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首页> 外文期刊>Trees. Structure and Function >Alternate bearing in pistachio (Pistacia veraL.): a review
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Alternate bearing in pistachio (Pistacia veraL.): a review

机译:开心果中的交替轴承(Pistacia Veral。):审查

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Key message In this review, the main internal and environmental hypotheses regarding alternate bearing and abscission of inflorescence buds and also, the methods to mitigate this physiological phenomenon have been investigated. Alternate bearing is annually fluctuating heavy ('on') and light ('off') crops, which occurs in most fruit trees. There are multiple visible causes, decreased shoot growth and flower buds or imperfect flowers, but all occur in association with a heavy crop, suggesting a carbohydrate resource limitation to shoot growth, or flower initiation, induction or differentiation. Pistachios bear on 1-year-old shoots from axillary buds produced the previous year. The visible mechanism is bud abscission on current season's growth during 'on' years and bud retention in low crop load ('off') years. Though bud abscission is visible, the underlying cause is unknown. This review classifies the multiple hypotheses as internal, genetic, carbohydrate resources and hormones or environmental, abiotic and biotic stresses. Our examination of potential hypotheses and recent research suggests alternate bearing in pistachio is a result of the carbohydrate resource limitation generated by the heavy 'on' year crop maturation. However, the specific signal producing bud abscission is unknown. Alternate bearing in pistachio can be mitigated by a vigorous rootstock, particularly if combined with proper pruning. We hypothesize the vigorous rootstock may produce a better carbohydrate resource status through a larger tree with more leaf surface area. The pruning does not address the bud abscission but alters the ratio of non-bearing to bearing shoots, resulting in a lower alternate bearing index. Furthermore, we conclude alternate bearing in pistachio, while a within shoot phenomenon, can be triggered by severe environmental events that damage a current crop.
机译:在本综述中,关键消息,关于开瓶芽的替代轴承和脱落的主要内部和环境假设以及减轻这种生理现象的方法。替代轴承在大多数果树中发生重度('开')和光('OFF')作物。有多种可见的原因,拍摄生长和花蕾或不完美的花朵减少,但均与繁重的作物相关,表明碳水化合物资源限制射击生长,或花起始,诱导或分化。开心果携手从前一年产生的腋芽1岁的枝条上。可见机制是对当前季节的增长的萌芽脱落,低作物负荷('关闭')年的芽潴留。虽然芽脱落是可见的,但潜在的原因是未知的。本次审查将多个假设称为内部,遗传,碳水化合物资源和激素或环境,非生物和生物应激。我们对潜在的假设和最近的研究审查表明,开心果中的交替轴承是碳水化合物资源限制的结果,其在年度作物成熟中产生了重物。然而,产生芽脱落的特定信号是未知的。可以通过剧烈的砧木减轻开孔中的交替轴承,特别是如果结合适当的修剪。我们假设剧烈的砧木可以通过具有更多叶面积的较大的树产生更好的碳水化合物资源地位。修剪没有解决芽露,但改变了非承载与轴承芽的比率,导致备用轴承指数较低。此外,我们在开心果中得出结论备用轴承,而在拍摄现象中,可以通过损坏当前作物的严重环境事件来触发。

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