砧木扦插中碳水化合物含量。IAC 572

E. R. Souza, Fábio Laner Lenk, E. Ono, J. Rodrigues
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引用次数: 1

摘要

本研究旨在研究在不同基质(堆肥和商业基质Carolina)或未处理吲哚丁酸(2000 mg L-1)的情况下,葡萄藤砧木IAC 572扦插生根前后碳水化合物浓度的变化。处理方法为:T1 Carolina®商业基质(SCC);T2-有机化合物(CO);T3 SCC + co;T4 + IBA SCC 2000 mg L- 1;CO + IBA T5-至2000 mg L-1, T6- SCC + IBA + CO至2000 mg L-1。我们采用完全随机设计的试验设计,6个处理x 4个重复,每个地块用16个桩表示。在生产插枝后,保留植物材料样品用于总糖和还原糖的分析。然后将长10厘米的岩屑标准化,将两个卵黄和距离岩屑底部3英寸的岩屑浸入IBA 2000 mg L- 1溶液中15秒,处理4,5和6的桩。之后,他们在雾室中被保存了54天。在此之后,我们评估了生根率(ER)和出芽率(出芽率)、叶片数(NL)、株高(AP, cm)、根数(NR)、根干物质质量(MMSR, g)、芽(shoot DMM, g)和茎(MSC)、最长根平均长度(CMR, cm)以及根、茎和出芽中总糖和还原糖的含量。与IBA处理的插枝相关的有机基质促进了植物储备物质的显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carbohydrate content in vine cuttings of rootstock cv. IAC 572
This study aimed to study the variation in concentrations of carbohydrates before and after the formation of roots in cuttings and budding of grapevine rootstock ‘ IAC 572’ grown on different substrates (compost and commercial substrate Carolina ) or treated not indole butyiric acid (2000 mg L-1). The treatments were: T1 Carolina® commercial substrate (SCC); T2- organic compound (CO); T3 SCC + CO; T4 + IBA SCC 2000 mg L- 1; CO + IBA T5- to 2000 mg L-1 and T6- SCC + IBA + CO to 2000 mg L-1. We used an experimental design in a completely randomized design with 6 treatments x 4 replicates and each plot represented by 16 stakes. Upon production of cuttings samples of plant material were reserved for analysis of total and reducing sugars. Then the cuttings were standardized at 10 cm in length with two yolks and three inches from the base of the cuttings were immersed in a solution of IBA 2000 mg L- 1 for 15 seconds, the stakes of treatments 4, 5 and 6. They were later kept in a mist chamber for 54 days. After this period we evaluated the percentage of rooting (ER) and sprouting, number of leaves (NL), plant height (AP in cm), number of roots (NR), dry matter weight of root ( MMSR in g ), shoot ( shoot DMM g ) and stem ( MSC), the average length of the longest root ( CMR, in cm ) and the levels of total and reducing sugars in the root, stem and budding. The organic substrate associated with the treatment of cuttings with IBA promoted a significant increase in reserve substances from plants.
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