Plant Sciences Unit, Flanders Research Institute for Agricultural, Fisheries and Food Research (ILVO), Caritasstraat 39, 9090, Melle, Belgium.
Department Plants and Crops, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000, Ghent, Belgium.
Plant Cell Rep. 2021 Sep;40(9):1665-1678. doi: 10.1007/s00299-021-02719-z. Epub 2021 May 29.
Improved compact shoot architecture of Osteospermum fruticosum Ri lines obtained through Rhizobium rhizogenes transformation reduces the need for chemical growth retardants. Compactness is for many ornamental crops an important commercial trait that is usually obtained through the application of growth retardants. Here, we have adopted a genetic strategy to introduce compactness in the perennial shrub Cape daisy (Osteospermum fruticosum Norl.). To this end, O. fruticosum was transformed using six different wild type Rhizobium rhizogenes strains. The most effective R. rhizogenes strains Arqua1 and ATCC15834 were used to create hairy root cultures from six Cape daisy genotypes. These root cultures were regenerated to produce transgenic Ri lines, which were analyzed for compactness. Ri lines displayed the characteristic Ri phenotype, i.e., reduced plant height, increased branching, shortened internodes, shortened peduncles, and smaller flowers. Evaluation of the Ri lines under commercial production conditions showed that similar compactness was obtained as the original Cape daisy genotypes treated with growth retardant. The results suggest that the use of chemical growth retardants may be omitted or reduced in commercial production systems of Cape daisy through implementation of Ri lines in future breeding programs.
通过根瘤农杆菌转化获得的非洲菊 Ri 系改良紧凑的短枝结构,减少了对化学生长抑制剂的需求。紧凑性是许多观赏作物的重要商业性状,通常通过使用生长抑制剂来获得。在这里,我们采用了一种遗传策略,将多年生灌木海角雏菊(Osteospermum fruticosum Norl.)引入紧凑性。为此,使用六种不同的野生型根瘤农杆菌菌株对 O. fruticosum 进行了转化。最有效的根瘤农杆菌菌株 Arqua1 和 ATCC15834 用于从六个海角雏菊基因型中创建毛状根培养物。这些根培养物被再生以产生转基因 Ri 系,并对其紧凑性进行分析。Ri 系表现出典型的 Ri 表型,即降低株高、增加分枝、缩短节间、缩短花梗和小花。在商业生产条件下对 Ri 系进行评估表明,获得的紧凑性与用生长抑制剂处理的原始海角雏菊基因型相似。研究结果表明,在未来的育种计划中,通过在商业生产系统中使用 Ri 系,可以省略或减少化学生长抑制剂的使用。