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首页> 外文期刊>Scientia horticulturae >New scion-rootstock combinations for diversification of sweet orange orchards in tropical hardsetting soils
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New scion-rootstock combinations for diversification of sweet orange orchards in tropical hardsetting soils

机译:新的曲砧座,用于热带橙色果园多样化的热带橙色果园

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摘要

Naturally occurring subsoil horizon restricting root development and a narrow genetic base of scion-rootstock combinations make the citriculture in Brazilian Northeast prone to biotic and abiotic stresses. The diversification of citrus orchards through the introduction of new scion-rootstocks combinations is an important strategy to reduce the risks associated with these constraints. Three experiments aiming at identifying appropriate scion-rootstock combinations for enhancing genetic diversification in citrus orchards under rainfed conditions in tropical hardsetting soils were established in Sergipe state in 2008. In each one, a different sweet orange ('Sincora', 'Valencia Tuxpan' and 'Pineapple') was grafted on six rootstocks ('Santa Cruz' Rangpur lime, 'Red Rough' lemon, 'Orlando' tangelo, 'Sunki Tropical' mandarin, HTR-051 and VKLxRPL-010 hybrids). After eight years the experiments were evaluated for plant development, yield performance and fruit quality. In general, all sweet oranges grafted on 'Red Rough' lemon showed great development and cumulative yield as does with 'Santa Cruz' Rangpur lime, with the later showing better fruit quality as an advantage. Inversely, HTR-051 hybrid displayed low yields despite high yield efficiency, for this rootstock induces dwarfism. 'Sunki Tropical' mandarin brought high yields of medium quality fruits, while the VKLxRPL-010 hybrid induced productive precocity, especially for 'Sincora' sweet oranges. Based upon these results, all tested scions grafted on 'Red Rough' lemon and 'Santa Cruz' Rangpur lime, followed by 'Sunki Tropical' mandarin are indicated for genetic diversification of groves, when planted at conventional density. On the other hand, the hybrid HTR-051 seems to have great potential for high density orchards, since it shows high yield efficiency and good quality of fruit.
机译:自然发生的底土程限制了根部发育和狭窄的凝固遗传基础,使巴西东北的火绿豪华于生物和非生物胁迫。通过引入新的Scion-rootocks组合的柑橘园的多样化是减少与这些限制相关的风险的重要策略。在2008年的Sergipe State建立了旨在鉴定用于增强柑橘果园的适当植物植物组合的三个实验,以在热带沉降的土壤中的雨量条件下在Sergipe Stare在塞尔加斯州立。在每个人,一个不同的甜橙('sincor','valencia tuxpan'和' '菠萝')嫁接了六个砧木('圣克鲁斯'rangpur石灰,'红色粗糙'柠檬,'奥兰多'Tangelo,'sunki热带'普通话,htr-051和Vklxrpl-010混合动力车)。八年后,评估植物开发,产量性能和果实质量的实验。一般来说,嫁接“红色粗糙”柠檬嫁接的所有甜橙表现出巨大的发展和累积产量,与“圣克鲁斯”rangpur石灰相同,后来表现出更好的水果质量作为一个优势。反相,尽管产量效率高,但HTR-051杂交率为低产率,因为这种砧木诱导矮主。 'Sunki Tropical'普通话带来了高产量的中质品质,而VKLXRPL-010杂交诱导的生产性预节,特别是对于“圣师”甜蜜橙子。基于这些结果,嫁接在“红粗糙”柠檬和'圣克鲁斯'rangpur石灰上的所有测试的阴分,其次是在常规密度种植的遗传多样化的遗传多样化。另一方面,Hybrid HTR-051似乎对高密度果园具有很大的潜力,因为它显示出高产效率和良好的水果品质。

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