首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Growth characteristics of apple cultivar Gravenstein plants grafted onto the transformed rootstock M26 with rolA and rolB genes under non-limiting nutrient conditions
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Growth characteristics of apple cultivar Gravenstein plants grafted onto the transformed rootstock M26 with rolA and rolB genes under non-limiting nutrient conditions

机译:在非限制性营养条件下,将带有rolA和rolB基因的苹果栽培Gravenstein植物嫁接到转化的砧木M26上的生长特性

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The growth characteristics of the apple cultivar (Malus domestica) Gravenstein (GR) grafted onto the transformed rootstock M26 were investigated. The transformed rootstocks used in the experiments included two clones with the rolA gene (rolA1 and rolA2) and one clone with the rolB gene (rolB). The grafted plants consisted of GR/rolA1, GR/rolA2 and GR/rolB and the control plants GR/M26 (the untransformed rootstock). Ingestad's experimental system was employed for growing the plants to maintain non- limiting nutrient conditions and to achieve accurate and comparable results. The results show that the grafted GR/rolA1, GR/rolA2, and GR/rolB plants had a similar relative growth rate to the GR/M26 plants, indicating no effect of the transformed rootstock on relative growth rate under non-limiting nutrient conditions. Moreover, the transformed rootstocks influenced neither the leaf area ratio, specific leaf area values nor dry matter allocation. However, the GR/rolA1 plants did show a reduced stem length and a decreased internode length compared to the control and the other two transgenic clones. Also, the GR/rolA1 and GR/rolA2 showed a significant lower specific root length value compared to the control. The present results suggest that the dwarfing effect does not relate to the relative growth rate of the rootstock. The transformed clone rolA1 and rolA2, especially rolA1, might be potential dwarfing rootstocks for apple production.
机译:研究了嫁接到转化的砧木M26上的苹果品种(Malus domestica)Gravenstein(GR)的生长特性。实验中使用的转化砧木包括两个具有rolA基因的克隆(rolA1和rolA2)和一个具有rolB基因的克隆(rolB)。嫁接的植物由GR / rolA1,GR / rolA2和GR / rolB组成,而对照植物则由GR / M26(未转化的砧木)组成。 Ingestad的实验系统用于植物生长,以维持非限制性营养条件并获得准确和可比的结果。结果表明,嫁接的GR / rolA1,GR / rolA2和GR / rolB植物具有与GR / M26植物相似的相对生长速率,表明在非限制性养分条件下,转化的砧木对相对生长速率没有影响。而且,转化的砧木既不影响叶面积比,比叶面积值也不影响干物质分配。然而,与对照和其他两个转基因克隆相比,GR / rolA1植物确实显示出减少的茎长和减少的节间长度。而且,与对照相比,GR / rolA1和GR / rolA2显示出明显较低的比根长值。目前的结果表明,矮化效应与砧木的相对生长率无关。转化后的克隆rolA1和rolA2,尤其是rolA1,可能是苹果生产中潜在的矮化砧木。

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