Zhu Mo, Liu Yan, Bai Hongxia, Zhang Wanwan, Liu Haitao, Qiu Zongbo
College of Life Science, Henan Normal University, Xinxiang, 453007, PR China; Xinxiang Key Laboratory of Plant Stress Biology, Xinxiang, 453000, PR China.
College of Life Science, Henan Normal University, Xinxiang, 453007, PR China.
Plant Physiol Biochem. 2023 Oct;203:108028. doi: 10.1016/j.plaphy.2023.108028. Epub 2023 Sep 10.
The yield and quality of wheat (Triticum aestivum L.) is seriously affected by soil cadmium (Cd), a hazardous material to plant and human health. Long non-coding RNAs (lncRNAs) of plants are shown actively involved in response to various biotic and abiotic stresses by mediating the gene regulatory networks. However, the functions of lncRNAs in wheat against Cd stress are still obscure. Using deep strand-specific RNA sequencing, 10,044 confident novel lncRNAs in wheat roots response to Cd stress were identified. It was found that 69 lncRNA-target pairs referred to cis-acting regulation and impacted the expressions of their neighboring genes involving in Cd transport and detoxification, photosynthesis, and antioxidant defense. These findings were positively corelated with the physio-biochemical results, i.e. Cd stress affected Cd accumulation, photosynthesis system and ROS in wheat. Overexpression of lncRNA37228 (targeted to a photosystem II protein D1 coding gene), resulted in enhancing Arabidopsis thaliana resistance against Cd stress. By genome-wide identification and characterization, the possible functions of photosystem II protein gene family in wheat under Cd condition were illustrated. Our findings provide novel knowledge into the molecular mechanisms of lncRNAs-regulated wheat tolerance to Cd toxicity and lay foundations for the further studies concerning lncRNAs in food safety production.
小麦(Triticum aestivum L.)的产量和品质受到土壤镉(Cd)的严重影响,镉是一种对植物和人类健康有害的物质。植物的长链非编码RNA(lncRNAs)通过介导基因调控网络,积极参与对各种生物和非生物胁迫的响应。然而,lncRNAs在小麦应对镉胁迫中的功能仍不清楚。利用深度链特异性RNA测序,在小麦根系对镉胁迫的响应中鉴定出10,044个可靠的新型lncRNAs。发现69个lncRNA-靶标对涉及顺式作用调控,并影响其邻近基因的表达,这些基因参与镉的运输和解毒、光合作用以及抗氧化防御。这些发现与生理生化结果呈正相关,即镉胁迫影响小麦中的镉积累、光合作用系统和活性氧。lncRNA37228(靶向光系统II蛋白D1编码基因)的过表达导致拟南芥对镉胁迫的抗性增强。通过全基因组鉴定和表征,阐明了镉条件下小麦光系统II蛋白基因家族的可能功能。我们的研究结果为lncRNAs调控小麦对镉毒性耐受性的分子机制提供了新的知识,并为食品安全生产中有关lncRNAs的进一步研究奠定了基础。