Chang Ya-Lan, Huang Li-Min, Kuo Xuan-Zhou, Chen You-Yi, Lin Shao-Ting, Jeng Mei-Fen, Yeh Hsin-Hung, Tsai Wen-Chieh, Chen Hong-Hwa
Department of Life Sciences, National Cheng Kung University, Tainan, 701, Taiwan.
Institute of Tropical Plant Sciences and Microbiology, National Cheng Kung University, Tainan, 701, Taiwan.
Plant J. 2023 Apr;114(2):279-292. doi: 10.1111/tpj.16133. Epub 2023 Feb 22.
Terrestrial plants emit volatiles into the atmosphere to attract both pollinators and the enemies of herbivores, for defense. Phalaenopsis bellina is a scented orchid species in which the main scent components are monoterpenes, including linalool and geraniol, and their derivatives. Here, we investigated whether ABC transporters are involved in floral scent emission. We carried out whole-genome identification of ABC transporter-related genes using four floral transcriptomics libraries of P. bellina. We identified 86 ABC subfamily G genes related to terpenoid transport. After comparing the gene expression patterns of P. bellina with that of Phalaenopsis aphrodite subsp. formosana, a scentless species, followed by gene-to-gene correlation analysis, PbABCG1 and PbABCG2 were selected. The temporal expression of both PbABCG1 and PbABCG2 was highly correlated with that of the key enzyme PbGDPS and the major transcription factor PbbHLH4 in monoterpene biosynthesis, with optimal expression on day 5 post-anthesis. Spatial gene expression analysis showed that PbABCG1 was highly expressed in sepals, whereas PbABCG2 was expressed in the lip. Subcellular localization with a GFP fusion protein revealed that both PbABCG1 and PbABCG2 are cytoplasmic membrane proteins. Co-downregulation of PbABCG1 and PbABCG2 using both double-strand RNA interference and tobacco rattle virus-based gene silencing led to a significant decrease in monoterpene emission, accompanied by an increase in the internal monoterpene pools. Furthermore, ectopic expression of PbABCG1 and PbABCG2 in an ABC16 mutant yeast strain rescued its tolerance to geraniol. Altogether, our results indicate that PbABCG1 and PbABCG2 play substantial roles in monoterpene transport/emission in P. bellina floral scent.
陆生植物向大气中释放挥发性物质,以吸引传粉者和食草动物的天敌来进行防御。贝氏蝴蝶兰是一种有香味的兰花品种,其主要气味成分是单萜类化合物,包括芳樟醇和香叶醇及其衍生物。在此,我们研究了ABC转运蛋白是否参与花香释放。我们利用贝氏蝴蝶兰的四个花转录组文库对ABC转运蛋白相关基因进行了全基因组鉴定。我们鉴定出86个与萜类运输相关的ABC亚家族G基因。在将贝氏蝴蝶兰与无香味的台湾蝴蝶兰的基因表达模式进行比较,随后进行基因间相关性分析后,选择了PbABCG1和PbABCG2。PbABCG1和PbABCG2的时间表达与单萜生物合成中的关键酶PbGDPS和主要转录因子PbbHLH4的表达高度相关,在花后第5天表达最佳。空间基因表达分析表明,PbABCG1在萼片中高表达,而PbABCG2在唇瓣中表达。用绿色荧光蛋白融合蛋白进行亚细胞定位表明,PbABCG1和PbABCG2都是细胞质膜蛋白。使用双链RNA干扰和基于烟草脆裂病毒的基因沉默共同下调PbABCG1和PbABCG2,导致单萜释放显著减少,同时内部单萜库增加。此外,PbABCG1和PbABCG2在ABC16突变酵母菌株中的异位表达恢复了其对香叶醇的耐受性。总之,我们的结果表明,PbABCG1和PbABCG2在贝氏蝴蝶兰花香的单萜运输/释放中起重要作用。