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毛状根转化:探索难以转化物种中基因功能和表达的有用工具。

Hairy Root Transformation: A Useful Tool to Explore Gene Function and Expression in spp. Recalcitrant to Transformation.

作者信息

Gomes Carolina, Dupas Annabelle, Pagano Andrea, Grima-Pettenati Jacqueline, Paiva Jorge Almiro P

机构信息

Department of Integrative Plant Biology, Institute of Plant Genetics, Polish Academy of Sciences, Poznan, Poland.

LRSV, Laboratoire de Recherche en Sciences Végétales, UPS, CNRS, Université Toulouse 3, Castanet Tolosan, France.

出版信息

Front Plant Sci. 2019 Nov 11;10:1427. doi: 10.3389/fpls.2019.01427. eCollection 2019.

Abstract

Willow ( spp. L.) species are fast-growing trees and shrubs that have attracted emergent attention for their potential as feedstocks for bioenergy and biofuel production, as well as for pharmaceutical and phytoremediation applications. This economic and environmental potential has propelled the creation of several genetic and genomic resources for spp. Furthermore, the recent availability of an annotated genome for has pinpointed novel candidate genes underlying economically relevant traits. However, functional studies have been stalled by the lack of rapid and efficient coupled regeneration-transformation systems for and spp. in general. In this report, we describe a fast and highly efficient hairy root transformation protocol for It was effective for different explant sources and genotypes, with efficiencies between 63.4% and 98.7%, and the screening of the transformed hairy roots was easily carried out using the fluorescent marker DsRed. To test the applicability of this hairy root transformation system for gene functional analysis, we transformed hairy roots with the vector pGWAY-, where the gene encoding a putative Domain Rearranged Methyltransferase (DRM) was placed under the control of the CaMV 35S constitutive promoter. Indeed, the transgenic hairy roots obtained exhibited significantly increased expression of compared to controls, demonstrating that this protocol is suitable for the medium/high-throughput functional characterization of candidate genes in other recalcitrant spp.

摘要

柳树(柳属物种)是速生乔木和灌木,因其作为生物能源和生物燃料生产原料以及在制药和植物修复应用方面的潜力而受到越来越多的关注。这种经济和环境潜力推动了针对柳属物种创建多种遗传和基因组资源。此外,最近获得的柳属物种注释基因组已确定了与经济相关性状相关的新候选基因。然而,总体而言,由于缺乏针对柳属物种快速高效的再生-转化耦合系统,功能研究一直停滞不前。在本报告中,我们描述了一种针对柳树的快速高效发根转化方案。该方案对不同外植体来源和柳树基因型均有效,效率在63.4%至98.7%之间,并且使用荧光标记DsRed可轻松筛选转化的发根。为了测试这种发根转化系统在基因功能分析中的适用性,我们用载体pGWAY-转化发根,其中编码假定结构域重排甲基转移酶(DRM)的基因置于CaMV 35S组成型启动子的控制之下。事实上,与对照相比,获得的转基因发根显示出显著增加的表达,表明该方案适用于柳树及其他难转化柳属物种中候选基因的中/高通量功能表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7515/6859806/1263ad803708/fpls-10-01427-g001.jpg

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