建立首个基于下胚轴的西洋苋(Amaranthus tuberculatus)再生和胼胝体转化方案

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-28 DOI:10.1007/s11627-023-10408-7
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引用次数: 0

摘要

摘要 水麻(Amaranthus tuberculatus (Moq.) Sauer)是美国中西部农业系统中最棘手的杂草之一。由于广泛的除草剂选择压力,美国许多水蕹种群对多种除草剂产生了抗药性,导致化学防治的选择有限。包括 CRISPR/Cas9 在内的基因组编辑工具在杂草科学中具有巨大潜力,尤其是与基因驱动系统结合使用时,可实现可持续的杂草管理。现代生物技术工具的应用需要高效的再生和基因转化系统。本研究的目标是开发一种通过胼胝体培养成功实现水麻再生的高效方案,并优化农杆菌介导的水麻转化方法。将下胚轴外植体在含 1.0 mg L-1 苦参碱和 4.0 mg L-1 2,4-D 的胼胝体诱导培养基(CIM)C6 上培养 2 周,然后转接到含 3.0 mg L-1 BAP、0.05 mg L-1 2,4-D 和 0.3 mg L-1 GA3 的芽诱导培养基(SIM)S8 上培养 4 至 6 周,可成功实现芽再生。叶片外植体对再生试验中的任何处理组合都没有反应。利用本研究中优化的基于下胚轴外植体的再生方案,使用 uidA 和 hpt 基因进行了农杆菌介导的转化,作为概念验证。虽然没有再生出转基因植株,但转化胼胝体的分子鉴定证实了转基因的存在,如 uidA 和 hpt。这是首次报道基于组织培养的水麻再生和农杆菌介导的下胚轴衍生胼胝体转化,为探索杂草科学中基因组编辑研究的可能性迈出了一步。
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Establishment of first protocol of hypocotyl-based regeneration and callus transformation in waterhemp (Amaranthus tuberculatus)

Abstract

Waterhemp (Amaranthus tuberculatus (Moq.) Sauer) is one of the most problematic weeds in the Midwestern agricultural systems in the USA. As a consequence of extensive herbicide selection pressure, many waterhemp populations across the USA evolved resistance to multiple herbicides, leading to limited options for chemical control. Genome editing tools, including CRISPR/Cas9, have great potential in weed science, especially when coupled with a gene drive system for a sustainable weed management. The application of modern biotechnological tools requires availability of an efficient regeneration and genetic transformation system. The objectives of this research were to develop an efficient protocol for successful regeneration of waterhemp via callus culture and optimize an Agrobacterium-mediated transformation method for waterhemp. Hypocotyl explants cultured on callus induction medium (CIM), C6 containing 1.0 mg L−1 kinetin and 4.0 mg L−1 2,4-D for 2 wk followed by subculture into shoot induction medium (SIM), S8 containing 3.0 mg L−1 BAP, 0.05 mg L−1 2,4-D, and 0.3 mg L−1 GA3 for 4 to 6 wk was successful in shoot regeneration. Leaf explants failed to respond to any treatment combinations tested for regeneration. Using the hypocotyl explant–based regeneration protocol optimized in this research, Agrobacterium-mediated transformation was performed using uidA and hpt genes as a proof of concept. Although transgenic plants were not regenerated, molecular characterization of the transformed calluses confirmed the presence of transgenic genes, for example uidA and hpt. This is the first report of the tissue-cultured-based regeneration and Agrobacterium-mediated transformation of hypocotyl derived calluses in waterhemp, which is a step forward in exploring the possibilities of genome editing research in weed science.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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