转化(遗传学)
花粉
转基因
再生(生物学)
转基因作物
基因
生物技术
外源DNA
基因组
生物
遗传学
细胞生物学
植物
作者
Xiang Zhao,Zhigang Meng,Yan Wang,Wenjie Chen,Changjiao Sun,Bo Cui,Jinhui Cui,Manli Yu,Zhanghua Zeng,Sandui Guo,Dan Luo,Jerry Cheng,Rui Zhang,Haixin Cui
出处
期刊:Nature plants
[Springer Nature]
日期:2017-11-24
卷期号:3 (12): 956-964
被引量:294
标识
DOI:10.1038/s41477-017-0063-z
摘要
Genetic modification plays a vital role in breeding new crops with excellent traits. Almost all the current genetic modification methods require regeneration from tissue culture, involving complicated, long and laborious processes. In particular, many crop species such as cotton are difficult to regenerate. Here, we report a novel transformation platform technology, pollen magnetofection, to directly produce transgenic seeds without regeneration. In this system, exogenous DNA loaded with magnetic nanoparticles was delivered into pollen in the presence of a magnetic field. Through pollination with magnetofected pollen, transgenic plants were successfully generated from transformed seeds. Exogenous DNA was successfully integrated into the genome, effectively expressed and stably inherited in the offspring. Our system is culture-free and genotype independent. In addition, it is simple, fast and capable of multi-gene transformation. We envision that pollen magnetofection can transform almost all crops, greatly facilitating breeding processes of new varieties of transgenic crops.
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