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纳米颗粒对冷冻保存衍生植物材料的体外性能的影响。

Effect of nanoparticles on the ex-vitro performance of cryopreservation-derived plant material.

机构信息

Laboratory of Horticulture, Faculty of Agriculture and Biotechnology, Bydgoszcz University of Science and Technology, Bydgoszcz, Poland.

Department of Crop Sciences and Agroforestry, Faculty of Tropical AgriSciences, Czech University of Life Sciences Prague, Prague, Czech Republic.

出版信息

PLoS One. 2024 Sep 12;19(9):e0310424. doi: 10.1371/journal.pone.0310424. eCollection 2024.

Abstract

The integration of nanoparticles into plant cryopreservation protocols holds great promise for improving the survival rates and recovery potential of explants. This study aimed to verify the effect of nanoparticles on the ex-vitro performance of cryopreservation-derived plants. Lamprocapnos spectabilis (L.) Fukuhara (bleeding heart) 'Gold Heart' and 'Valentine' cultivars were used as the plant material. The encapsulation-vitrification cryopreservation protocol of shoot tips included the preculture, encapsulation, dehydration, storage in liquid nitrogen, rewarming, and recovery steps. Gold (AuNPs), silver (AgNPs), or zinc oxide (ZnONPs) nanoparticles were added at varying concentrations, either into the preculture medium or the protective bead matrix during encapsulation. After the in vitro recovery, the plants were transferred to the glasshouse and subjected to detailed biometrical, biochemical and cytogenetic analyses. Nanoparticles had no evident effect on the acclimatization efficiency (80-100% survival) and leaf number in L. spectabilis 'Gold Heart'. Nonetheless, shoots developed from alginate beads supplemented with 5 ppm AuNPs were twice as long as the control, while the leaves of plants grown on the preculture medium with ZnONPs contained significantly more chlorophyll and had higher Leaf Soil-Plant Analysis Development (SPAD) values. Moreover, several NPs treatments stimulated the development of leaves, including their surface area, length, and perimeter. Higher ZnONPs levels enhanced also the replication process, resulting in higher nuclear DNA content. As for L. spectabilis 'Valentine', alginate augmentation with 5 ppm AgNPs or 5 ppm ZnONPs stimulated the elongation of shoots. There was also a tendency suggesting a positive influence of 5 ppm AgNPs in the alginate bead matrix on foliar growth. The effect of nanoparticles on the content of flavonoids, anthocyanins, and stress markers in the plants varied depending on the treatment and cultivar, but also on the organ studied (leaf or stem). Overall, L. spectabilis 'Gold Heart' was more stress-tolerant and genetically stable than 'Valentine' judging by the activity of Photosystem II (PSII) and flow cytometric analyses, respectively. The complex effects of nanoparticles on survival, biometric parameters, physiological responses, and cytogenetic events underscore the intricate interplay between nanoparticles and plant systems. Nonetheless, our research confirmed the positive effect of nanoparticles on the ex-vitro growth and development of L. spectabilis plants after cryostorage.

摘要

纳米粒子在植物冷冻保存方案中的整合具有很大的潜力,可以提高外植体的存活率和恢复潜力。本研究旨在验证纳米粒子对冷冻保存衍生植物的离体性能的影响。采用灯笼报春(毛茛科报春花属)‘金心’和‘瓦伦丁’品种作为植物材料。茎尖包埋-玻璃化冷冻保存方案包括预培养、包埋、脱水、液氮储存、复温及恢复步骤。在预培养培养基或包埋过程中的保护珠基质中添加不同浓度的金(AuNPs)、银(AgNPs)或氧化锌(ZnONPs)纳米粒子。体外恢复后,将植物转移到温室,并进行详细的生物计量、生化和细胞遗传学分析。纳米粒子对灯笼报春‘金心’的驯化效率(存活率 80-100%)和叶片数没有明显影响。然而,添加 5ppm AuNPs 的海藻酸钠珠中发育的茎比对照长两倍,而在含有 ZnONPs 的预培养培养基中生长的植物的叶片中含有明显更多的叶绿素,并有更高的叶片土壤-植物分析发展(SPAD)值。此外,几种 NPs 处理刺激了叶片的发育,包括叶片的表面积、长度和周长。较高的 ZnONPs 水平也促进了核 DNA 含量的复制过程。对于灯笼报春‘瓦伦丁’,5ppm AgNPs 或 5ppm ZnONPs 对海藻酸钠珠基质中茎的伸长有刺激作用。5ppm AgNPs 在海藻酸钠珠基质中对叶片生长也有正向影响的趋势。纳米粒子对植物中类黄酮、花青素和应激标志物含量的影响因处理和品种而异,但也因研究的器官(叶或茎)而异。总体而言,灯笼报春‘金心’比‘瓦伦丁’具有更高的耐胁迫性和遗传稳定性,这分别通过测定 PSII 的活性和流式细胞术分析来判断。纳米粒子对存活率、生物计量参数、生理反应和细胞遗传学事件的复杂影响突出了纳米粒子与植物系统之间的复杂相互作用。然而,我们的研究证实了纳米粒子对冷冻保存后灯笼报春植物离体生长和发育的积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ba6/11392386/dcaa2ff3657d/pone.0310424.g001.jpg

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