Lliso Ignacio, Forner Juan B, Talón Manuel
Departamento de Citricultura y Otros Frutales, Instituto Valenciano de Investigaciones Agrarias, Apartado Oficial, E-46113 Moncada, Valencia, Spain.
Tree Physiol. 2004 Feb;24(2):225-32. doi: 10.1093/treephys/24.2.225.
The annual development of Navelina (Citrus sinensis (L.) Osbeck) trees budded on three hybrid citrus rootstocks was studied. Two rootstocks, named #23 and #24, were obtained from the cross of Troyer citrange (C. sinensis x Poncirus trifoliata (L.) Raf.) x Cleopatra mandarin (C. reshni Hort. ex Tan.). The third rootstock, named F&A 418, came from a cross of Troyer citrange x common mandarin (C. deliciosa Ten.). Rootstocks #23 and F&A 418 are dwarfing rootstocks and reduce the size of the scion by about 75%. Rootstock #24 yields a standard size scion. Major growth differences that influenced tree size were apparent during the first summer after grafting and appeared to be related to fruit productivity, because defruiting the dwarfed scions caused a significant increase in vegetative shoot development, including summer sprouting. The reduced growth of the dwarfed scions was not restored by hormone application, indicating that a hormonal deficiency is unlikely to be the primary reason for scion dwarfing, although differences in gibberellin concentrations were found in actively growing shoots. Leaf photosynthesis was similar in scions on all three rootstocks, but the carbohydrate accumulation in fruits and fibrous roots during the summer sprouting period was significantly greater in the dwarfed trees than in the standard trees. Our results suggest that the dwarfing mechanism induced by the F&A 418 and #23 rootstocks is mediated by enhanced reproductive development and fruit growth, resulting in reduced vegetative development in the summer. Thus, a change in the pattern of assimilate distribution appears to be one of the main components of the dwarfing mechanism.
研究了嫁接在三种杂交柑橘砧木上的脐橙(Citrus sinensis (L.) Osbeck)树的年度生长情况。两种砧木,编号为#23和#24,是由特洛耶枳橙(C. sinensis x Poncirus trifoliata (L.) Raf.)与埃及艳后橘(C. reshni Hort. ex Tan.)杂交获得的。第三种砧木,名为F&A 418,来自特洛耶枳橙与普通橘(C. deliciosa Ten.)的杂交。砧木#23和F&A 418是矮化砧木,可使接穗大小减小约75%。砧木#24的接穗生长为标准大小。影响树体大小的主要生长差异在嫁接后的第一个夏季就很明显,并且似乎与果实产量有关,因为去除矮化接穗上的果实会导致包括夏季新梢萌发在内的营养枝发育显著增加。激素处理并不能恢复矮化接穗的生长减缓,这表明激素缺乏不太可能是接穗矮化的主要原因,尽管在活跃生长的新梢中发现了赤霉素浓度的差异。所有三种砧木上接穗的叶片光合作用相似,但在夏季新梢萌发期,矮化树果实和须根中的碳水化合物积累明显高于标准树。我们的结果表明,F&A 418和#23砧木诱导的矮化机制是由生殖发育和果实生长增强介导的,导致夏季营养发育减少。因此,同化物分配模式的改变似乎是矮化机制的主要组成部分之一。