Culver James N, Vallar Meinhart, Burchard Erik, Kamens Sophie, Lair Sebastien, Qi Yiping, Collum Tamara D, Dardick Christopher, El-Mohtar Choaa A, Rogers Elizabeth E
Institute for Bioscience and Biotechnology Research, University of Maryland, College Park, MD, USA.
Department of Plant Science and Landscape Architecture, University of Maryland, College Park, MD, USA.
Plant Methods. 2025 Apr 10;21(1):49. doi: 10.1186/s13007-025-01368-7.
The analysis of translationally active mRNAs, or translatome, is a useful approach for monitoring cellular and plant physiological responses. One such method is the translating ribosome affinity purification (TRAP) system, which utilizes tagged ribosomal proteins to isolate ribosome-associated transcripts. This approach enables spatial and temporal gene expression analysis by driving the expression of tagged ribosomal proteins with tissue- or development-specific promoters. In plants, TRAP has enhanced our understanding of physiological responses to various biotic and abiotic factors. However, its utility is hampered by the necessity to generate transgenic plants expressing the tagged ribosomal protein, making this approach particularly challenging in perennial crops such as citrus.
This study involved the construction of a citrus tristeza virus (CTV) vector to express an immuno-tagged ribosome protein (CTV-hfRPL18). CTV, limited to the phloem, has been used for expressing marker and therapeutic sequences, making it suitable for analyzing citrus vascular tissue responses, including those related to huanglongbing disease. CTV-hfRPL18 successfully expressed a clementine-derived hfRPL18 peptide, and polysome purifications demonstrated enrichment for the hfRPL18 peptide. Subsequent translatome isolations from infected Nicotiana benthamiana and Citrus macrophylla showed enrichment for phloem-associated genes.
The CTV-hfRPL18 vector offers a transgene-free and rapid system for TRAP expression and translatome analysis of phloem tissues within citrus.
对翻译活性mRNA(即翻译组)进行分析是监测细胞和植物生理反应的一种有用方法。其中一种方法是翻译核糖体亲和纯化(TRAP)系统,该系统利用带有标签的核糖体蛋白来分离与核糖体相关的转录本。通过用组织特异性或发育特异性启动子驱动带有标签的核糖体蛋白的表达,这种方法能够进行空间和时间上的基因表达分析。在植物中,TRAP增进了我们对植物对各种生物和非生物因子生理反应的理解。然而,由于需要生成表达带有标签的核糖体蛋白的转基因植物,其应用受到了阻碍,这使得这种方法在柑橘等多年生作物中尤其具有挑战性。
本研究构建了一个柑橘衰退病毒(CTV)载体来表达一种免疫标记的核糖体蛋白(CTV-hfRPL18)。局限于韧皮部的CTV已被用于表达标记和治疗序列,使其适合分析柑橘维管组织反应,包括与黄龙病相关的反应。CTV-hfRPL18成功表达了一种源自克莱门氏小柑橘的hfRPL18肽,多核糖体纯化显示hfRPL18肽得到了富集。随后从受感染的本氏烟草和大叶柑橘中分离翻译组,结果显示韧皮部相关基因得到了富集。
CTV-hfRPL18载体为柑橘韧皮部组织的TRAP表达和翻译组分析提供了一种无转基因且快速的系统。