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Cryopreserved callus, a source of protoplasts for citrus improvement

机译:冷冻保存的愈伤组织,一种促进柑橘生长的原生质体

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摘要

The availability and maintenance of embryogenic callus is a major limitation for large-scale application of somatic hybridization for citrus breeding. The suitability of cryopreserved callus as source of protoplasts was evaluated. Sweet orange callus were frozen by slow cooling and stored for two years in liquid nitrogen. Cryopreserved callus were facts thawed and used as source of material for protoplast isolation, protoplast fusion and plant regeneration, in comparison with control non-cryopreserved callus. No differences were found in protoplast yield, quality, growth and regeneration capacity between both callus types. Protoplasts isolated from cryopreserved callus were also successfully used in somatic fusion assays. Plants regenerated from protoplasts of the two sources had the same phenotypic characters and no differences were detected by microsatellite analysis. Availbability of cryopreserved callus facilitates the development of breeding programmes based on somatic hybridization, avoiding the risks and high labour needs associated with standard maintenance by periodical subcultures.
机译:胚性愈伤组织的可获得性和维持性是将体细胞杂交大规模应用于柑橘育种的主要限制。评估了冷冻保存的愈伤组织作为原生质体来源的适用性。通过缓慢冷却将甜橙愈伤组织冷冻,并在液氮中保存两年。与对照非冷冻保存的愈伤组织相比,冷冻保存的愈伤组织被解冻并用作原生质体分离,原生质体融合和植物再生的物质来源。两种类型的愈伤组织在原生质体产量,质量,生长和再生能力上均未发现差异。从低温保存的愈伤组织中分离出的原生质体也成功地用于体细胞融合测定中。从两种来源的原生质体再生的植物具有相同的表型特征,并且通过微卫星分析没有发现差异。低温保存的愈伤组织的可用性促进了基于体细胞杂交的育种计划的开发,避免了定期亚培养进行标准维持所带来的风险和高人工需求。

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