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Development of interspecific Solanum lycopersicum and screening for Tospovirus resistance

机译:种间茄茄的研制及对猪痘病毒的筛选。

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摘要

Tospovirus has emerged as a serious viral pathogen for several crops including tomato. The tomato production is being severely affected worldwide by Tospovirus. Some reports have been published about the association of plant virus and development of human disease either by direct or indirect consumption. Resistance to this virus has been identified as good source in wild tomato species (Lycopersicum peruvianum). But the introgression of resistance genes into cultivated tomato lines and the development of interspecific hybrid are hampered due to incompatibility, fertilization barriers and embryo abortion. But this barrier has been broken by applying the embryo rescue methods. This study describes the development of interspecific hybrid tomato plants by highly efficient embryo rescue method and screening for Tospovirus resistance. The interspecific hybrid tomato plants were developed by making a cross between wild tomato species (L. peruvianum) and cultivated tomato (Solanum lycopersicum). The immature embryos were cultured in standardized medium and interspecific hybrids were developed from embryogenic callus. The immature embryos excised from 7 to 35 days old fruits were used for embryo rescue and 31 days old embryos showed very good germination capabilities and produced the highest number of plants. Developed plants were hardened enough and shifted to green house. The hybrid nature of interspecific plants was further confirmed by comparing the morphological characters from their parents. The F1, F2 and F3 plants were found to have varying characters especially for leaf type, color of stem, fruits, size, shapes and they were further screened for virus resistance both in lab and open field followed by Enzyme linked Immunosorbant Assay confirmation. Finally, a total of 11 resistant plants were selected bearing red color fruits with desired shape and size.
机译:Tospovirus已成为包括番茄在内的几种农作物的严重病毒病原体。番茄的生产正受到弓形病毒的严重影响。已经发表了一些有关通过直接或间接食用植物病毒与人类疾病发展的关联的报告。对这种病毒的抗性已被确定为野生番茄(Lycopersicum peruvianum)的良好来源。但是由于不相容,受精障碍和胚胎流产,阻碍了抗性基因向栽培番茄系的渗入和种间杂种的发展。但是通过应用胚胎拯救方法已经打破了这一障碍。这项研究描述了通过高效的胚胎拯救方法和对弓形病毒抗性的筛选发展种间杂种番茄植物。种间杂种番茄植株是通过在野生番茄种(L. peruvianum)和栽培番茄(Solanum lycopersicum)之间杂交得到的。在标准培养基中培养未成熟的胚,并从胚性愈伤组织中培育出种间杂种。从7到35天大的果实中切出的未成熟胚用于拯救胚胎,而31天大的胚显示出很好的发芽能力,并产生最多的植物。发达的植物经过足够的硬化,然后转移到温室中。通过比较其亲本的形态特征,进一步证实了种间植物的杂种特性。发现F1,F2和F3植物具有不同的特性,尤其是叶片类型,茎的颜色,果实,大小,形状,并且在实验室和露天条件下进一步筛选了它们的抗病毒能力,然后进行了酶联免疫吸附测定的确认。最终,总共选择了11种具有红色果实的抗性植物,这些果实具有所需的形状和大小。

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