Jiangxi Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, College of Agronomy/College of Science, Jiangxi Agricultural University, Nanchang, 330045, China.
College of Forestry, Henan University of Science and Technology, Luoyang, 471023, China.
Sci Rep. 2018 Sep 24;8(1):14261. doi: 10.1038/s41598-018-32632-7.
In cucurbitaceous crops, sex differentiation of flower buds is a crucial developmental process that directly affects fruit yield. Here we showed that the induction of female flower was the highest in the blue light-treated monoecious cucumber plants compared with that in other light qualities (white, green and red). High-throughput RNA-Seq analysis of the shoot apexes identified a total of 74 differently-expressed genes (DEGs), in which 52 up-regulated and 22 down-regulated under the blue light compared with that in white light. The DEGs were mainly involved in metabolic pathways, biosynthesis of secondary metabolites, plant hormone signal transduction, starch and sucrose metabolism and phenylpropanoid biosynthesis. While the ethylene and gibberellins synthesis and signaling related genes were down-regulated, the abscisic acid and auxin signal transduction pathways were up-regulated by the blue light treatment. Furthermore, the blue light treatment up-regulated the transcription of genes relating to photosynthesis, starch and sucrose metabolism. Meanwhile, the blue light suppressed the GA concentration but promoted the concentrations of auxin and photosynthetic pigments. Taken together, the results suggest that the blue light-induced female floral sex expression is closely associated with the blue light-induced changes in abscisic acid, auxin, gibberellins, photosynthesis, starch and sucrose metabolism pathways, which is potentially different from the traditional ethylene-dependent pathway.
在葫芦科作物中,花蕾的性别分化是一个关键的发育过程,直接影响果实产量。在这里,我们发现与其他光质(白光、绿光和红光)相比,蓝光处理的雌雄同株黄瓜植株中雌性花的诱导率最高。对茎尖进行高通量 RNA-Seq 分析,共鉴定出 74 个差异表达基因(DEGs),其中 52 个基因在蓝光下上调,22 个基因在蓝光下下调。这些 DEGs 主要参与代谢途径、次生代谢物的生物合成、植物激素信号转导、淀粉和蔗糖代谢以及苯丙烷生物合成。虽然蓝光处理下调了乙烯和赤霉素合成和信号相关基因的表达,但上调了脱落酸和生长素信号转导途径。此外,蓝光处理还上调了与光合作用、淀粉和蔗糖代谢相关的基因的转录。同时,蓝光抑制了 GA 浓度,但促进了生长素和光合色素的浓度。综上所述,这些结果表明,蓝光诱导的雌性花性别表达与蓝光诱导的脱落酸、生长素、赤霉素、光合作用、淀粉和蔗糖代谢途径的变化密切相关,这与传统的乙烯依赖途径可能不同。