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黑果枸杞的一种新型微繁殖及三种微繁殖植物离体和非离体的表观遗传稳定性评估

A novel micropropagation of Lycium ruthenicum and epigenetic fidelity assessment of three types of micropropagated plants in vitro and ex vitro.

作者信息

Gao Yue, Wang Qin-Mei, An Qinxia, Cui Jianguo, Zhou Yongbin, Qi Xinyu, Zhang Lijie, Li Lujia

机构信息

Key Laboratory of Forest Tree Genetics, Breeding and Cultivation of Liaoning Province, College of Forestry, Shenyang Agricultural University, Shenyang, Liaoning, China.

出版信息

PLoS One. 2021 Feb 23;16(2):e0247666. doi: 10.1371/journal.pone.0247666. eCollection 2021.

Abstract

Lycium ruthenicum is an excellent eco-economic shrub. Numerous researches have been conducted for the function of its fruits but scarcely focused on the somaclonal variation and DNA methylation. An efficient micropropagation protocol from leaves and stems of L. ruthenicum was developed in this study, in which not only the leaf explants but also the stem explants of L. ruthenicum were dedifferentiated and produced adventitious buds/multiple shoots on one type of medium. Notably, the efficient indirect organogenesis of stem explants was independent of exogenous auxin, which is contrary to the common conclusion that induction and proliferation of calli is dependent on exogenous auxin. We proposed that sucrose supply might be the crucial regulator of stem callus induction and proliferation of L. ruthenicum. Furthermore, results of methylation-sensitive amplified polymorphism (MSAP) showed that DNA methylation somaclonal variation (MSV) of CNG decreased but that of CG increased after acclimatization. Three types of micropropagated plants (from leaf calli, stem calli and axillary buds) were epigenetically diverged more from each other after acclimatization and the ex vitro micropropagated plants should be selected to determine the fidelity. In summary, plants micropropagated from axillary buds and leaves of L. ruthenicum was more fidelity and might be suitable for preservation and propagation of elite germplasm. Also, leaf explants should be used in transformation. Meanwhile, plants from stem calli showed the highest MSV and might be used in somaclonal variation breeding. Moreover, one MSV hotspot was found based on biological replicates. The study not only provided foundations for molecular breeding, somaclonal variation breeding, preservation and propagation of elite germplasm, but also offered clues for further revealing novel mechanisms of both stem-explant dedifferentiation and MSV of L. ruthenicum.

摘要

黑果枸杞是一种优良的生态经济型灌木。针对其果实的功能已开展了大量研究,但对体细胞克隆变异和DNA甲基化的关注较少。本研究建立了一种从黑果枸杞叶片和茎段高效微繁殖体系,在此体系中,黑果枸杞的叶片外植体和茎段外植体均可在一种培养基上脱分化并产生不定芽/丛生芽。值得注意的是,茎段外植体高效的间接器官发生不依赖外源生长素,这与愈伤组织诱导和增殖依赖外源生长素的普遍结论相反。我们认为蔗糖供应可能是黑果枸杞茎段愈伤组织诱导和增殖的关键调控因子。此外,甲基化敏感扩增多态性(MSAP)结果表明,驯化后CNG位点的DNA甲基化体细胞克隆变异(MSV)降低,而CG位点的增加。三种微繁殖植株(来自叶片愈伤组织、茎段愈伤组织和腋芽)驯化后在表观遗传上彼此差异更大,应选择驯化后的离体微繁殖植株来确定其遗传稳定性。总之,从黑果枸杞腋芽和叶片微繁殖的植株遗传稳定性更高,可能适合优良种质的保存和繁殖。此外,叶片外植体应用于转化。同时,来自茎段愈伤组织的植株表现出最高的MSV,可用于体细胞克隆变异育种。此外,基于生物学重复发现了一个MSV热点区域。该研究不仅为分子育种、体细胞克隆变异育种、优良种质的保存和繁殖提供了基础,也为进一步揭示黑果枸杞茎段外植体脱分化和MSV的新机制提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7eb/7901770/f9fd6b4376ee/pone.0247666.g001.jpg

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