Tu Yuqin, Sun Jian, Liu Yan, Ge Xianhong, Zhao Zhigang, Yao Xingcheng, Li Zaiyun
National Center of Crop Molecular Breeding Technology, National Center of Oil Crop Improvement (Wuhan), College of Plant Science and Technology, Huazhong Agricultural University, 430070 Wuhan, People's Republic of China.
Plant Cell Rep. 2008 May;27(5):873-83. doi: 10.1007/s00299-008-0513-1. Epub 2008 Feb 9.
Intertribal somatic hybrids of Raphanus sativus (2n = 18, RR) and Brassica rapa spp. chinensis (2n = 20, AA) with the dye and medicinal plant Isatis indigotica (2n = 14, I I) were firstly obtained by polyethylene glycol-induced symmetric fusions of mesophyll protoplasts. One mature hybrid with R. sativus established in field had intermediate morphology but was totally sterile. It had the expected chromosome number (2n = 32, RRI I) and parental chromosomes were distinguished by genomic in situ hybridization (GISH) analysis, and these chromosomes were paired as 16 bivalents in pollen mother cells (PMCs) at diakinesis and mainly segregated equally as 16:16 at anaphase I (A I), but the meiotic disturbance in second division was obvious. Five mature hybrids with B. rapa established in field were morphologically intermediate but showed some differences in phenotypic traits and fertility, two were partially fertile. Cytological and GISH investigations revealed that these hybrids had 2n = 48 with AAIIII complement and their PMCs showed normal pairing of 24 bivalents and mainly equal segregation 24:24, but meiotic abnormalities of lagging chromosomes and micronuclei appeared frequently during second divisions. AFLP analysis showed that all of these hybrids had mainly the DNA banding pattern from the addition of two parents plus some alterations. Some hybrids should be used for the genetic improvement of crops and the dye and medicinal plant.
首次通过聚乙二醇诱导叶肉原生质体对称融合,获得了萝卜(2n = 18,RR)、白菜型油菜(2n = 20,AA)与染料及药用植物菘蓝(2n = 14,II)的种间体细胞杂种。在田间培育出的一个与萝卜的成熟杂种具有中间形态,但完全不育。它具有预期的染色体数(2n = 32,RRI I),通过基因组原位杂交(GISH)分析可区分亲本染色体,这些染色体在终变期的花粉母细胞(PMC)中配对形成16个二价体,在后期I(AI)主要均等分离为16:16,但第二次分裂时减数分裂紊乱明显。在田间培育出的五个与白菜型油菜的成熟杂种在形态上为中间型,但在表型性状和育性上存在一些差异,其中两个部分可育。细胞学和GISH研究表明,这些杂种的染色体数为2n = 48,具有AAIIII染色体组,其PMC显示24个二价体正常配对,主要均等分离为24:24,但在第二次分裂期间经常出现落后染色体和微核等减数分裂异常现象。AFLP分析表明,所有这些杂种主要具有来自两个亲本相加的DNA条带模式以及一些改变。一些杂种可用于作物以及染料和药用植物的遗传改良。