• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

四种德国鸢尾多倍体种质研究与倍性鉴定

Botany and Ploidy of Four Polyploid Iris germanica Germplasms

  • 摘要:
    目的 为提高德国鸢尾的抗性和观赏价值,开展了德国鸢尾多倍体新种质创制研究。
    方法 以德国鸢尾城堡、黑色骑士、黑色水银、西马仑地带组培丛生芽为诱导材料,以加入不同浓度秋水仙素(colchicine, COL)的丛生芽诱导培养基和生根培养基为多倍体诱导培养基培育多倍体植株;通过形态学-细胞学-分子生物学三级递进鉴定体系对诱导变异植株进行倍性鉴定。
    结果 诱导城堡和黑色水银产生变异的最优丛生芽诱导培养基为MS+0.5 mg·L−1 6-BA+0.5 mg·L−1 NAA+0.10% COL和MS+0.5 mg·L−1 6-BA+1.0 mg·L−1 NAA+0.10% COL,生根培养基为1/2MS+0.5 mg·L−1 NAA+0.10% COL,诱导率分别为80.00±0.37%和66.67±0.12%;诱导黑色骑士和西马仑地带产生变异的最佳丛生芽诱导培养基为MS+0.5 mg·L−1 6-BA+0.5 mg·L−1 NAA+0.05% COL和MS+1.5 mg·L−1 6-BA+1.0 mg·L−1 NAA+0.05% COL,生根培养基为1/2MS+0.5 mg·L−1 NAA+0.05% COL,诱导率分别为46.67±0.08%和73.33±4.22%。形态学鉴定表明,变异植株均表现出株型增高、叶片增宽增厚、根系粗壮、气孔增大、单位视野内气孔密度降低的多倍体特征。根尖染色体计数和流式细胞仪倍性鉴定表明,呈现多倍体特征的四种德国鸢尾根尖染色体数目均为对照株的两倍,DNA荧光强度均较对照株增加了两倍,表明成功诱导出了染色体加倍植株。
    结论 城堡和黑色水银变异植株染色体数目均为2n=64(对照株2n=32);黑色骑士变异植株染色体数目为2n=48(对照株2n=24);西马仑地带变异植株染色体数目为2n=44(对照株2n=22)。该研究建立了四种德国鸢尾多倍体种质创制体系,为鸢尾属植物多倍体种质创新提供了理论依据和技术支撑。

     

    Abstract:
    Objective Four polyploid germplasm of Iris germanica were studied to facilitate resistance improvement and value enhancement of the ornamental plants.
    Method Tissue culture clusters collected from I. germanica varieties, Castle, Black Knight, Black Mercury, and Cimalen Zone, were cultured on the clump-forming bud induction medium and rooting medium containing varied concentrations of colchicine (COL) to grow mutant polyploid plants. Ploidy of the plants were identified morphologically, cytologically, and molecular biologically.
    Result The optimal medium for inducing the mutant Castle bud clusters was formulated with MS + 0.5 mg·L−1 6-BA + 0.5 mg·L−1 NAA + 0.10% COL, and MS + 0.5 mg·L−1 6-BA + 1.0 mg·L−1 NAA + 0.10% COL for Black Mercury. The optimized rooting medium for both was same with 1/2MS + 0.5 mg·L−1 NAA + 0.10% COL. They resulted in a mutation induction rate of 80.00±0.37% on Castle and 66.67±0.12% on Black Mercury. The selected induction medium for Black Knight contained MS + 0.5 mg·L−1 6-BA + 0.5 mg·L−1 NAA + 0.05% COL, and that for Cimalen Zone MS + 1.5 mg·L−1 6-BA + 1.0 mg·L−1 NAA + 0.05% COL. While the identical rooting medium for the two consisted of 1/2MS + 0.5 mg·L−1 NAA + 0.05% COL. The final induction rate was 46.67±0.08% for Black Knight, and 73.33±4.22% for Cimalen Zone. Morphologically, all mutant plants showed polyploid characteristics such as greater height, wider and thicker leaves, stronger roots, larger stomata, and lower stomatal density than the comparative regular plants. The chromosome counts at root tips of the 4 mutant germplasms were twice that of control, and the ploidy identified by flow cytometry with DNA fluorescence intensity twice that of non-mutant originals as well. Thus, the chromosome doubling plants were successfully generated.
    Conclusion The ploidy of the mutant Castle and Black Mercury were both 2n = 64 (versus 2n = 32 of control), that of mutant Black Knight 2n = 48 (vs. 2n = 24 of control), and that of mutant Cimalen Zone 2n = 44 (vs. 2n = 22 of control). The system developed in this study that satisfactorily created 4 polyploid I. germanica germplasms seemed to be technically applicable for generating new varieties to meet a broadened landscaping demand.

     

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