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首页> 外文期刊>Acta Horticulturae >Preflower Irrigation and Paclobutrazol Dependent Fruit Number and Water Use Efficiency Responses in Young Mango Trees
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Preflower Irrigation and Paclobutrazol Dependent Fruit Number and Water Use Efficiency Responses in Young Mango Trees

机译:芒果幼树的花前灌溉和多效唑依赖的果实数和水分利用效率响应

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This study compared four rates of preflowering irrigation (0,13,25 and 50mm/ week) on paclobutrazol (PBZ) and non-paclobutrazol (non-PBZ) treated mango trees ('Kensington Pride', KP) over four seasons (1995 to 1998). Flowering and fruit numbers per tree followed a biennial bearing pattern and the responses to preflower irrigation differed between PBZ and non-PBZ treated trees. Peak flowering intensity was significantly improved by PBZ application in one on-season and one off-season (1995 and 1998) and was reduced by 50 mm/week preflower irrigation in the same two seasons. There were significant interactions between irrigation and PBZ application for fruit number per tree for these two seasons. For the on-season of 1995 PBZ trees irrigated at 25 mm/week (78 fruit/tree) had significantly more fruit than all other PBZ and non-PBZ irrigation treatments with the exception of the non-PBZ, non-irrigated (0 mm/week) treatment. For the off-season of 1998 season PBZ trees irrigated at 13 mm/week produced 52fruit/tree, significantly more than all other treatments. Year to year results were variable but highlighted that the greatest fruit production for PBZ treated trees came from low or moderate preflower irrigation rates and that the preflower irrigation requirements of PBZ treated trees are lower in off-seasons (13 mm/ week) than on-seasons (25 mm/week) when they carry a greater fruit load. There was an overall pattern for PBZ treated trees with a low or moderate level of preflower irrigation to supportthe highest fruit numbers. Water use efficiency (WUE) defined as the sum of irrigation and rainfall over yield) values gave similar interactions to that of the fruit number results. The WUE results demonstrated that for non-PBZ treated trees preflower droughting was the most water efficient, but for PBZ treated trees it was more efficient to irrigate at 25 or 13 mm/week depending on the fruit loads of the season.
机译:这项研究比较了在四个季节(1995年至1995年)对多效唑(PBZ)和非吡唑醇(非PBZ)处理过的芒果树(“肯辛顿骄傲”,KP)的四种开花前灌溉速率(0,13,25和50mm /周)。 1998)。每棵树的开花和果实数遵循两年生的模式,PBZ处理过的树和未经过PBZ处理的树对花前灌溉的响应不同。在一个季节和一个淡季(1995年和1998年)使用PBZ可以显着提高峰值开花强度,而在相同的两个季节中,每周花前灌溉减少50毫米/周。在这两个季节中,灌溉和PBZ施用对每棵树的果实数之间存在显着的相互作用。在1995年的季节中,以25毫米/周的速度灌溉的PBZ树(78棵树/树)的果实比所有其他PBZ和非PBZ灌溉处理的果实多得多,但非PBZ,非灌溉(0毫米) /周)的治疗。在1998年淡季,以13毫米/周灌溉的PBZ树/果树可生产52棵果,比所有其他处理方法要多得多。每年的结果参差不齐,但强调指出,PBZ处理树的最大果实产量来自较低或中等的花前灌溉速率,并且在淡季(13毫米/周),PBZ处理树的花前灌溉需求低于-季节(25毫米/周)时,它们会承受更大的水果负荷。 PBZ处理过的树木总体上表现为低水平或中等水平的花前灌溉,以支持最高的果实数量。水分利用效率(WUE)定义为灌溉和降雨与产量的总和)值与水果数量结果的相互作用类似。 WUE结果表明,对于未经PBZ处理的树木,花前干旱最节水,但对于PBZ处理的树木,以25或13毫米/周/周的灌溉量更为有效,具体取决于季节的果实负荷。

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