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An optimized CRISPRCas9-based gene editing system for efficiently generating homozygous edited plants in rubber tree (Hevea brasiliensis)

巴西橡胶树 天然橡胶 树(集合论) 橡胶树 生物 植物 数学 组合数学 材料科学 复合材料
作者
Xianfeng Yang,Qiufei Lin,Jinu Udayabhanu,Yuwei Hua,Xuemei Dai,Shichao Xin,Xiaoyi Wang,Huasun Huang,Tiandai Huang
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:222: 119740-119740 被引量:10
标识
DOI:10.1016/j.indcrop.2024.119740
摘要

Previously, we have realized CRISPR/Cas9-RNP and plasmid-mediated genome editing in the rubber tree protoplast by transient transformation, but it is a challenge to generate editing plants hindered by low stable genetic transformation efficiency. In the present study, we firstly reported genome-edited rubber trees with expected phenotype, related works including demonstrated that 10 mg/L hygromycin is suitable for embryo screening, based on this foundation, CRISPR vector targeting the Phytoene desaturase gene ( HbPDS ) was transformed into embryos, the results showed that more than 90 % of T0 edited embryos are chimeric, and the editing efficiency is 3.2 %. In order to improve the homozygous embryo ratio, a T0 embryo with 9.8 % edited cells was sliced into 33 small pieces for one more cycle embryogenesis to produce T1 generation embryos, it turns out the editing efficiency has been improved to nearly 90 %, and 50 % of T1 embryos were homozygous. At last, 8 plantlets were regenerated from the 29 T1 generation edited embryos, 4 chimeric and 4 homozygous albino plantlets, respectively. Next-generation sequencing demonstrated that, the threshold for the proportion of edited cells displaying expected albino phenotype is between 70 % and 85 %. Additionally, Tail-PCR’ results, combined the different genotypes considered, the four homozygous plantlets can be confirmed as independently derived from different single transformed cells. Overall, this study presents a significant advancement in transgenic and gene editing for rubber trees, will be conducive to gene functional validation and accelerate the molecular breeding process of rubber tree. • We found the optimal antibiotic for rubber tree embryo transformation is hygromycin. • We demonstrated that a constant 10 mg/L hygromycin is the best selection strategy. • To our knowledge, this study produced the highest genetic transformation efficiency in rubber tree. • It has been proven that most of the transformed T0 embryos are chimeric, and we overcome this problem. • This is the first gene editing rubber tree with expected phenotype reported publicly.
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