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首页> 外文期刊>Australian Journal of Grape and Wine Research >Impact of low rainfall during dormancy on vine productivity and development
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Impact of low rainfall during dormancy on vine productivity and development

机译:降雨量在休眠期间对藤蔓生产力和发展的影响

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Background and Aims Declining autumn and winter rainfall increasingly limits soil moisture availability at the onset of the growing season in southern Australia. We studied the consequences of reduced rainfall during dormancy on vine growth, and explored irrigation strategies to maintain yield following dry winters. Methods and Results The effect of the timing and method of irrigation during dormancy on vine performance was investigated for three seasons in a Shiraz vineyard where late autumn and winter rainfall was excluded using shelters. Reduced soil moisture in spring delayed the time of budburst. A reduction in rain to approximately one third of the historical average reduced yield (24-42%) and canopy size (16-31%). Natural rain (Control) or equivalent sprinkler irrigation, providing water during winter, resulted in a higher yield: pruning mass ratio, but reduction in yield was still observed when drip irrigation was used to replace winter rain. Refilling the soil profile in spring after dry winters favoured growth partitioning towards canopy and roots, increased carbohydrate reserves in the trunk, but reduced yield (-10 to -32%). Conclusions Irrigation during winter did not fully offset the decline in production. Refilling the soil profile at the end of winter increased vigour, and reduced yield. Reduced soil moisture prior to spring delayed the time of budburst. Significance of the Study Vineyard management aiming to sustain yield under a changing climate will need to incorporate winter irrigation. Models predicting the time of budburst under a changing environment could be fine-tuned by incorporating soil moisture availability.
机译:背景和目标下降秋季和冬季降雨量越来越多地限制澳大利亚南部生长季节的土壤湿度可用性。我们研究了在潮气成长时降雨量减少的后果,并探索了干冬季维持产量的灌溉策略。方法和结果对休眠期间灌溉时间和灌溉方法对藤蔓性能的影响,在Shiraz Vineyard中的三个季节进行了三个季节,其中包括庇护所。春天减少土壤水分延迟了布伯斯特的时间。降低雨量的约三分之一的历史平均值降低产量(24-42%)和冠层大小(16-31%)。自然雨(控制)或等效喷水灭火,在冬季提供水,导致产量较高:滴灌灌溉时仍然观察到浸泡质量比例,但仍然观察到产量的降低仍然观察到冬季雨水。在干冬季将春季填充春季的土壤曲线促使朝向冠层和根部的生长分配,在树干中增加碳水化合物储备,但产率降低(-10至-32%)。结论冬季灌溉并未完全抵消生产的下降。在冬季结束时重新填充土壤曲线增加的活力,降低产量。春季之前减少了土壤水分延迟了布伯斯特的时间。研究葡萄园管理的重要性旨在在不断变化的气氛下维持产量的终身灌溉需要纳入冬季灌溉。通过纳入土壤水分可用性,可以进行微调,预测布伯斯在不断变化的环境下的模型。

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