Cryopreservation of sorghum seeds modifies germination and seedling growth but not field performance of adult plants

IF 1.2 4区 生物学 Q2 Agricultural and Biological Sciences
Ariel Villalobos Olivera, M. Arguedas, D. Escalante, Julia Martínez, B. Zevallos, I. Cejas, L. Yabor, Marcos Edel Martínez-Montero, S. Sershen, J. Feijoo
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引用次数: 11

Abstract

Climate change poses risks to both wild and crop plant biodiversity, which can be mitigated by cryopreservation (usually at -196 °C in liquid nitrogen [LN]) of crop germplasm. Cryopreservation is widely regarded as a reliable method for the ex situ conservation of plant genetic resources but its effects on subsequent field performance of popular crop species such as sorghum are largely unknown. This hampers the large-scale implementation (i.e. germplasm banks) of cryostorage for such species. This short communication describes the early stages of germination and field performance of plants derived from cryopreserved sorghum seed. Compared with the control, cryopreservation significantly increased seed electrolyte leakage and from 24 to 120 hours, percentage of germination of the control was ~2.6 folds higher than cryopreserved seeds. At 0 days, chlorophyll a/b rate was ~1.7 folds higher in the control and at 7 and 14 days, chlorophyll a level (~1.5 folds) and chlorophyll a/b rate (~1.8-1.9 folds) were higher in the control. Contrastingly, at 7 days, seedlings derived from cryopreserved seeds (treatment seedlings) showed ~1.5 folds more superoxide dismutase activity and ~1.9 folds more peroxidase activity. In contrast, treatment and control adult plants were statistically comparable in terms of chlorophylls, proteins, superoxide and peroxidase activities, plant architecture, and yield components. The fact that differences in biochemical indicators observed between control and treatment seedlings did not persist in adult plants validates the use of seed cryopreservation for the conservation of sorghum genetic resources.
高粱种子的低温保存改变了种子的萌发和幼苗生长,但对成株的田间性能没有影响
气候变化对野生和作物植物的生物多样性都构成了风险,可以通过作物种质的冷冻保存(通常在-196°C的液氮[LN]中)来缓解这种风险。低温保存被广泛认为是一种可靠的植物遗传资源迁地保护方法,但它对高粱等流行作物物种随后的田间表现的影响在很大程度上是未知的。这阻碍了此类物种冷冻储存的大规模实施(即种质库)。这篇简短的通讯描述了从冷冻保存的高粱种子中提取的植物的发芽早期和田间表现。与对照相比,冷冻保存显著增加了种子电解质渗漏,从24到120小时,对照的发芽率比冷冻保存的种子高出约2.6倍。在0天时,对照的叶绿素a/b比率高出1.7倍,在7天和14天时,叶绿素a水平(约1.5倍)和叶绿素a/b速率(约1.8-1.9倍)高出对照。相反,在第7天,来自冷冻保存种子的幼苗(处理幼苗)表现出约1.5倍的超氧化物歧化酶活性和约1.9倍的过氧化物酶活性。相比之下,处理和对照成年植物在叶绿素、蛋白质、超氧化物和过氧化物酶活性、植物结构和产量组成方面具有统计学可比性。对照和处理幼苗之间观察到的生化指标差异在成年植物中没有持续存在,这一事实验证了种子冷冻保存在高粱遗传资源保护中的应用。
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来源期刊
CiteScore
2.50
自引率
0.00%
发文量
0
审稿时长
20 weeks
期刊介绍: The Journal of Applied Botany and Food Quality is the Open Access journal of the German Society for Quality Research on Plant Foods and the Section Applied Botany of the German Botanical Society. It provides a platform for scientists to disseminate recent results of applied plant research in plant physiology and plant ecology, plant biotechnology, plant breeding and cultivation, phytomedicine, plant nutrition, plant stress and resistance, plant microbiology, plant analysis (including -omics techniques), and plant food chemistry. The articles have a clear focus on botanical and plant quality aspects and contain new and innovative information based on state-of-the-art methodologies.
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