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Regeneration of interspecific somatic hybrids between Helianthus annuus L. and Helianthus maximiliani (Schrader) via protoplast electrofusion

机译:通过原生质体电融合再生向日葵和最大向日葵之间的种间体细胞杂种

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摘要

Helianthus maximiliani is one of the wild Helianthus species with the genes for resistance to many pathogens including Sclerotinia sclerotiorum. Unfortunately, a transfer of disease resistance genes from this species into the cultivated sunflower is limited by its poor crossability with the cultivated sunflower and sterility of interspecific hybrids. To overcome this problem, mesophyll protoplasts of Sclerotinia sclerotiorum-resistant clone of H. maximiliani were electrically fused with etiolated hypocotyl protoplasts of the cultivated sunflower inbred line PH-BC1-91A. Fusion products were embedded in agarose droplets and subjected to different regeneration protocols. Developed microcalluses were released from the agarose and transferred into solid media. Shoot regeneration was achieved by culture of calluses on regeneration medium containing 2.2 mg l−1 BAP and 0.01 mg l−1 NAA after the treatment with a high concentration of 2,4 D for a limited period of time. A morphological and RAPD analysis confirmed a hybrid nature of the regenerated plants.
机译:向日葵是一种野生向日葵,具有对许多病原菌(包括菌核盘菌)具有抗性的基因。不幸的是,将抗病基因从该物种转移到栽培向日葵中的原因在于其与栽培向日葵的差的可交叉性和种间杂种的不育性。为克服这一问题,将耐最大菌核盘菌H. maximiliani的叶肉原生质体与培养的向日葵近交系PH-BC1 -91A的黄化胚轴原生质体电融合。将融合产物包埋在琼脂糖小滴中,并进行不同的再生方案。从琼脂糖中释放出发达的愈伤组织,并转移到固体培养基中。高浓度的2,4 D处理后,在含有2.2 mg l-1 BAP和0.01 mg l-1 NAA的再生培养基上培养愈伤组织,可以实现芽的再生。时间。形态学和RAPD分析证实了再生植物的杂种性质。

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