生物合成
转录组
类黄酮生物合成
基因
生物化学
生物
植物激素
类黄酮
代谢途径
转录因子
基因表达
化学
抗氧化剂
作者
Jonas Lwalaba Wa Lwalaba,Gerald Zvobgo,Yunpeng Gai,Joan Heren Issaka,Theodore M. Mwamba,Laurence Tennyson Louis,Liangbo Fu,Muhammad Mudassir Nazir,Bibich Ansey Kirika,Audry Kazadi Tshibangu,Muhammad Faheem Adil,Shafaque Sehar,Robert Prince Mukobo,Guoping Zhang
标识
DOI:10.1016/j.ecoenv.2020.111761
摘要
Cobalt (Co) and copper (Cu) co-exist commonly in the contaminated soils and at excessive levels, they are toxic to plants. However, their joint effect and possible interaction have not been fully addressed. In this work, a hydroponic experiment was performed to investigate the combined effects of Co and Cu on two barley genotypes at transcriptional level by RNA-seq analysis. The results identified 358 genes inclusively expressed in both genotypes under single and combined treatments of Co and Cu, with most of them being related to metal transport, stress response and transcription factor. The combined treatment induced more differently expressed genes (DEGs) than the single treatment, with Yan66, a metal tolerant genotype having more DEGs than Ea52, a sensitive genotype. The pathways associated with anthocyanin biosynthesis, MAPK signaling, glutathione biosynthesis, phenylalanine metabolism, photosynthesis, arginin biosynthesis, fatty acid elongation, and plant hormone signal transduction biosynthesis were induced and inhibited in Yan66 and Ea52, respectively. Furthermore, flavonoid biosynthesis was much more largely enhanced and accordingly more free flavonoid components (naringin, narirutin and neohesperidin) were accumulated in Yan66 than in Ea52. It may be suggested that high tolerance to both Co and Cu in Yan66 is attributed to its high gene regulatory ability.
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