,这种诱导可能与感染前 HO 的积累有关。RB31 诱导甜瓜种子对粉霉病的耐受性是由于蔗糖代谢水平较高和木质素积累。