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Transformation of Mecardonia (Plantaginaceae) with wild-type Agrobacterium rhizogenes efficiently improves compact growth, branching and flower related ornamental traits

机译:MeCardonia(Plantaginaceae)与野生型土壤杆菌的转化有效提高了紧凑的生长,分支和花卉相关观赏性状

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Mecardonia constitutes an emergent crop in the floriculture market. In order to develop plants with improved compact growth by molecular breeding, we transformed Mecardonia cv. 'Guarani Amarilla INTA' using a wild type strain of Agrobacterium rhizogenes. An advantage of using this approach is that generated plants are stable and considered non-GMO in several countries. Adventitious roots were produced by inoculating Mecardonia shoots with agropine ATCC15834 strain. Twenty independent root cultures regenerated spontaneously into shoots in hormone-free medium and presence of IL-DNA oncogenes were confirmed in their genomes. We selected four root inducing (Ri)-lines, designated GME, GCA, GVI and GIN, based on their different degree of compact growth habit. Under greenhouse conditions representative Ri-lines displayed reduced internode and shoot length, shoot and root biomass, aerial plant coverage, individual leaf area, flower width, pedicel length and the number of flowers per plant; and increased the number of nodes, axillary shoots, flower density and flower width relative to aerial plant coverage and mostly normal flowering when compared to non-transformed plants. To correlate phenotypical traits with gene expression, quantitative PCR analysis was performed. Ri-line GIN showed the highest rolA-D and ORF8, OFR13-14 gene expression which correlated with its super-dwarf phenotype, whereas the most weak Ri-phenotype observed in Ri-line GME showed no presence of rolA and ORF8 genes in plant genome. Expression of rolD and ORF13 correlated with reduced aerial plant coverage, shoot weight, shoot: root ratio and increased flower density and flower width relative to plant coverage, thus being considered of particular interest in Mecardonia breeding. Expression of ORF8 and rolA correlated with reduced aerial plant coverage, pedicel length, the total number of flowers per plant and increased flower width relative to the aerial plant coverage. Moreover, ORF8 and ORF13 may have a more prominent role in plant development than previously assumed and assigned to rot-genes. Overall, a better-organized compact growth without affecting other traits could be generated.
机译:MeCardonia在花卉市场中构成了一种新鲜的作物。为了开发通过分子育种改善紧凑型生长的植物,我们转化了Mecardonia CV。 “瓜拉尼amarilla Inta”使用野生型土壤杆菌的根茎菌株。使用这种方法的一个优点是产生的植物在几个国家稳定并且被认为是非转基因。通过接种肉豆蔻ia芽和Agropine ATCC15834菌株来生产不定根。在其基因组中证实了20个独立的根系在激素培养基中自发再生成芽和IL-DNA癌基因的存在。根据其不同程度的紧凑型生长习惯,我们选择了四个根诱导(RI),指定GME,GCA,GVI和GIN。在温室条件下,代表ri-li线显示出降低的节间和射击长度,射击和根生物量,空中植物覆盖,单个叶面积,花宽度,花梗长度和每植物的花朵数量;与非转化植物相比,增加了相对于空中覆盖率的节点,腋芽,花密度和花宽度,大多是正常的开花。为了将表型性状与基因表达相关,进行定量PCR分析。 RI-LINE GIN显示出与其超级矮化表型相关的最高ROLA-D和ORF8,OFR13-14基因表达,而在RI-LINE GME中观察到的最弱的RI表型在植物中没有显示ROLA和ORF8基因的存在基因组。 ROLD和ORF13的表达与降低的空中植物覆盖率,射击重量,射击:根序和增加的花密度和花宽度相对于植物覆盖,因此被认为是对麦克约尼育种的特别感兴趣。 ORF8和ROLA的表达与降低的空中植物覆盖率,花梗长度,每株植物的鲜花总数和相对于空中植物覆盖率增加。此外,ORF8和ORF13可以在植物开发中具有比以前假定和分配给腐烂基因的更突出的作用。总的来说,可以产生更好的组织紧凑的生长,而不会影响其他特征。

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