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首页> 外文期刊>Acta Horticulturae >Gas exchange of flower buds and water transport capacity of the peduncle of two cut roses during vase life.
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Gas exchange of flower buds and water transport capacity of the peduncle of two cut roses during vase life.

机译:花瓶寿命期间,花蕾的气体交换和两朵切好的玫瑰花梗的水输送能力。

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摘要

Cut rose (Rosa hybrida L.) cultivars largely differ in their vase life and bent-neck resistances. The most important factor determining these features is the postharvest water status management of plants, especially under drought stress. Structure and function of the peduncle is crucial for the bent neck susceptibility. In addition, all nutrients, carbohydrates, plant hormones and, of course, the water essential for flower development must pass through this part of the stem. The cut rose cultivars 'Akitio', typically with a short vase life, and 'Red Giant' with a long vase life were investigated. To quantify the water transport capacity of the peduncle, the actual hydraulic conductivity of unstressed rose stems was measured destructively in summer and winter. Furthermore, whole vase life gas exchange of flower buds was investigated from May 2006 to May 2007. Dry matter related flower bud transpiration was always significantly higher in 'Red Giant' (n=8) than in 'Akito' (n=10). Throughout all studies the hydraulic conductivity was higher in 'Red Giant'. However, differences were only significant in winter. It can be assumed that the generally better postharvest water management of 'Red Giant' plants may be related to a higher transport capacity. In addition, 'Red Giant' roses can achieve a long vase life despite of their high respiration rates.
机译:切玫瑰(Rosa hybrida L.)品种的花瓶寿命和抗弯颈性有很大不同。决定这些特征的最重要因素是植物的收获后水状态管理,尤其是在干旱胁迫下。花序梗的结构和功能对于弯曲的颈部易感性至关重要。此外,所有养分,碳水化合物,植物激素,当然还有花朵发育所必需的水都必须穿过茎的这一部分。对切​​花的玫瑰品种“ Akitio”(通常具有较短的花瓶寿命)和“ Red Giant”(其具有较长的花瓶寿命)进行了调查。为了量化花梗的水运输能力,在夏季和冬季以破坏性的方式测量了无应力玫瑰茎的实际水力传导率。此外,从2006年5月至2007年5月,研究了整个花瓶生命中花蕾的气体交换。“ Red Giant”( n = 8)中与干物质相关的花蕾蒸腾始终显着高于“ Akito”。 '( n = 10)。在所有研究中,“红色巨人”的水力传导率较高。但是,差异仅在冬季显着。可以假设,“红巨人”工厂通常更好的收获后水管理可能与更高的运输能力有关。此外,尽管“红巨人”玫瑰具有很高的呼吸频率,但它们可以实现较长的花瓶寿命。

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