Suppr超能文献

利用新型细菌 Ochrobactrum haywardense H1 开发高效的无标记大豆转化方法。

Development of an efficient marker-free soybean transformation method using the novel bacterium Ochrobactrum haywardense H1.

机构信息

Research and Development, Corteva Agriscience, Johnston, IA, USA.

Alpine Roads Inc., South San Francisco, CA, USA.

出版信息

Plant Biotechnol J. 2022 May;20(5):977-990. doi: 10.1111/pbi.13777. Epub 2022 Feb 24.

Abstract

We have discovered a novel bacterium, Ochrobactrum haywardense H1 (Oh H1), which is capable of efficient plant transformation. Ochrobactrum is a new host for Agrobacterium-derived vir and T-DNA-mediated transformation. Oh H1 is a unique, non-phytopathogenic species, categorized as a BSL-1 organism. We engineered Oh H1 with repurposed Agrobacterium virulence machinery and demonstrated Oh H1 can transform numerous dicot species and at least one monocot, sorghum. We generated a cysteine auxotrophic Oh H1-8 strain containing a binary vector system. Oh H1-8 produced transgenic soybean plants with an efficiency 1.6 times that of Agrobacterium strain AGL1 and 2.9 times that of LBA4404Thy-. Oh H1-8 successfully transformed several elite Corteva soybean varieties with T0 transformation frequency up to 35%. In addition to higher transformation efficiencies, Oh H1-8 generated high-quality, transgenic events with single-copy, plasmid backbone-free insertion at frequencies higher than AGL1. The SpcN selectable marker gene is excised using a heat shock-inducible excision system resulting in marker-free transgenic events. Approximately, 24.5% of the regenerated plants contained only a single copy of the transgene and contained no vector backbone. There were no statistically significant differences in yield comparing T3 null-segregant lines to wild-type controls. We have demonstrated that Oh H1-8, combined with spectinomycin selection, is an efficient, rapid, marker-free and yield-neutral transformation system for elite soybean.

摘要

我们发现了一种新型细菌 Ochrobactrum haywardense H1(Oh H1),它能够高效地进行植物转化。Ochrobactrum 是一种新的农杆菌衍生病毒和 T-DNA 介导转化的宿主。Oh H1 是一种独特的、非植物病原性物种,被归类为 BSL-1 生物。我们用重新设计的农杆菌毒力机制对 Oh H1 进行了工程改造,并证明 Oh H1 可以转化多种双子叶植物物种,至少包括一种单子叶植物高粱。我们生成了一种含二元载体系统的半胱氨酸营养缺陷型 Oh H1-8 菌株。Oh H1-8 产生的转基因大豆植株的效率比农杆菌菌株 AGL1 高 1.6 倍,比 LBA4404Thy-高 2.9 倍。Oh H1-8 成功地转化了几种精英科迪瓦大豆品种,T0 转化率高达 35%。除了更高的转化效率外,Oh H1-8 还产生了高质量的转化事件,具有单拷贝、质粒骨架缺失插入的频率高于 AGL1。SpcN 选择标记基因使用热休克诱导的切除系统切除,导致无标记转基因事件。大约 24.5%的再生植物只含有单个拷贝的转基因,且不含载体骨架。与野生型对照相比,T3 缺失株系的产量没有统计学上的显著差异。我们已经证明,Oh H1-8 与壮观霉素选择相结合,是一种高效、快速、无标记且产量中性的优良大豆转化系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f4d/11383810/18639fef352c/PBI-20-977-g004.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验