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首页> 外文期刊>Plant Cell Reports >Production and cytogenetic characterization of intertribal somatic hybrids between Brassica napus and Isatis indigotica and backcross progenies
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Production and cytogenetic characterization of intertribal somatic hybrids between Brassica napus and Isatis indigotica and backcross progenies

机译:甘蓝型油菜与板蓝根及回交后代的部落间体细胞杂种的生产和细胞遗传学特征

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Intertribal somatic hybrids between Brassica napus (2n = 38, AACC) and a dye and medicinal plant Isatis indigotica (2n = 14, II) were obtained by fusions of mesophyll protoplasts. From a total of 237 calli, only one symmetric hybrid (S2) and five asymmetric hybrids (As1, As4, As6, As7 and As12) were established in the field. These hybrids showed some morphological variations and had very low pollen fertility. Hybrids S2 and As1 possessed 2n = 52 (AACCII), the sum of the parental chromosomes, and As12 had 2n = 66 (possibly AACCIIII). Hybrids As4, As6 and As7 were mixoploids (2n = 48–62). Genomic in situ hybridization analysis revealed that pollen mother cells at diakinesis of As1 contained 26 bivalents comprising 19 from B. napus and 7 from I. indigotica and mainly showed the segregation 26:26 at anaphase I (AI) with 7 I. indigotica chromosomes in each polar group. Four BC1 plants from As1 after pollinated by B. napus resembled mainly B. napus in morphology but also exhibited some characteristics from I. indigotica. These plants produced some seeds on selfing or pollination by B. napus. They had 2n = 45 (AACCI) and underwent pairing among the I. indigotica chromosomes and/or between the chromosomes of two parents at diakinesis. All hybrids mainly had the AFLP banding patterns from the addition of two parents plus some alterations. B. napus contributed chloroplast genomes in majority of the hybrids but some also had from I. indigotica. Production of B. napus–I. indigotica additions would be of considerable importance for genome analysis and breeding.
机译:通过叶肉原生质体融合获得甘蓝型油菜(2n = 38,AACC)与染料和药用植物板蓝根(2n = 14,II)之间的部落体细胞杂种。在总共237个愈伤组织中,在该领域中仅建立了一个对称杂种(S2)和五个不对称杂种(As1,As4,As6,As7和As12)。这些杂种表现出一些形态变化,并且花粉育性非常低。杂种S2和As1具有2n = 52(AACCII),即父母染色体的总和,而As12具有2n = 66(可能是AACCIIII)。杂种As4,As6和As7是混合倍体(2n = 48–62)。基因组原位杂交分析显示,As1的花粉母细胞包含26个二价体,其中包括来自B. napus的19个和来自I. indigotica的7个,并且主要显示I(AI)后期26:26的分离,其中I. indigotica的7个染色体。每个极地集团。 B. napus授粉后,来自As1的4个BC 1 植物在形态上主要相似于B. napus,但也表现出一些来自靛蓝的特征。这些植物在甘蓝型油菜自交或授粉时产生了一些种子。他们有2n = 45(AACCI),并在诊断时在靛蓝I染色体之间和/或两个亲本的染色体之间进行了配对。通过添加两个亲本以及一些改变,所有杂种主要具有AFLP带型。甘蓝型油菜在大多数杂种中贡献了叶绿体基因组,但也有一些来自靛蓝。甘蓝型油菜的生产靛蓝的添加对于基因组分析和育种具有相当重要的意义。

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