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首页> 外文期刊>Scientia horticulturae >Changes on carbohydrates and nitrogen content in the bark tissues induced by artificial chilling and its relationship with dormancy bud break in Prunus sp.
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Changes on carbohydrates and nitrogen content in the bark tissues induced by artificial chilling and its relationship with dormancy bud break in Prunus sp.

机译:人工冷诱导李皮树皮组织碳水化合物和氮含量的变化及其与休眠芽断裂的关系。

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摘要

Stem cuttings of peach, nectarine, plum and apricot, obtained from 1-year-old shoots at leaf drop in autumn, were exposed at a constant 3.0 +/- 0.1 degrees C to simulate different chilling accumulation treatments (0, 500, and 1000 chilling hours). A set of 10 excised shoots was forced to budbreak after chilling accumulation; a second set of 10 excised shoots was used to analyse sugars, starch, and ammonium-, nitric- and proteinaceous-nitrogen content in the bark tissues. Sorbitol, fructose and glucose were the main sugars in the bark tissues. whereas sucrose and rafinose showed the lowest quantities in all Prunus sp. studied. Sorbitol and starch concentration decreased whereas glucose and fructose concentration increased with chilling. Ammonium-nitrogen showed the more dramatic increase with medium chilling treatment, decreasing again at high chilling exposure. No modifications in proteinaceous- and nitric-nitrogen levels were observed due to chilling. Chilling treatments increasing flowering intensity showed high ammonium- and proteinaceous-nitrogen content in the bark tissues of the stem cuttings, whereas those reducing flowering intensity showed high starch and nitric-nitrogen content, in three of the four Primus sp. studied. Ammonium-nitrogen content gives the highest correlation with flowering intensity.
机译:在秋天的落叶时从一岁的嫩芽中获得的桃,油桃,李子和杏的茎切屑在恒定的3.0 +/- 0.1摄氏度下暴露,以模拟不同的冷藏积累处理(0、500和1000)寒冷的时间)。冷冻积累后,一组10个切下的嫩芽被迫芽芽。第二组10个切下的嫩芽用于分析树皮组织中糖,淀粉和铵态氮,硝酸态氮和蛋白质态氮的含量。山梨糖醇,果糖和葡萄糖是树皮组织中的主要糖。而在所有李属植物中,蔗糖和木脂糖含量最低。研究。山梨糖醇和淀粉浓度降低,而葡萄糖和果糖浓度升高。铵态氮在中等冷却条件下表现出更为显着的增加,在高低温条件下再次降低。由于冷,未观察到蛋白质和硝酸氮水平的变化。低温处理增加了开花强度,在四个Primus sp。中的三个中,茎插的树皮组织中的铵态氮和蛋白质态氮含量高,而降低开花强度的低温处理表现出高淀粉含量和氮态氮含量。研究。铵态氮含量与开花强度相关性最高。

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