瞬态(计算机编程)
转化(遗传学)
花粉
质粒
生物
生物技术
计算机科学
植物
DNA
遗传学
基因
操作系统
作者
Zuzana Vejlupkova,Cedar Warman,Rita Sharma,Henrik Vibe Scheller,Jenny C. Mortimer,John E. Fowler
出处
期刊:Nature plants
[Springer Nature]
日期:2020-11-02
卷期号:6 (11): 1323-1324
被引量:38
标识
DOI:10.1038/s41477-020-00798-6
摘要
Author(s): Vejlupkova, Zuzana; Warman, Cedar; Sharma, Rita; Scheller, Henrik Vibe; Mortimer, Jenny; Fowler, John | Abstract: ABSTRACT The development of rapid and efficient transformation methods for many plant species remains an obstacle in both the basic and applied plant sciences. A novel method described by Zhao et al. (2017) used magnetic nanoparticles to deliver DNA into pollen grains of several dicot species, and one monocot (lily), to achieve transformation (“pollen magnetofection”). Using the published protocol, extensive trials by two independent research groups showed no indication of transient transformation success with pollen from two monocots, maize and sorghum. To further address the feasibility of magnetofection, lily pollen was used for side-by-side trials of magnetofection with a proven methodology for transient transformation, biolistics. Using a Green Fluorescent Protein reporter plasmid, transformation efficiency with the biolistic approach averaged 0.7% over three trials. However, the same plasmid produced no recognizable transformants via magnetofection, despite screening g3500 individual pollen grains. We conclude that pollen magnetofection is not effective for transient transformation of pollen for at least three species of monocots, and suggest that efforts to replicate the magnetofection protocol in dicot species would be useful to fully assess its potential. ARISING FROM Zhao et al. Nature Plants https://doi.org/10.1038/s41477-017-0063-z (2017)
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