Viability and integrity of Pinus densiflora seeds stored for 20 years at three different temperatures.

IF 2.6 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION Conservation Physiology Pub Date : 2024-07-09 eCollection Date: 2024-01-01 DOI:10.1093/conphys/coae046
Da-Eun Gu, Sim-Hee Han, Kyu-Suk Kang
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Abstract

Storage temperature is one of the most important factors determining seed longevity in the genebank. This study aimed to investigate the effect of storage temperature on the seed viability and physiological integrity after a 20-year storage period of Pinus densiflora, a tree species of ecological and economic significance in South Korea. To this end, seeds were collected and stored dry for 20 years at -18°C, 4°C and 25°C. Germination tests were conducted to assess seed viability and vigour, electrolyte leakage analysis was performed to assess cell membrane integrity, and carbohydrate analysis was conducted to assess metabolic integrity during germination. The results revealed that over 20 years, seeds stored at -18°C maintained a high germination percentage (GP; 89%), comparable to initial GP (91%), whilst those stored at 4°C exhibited a decline in GP (44%) along with a decrease in vigour. Seeds stored at 25°C lost their viability entirely. Electrical conductivity of the leachate and leakage of inorganic compounds and soluble sugars were higher with elevated storage temperature, indicating increased imbibition damage. Additionally, changes in carbohydrate content during germination revealed that the loss of viability according to storage temperature is associated with reduced storage reserve utilization and altered carbohydrate metabolism during germination. These results enhance our understanding of the effect of seed storage temperature on longevity and physiological changes of aging in the genebank, serving as a reference for establishing conservation strategies for Pinus densiflora.

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在三种不同温度下贮藏 20 年的欧洲赤松种子的活力和完整性。
贮藏温度是决定基因库中种子寿命的最重要因素之一。本研究旨在调查韩国具有重要生态和经济意义的树种--欧洲赤松(Pinus densiflora)种子在 20 年贮藏期后,贮藏温度对种子活力和生理完整性的影响。为此,收集了种子,并在 -18°C、4°C 和 25°C 下干燥贮藏 20 年。萌发试验用于评估种子活力和活力,电解质渗漏分析用于评估细胞膜完整性,碳水化合物分析用于评估萌发过程中的代谢完整性。结果表明,在零下 18 摄氏度条件下储存 20 年的种子仍能保持较高的发芽率(GP;89%),与最初的发芽率(91%)相当,而在 4 摄氏度条件下储存的种子的发芽率下降(44%),活力也随之下降。储存在 25°C 的种子完全丧失了活力。浸出液的电导率以及无机化合物和可溶性糖的渗漏都随着储存温度的升高而增加,这表明浸泡破坏加剧。此外,发芽过程中碳水化合物含量的变化表明,活力随贮藏温度的变化而降低与贮藏储备利用率降低和发芽过程中碳水化合物代谢改变有关。这些结果加深了我们对基因库中种子贮藏温度对寿命和老化生理变化的影响的理解,为制定欧洲赤松的保护策略提供了参考。
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来源期刊
Conservation Physiology
Conservation Physiology Environmental Science-Management, Monitoring, Policy and Law
CiteScore
5.10
自引率
3.70%
发文量
71
审稿时长
11 weeks
期刊介绍: Conservation Physiology is an online only, fully open access journal published on behalf of the Society for Experimental Biology. Biodiversity across the globe faces a growing number of threats associated with human activities. Conservation Physiology will publish research on all taxa (microbes, plants and animals) focused on understanding and predicting how organisms, populations, ecosystems and natural resources respond to environmental change and stressors. Physiology is considered in the broadest possible terms to include functional and mechanistic responses at all scales. We also welcome research towards developing and refining strategies to rebuild populations, restore ecosystems, inform conservation policy, and manage living resources. We define conservation physiology broadly and encourage potential authors to contact the editorial team if they have any questions regarding the remit of the journal.
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