Suppr超能文献

-介导的瞬时转化在桑树(L.)功能基因检测中的改进与增强。

Refinement and Enhancement of -Mediated Transient Transformation for Functional Gene Examination in Mulberry ( L.).

机构信息

Guangxi Zhuang Autonomous Region Sericultural Technology Promotion Station, Nanning 530007, China.

Guangxi Research Academy of Sericultural Science, Nanning 530007, China.

出版信息

Genes (Basel). 2024 Sep 28;15(10):1277. doi: 10.3390/genes15101277.

Abstract

Mulberry ( L.), a vital perennial woody plant with significant economic importance, is utilized for silkworm rearing, human consumption and medicinal use. The availability of mulberry's whole-genome sequencing data has underscored the demand for an effective, user-friendly, and high-throughput protocol to facilitate the elucidation of gene functions. In this investigation, we established a transient transformation approach using -mediated sonication followed by vacuum infiltration in mulberry tissue culture seedlings. Simultaneously, we optimized the transformation conditions, including mulberry genotypes, strain, acetosyringone concentration, bacterial density, sonication time, and days after agroinfiltration. These optimizations aimed to achieve heightened transformation efficiency, employing GFP as a reporter gene to monitor transformation events. The optimized method included the use of an infiltration medium (10 mM MgCl, 10 mM MES (2-(N-morpholino)ethanesulfonic acid sodium salt), 150 μM acetosyringone, and OD600 0.5 of LBA4404) supplemented with the surfactant 0.02% Silwet L-77, with 20 s sonication followed by 20 min vacuum infiltration (0.07 MPa). Among the four mulberry genotypes, 'Taiguo' was the most responsive genotype and produced the highest levels of expression at 7 d after infiltration. Furthermore, the optimized transient transformation approach has been proven to be successfully applicable for transiently overexpressing and in mulberry fruits of 'Taiguo', in vitro, which distinctly enhanced fruit coloring and significantly increased anthocyanin accumulation, respectively. In summary, we devised a dependable, stable and highly efficient transient transformation approach suitable for rapid gene function examination in mulberry leaves and fruits, in vitro.

摘要

桑树(L.)是一种重要的多年生木本植物,具有重要的经济价值,可用于养蚕、人类食用和药用。由于桑树全基因组测序数据的可用性,因此需要一种有效、用户友好且高通量的方案来促进基因功能的阐明。在这项研究中,我们建立了一种使用介导的超声处理后真空渗透的瞬时转化方法,用于桑树组织培养幼苗。同时,我们优化了转化条件,包括桑树基因型、菌株、乙酰丁香酮浓度、细菌密度、超声时间和农杆菌渗透后的天数。这些优化旨在提高转化效率,使用 GFP 作为报告基因来监测转化事件。优化的方法包括使用渗透培养基(10 mM MgCl、10 mM MES(2-(N-吗啉基)乙磺酸钠盐)、150 μM 乙酰丁香酮和 OD600 为 0.5 的 LBA4404),补充表面活性剂 0.02% Silwet L-77,超声 20 秒后真空渗透(0.07 MPa)。在四个桑树基因型中,‘Taiguo’是最敏感的基因型,在渗透后 7 天产生的表达水平最高。此外,优化的瞬时转化方法已被证明可成功应用于瞬时过表达和在‘Taiguo’桑树果实中的表达,分别明显增强了果实着色和显著增加了花青素积累。总之,我们设计了一种可靠、稳定且高效的瞬时转化方法,适用于快速检测桑树叶片和果实中的基因功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1069/11507023/8731ee99685d/genes-15-01277-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验