树番茄(Solanum betaceum Cav.)和露瓜(Solanum quitoense Lam.)种子的休眠和萌发

A. Torres-González
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引用次数: 3

摘要

树番茄(Solanum betaceum Cav.)和露罗(Solanum quitoense Lam.)水果在哥伦比亚享有很高的消费和商业化。据报道,这两种植物都有种子休眠,它们的繁殖依赖于种子。这些物种的最佳发芽条件尚不清楚。因此,种子发芽的温度制度是基于作物生长地点的平均、最低和最高温度。两种作物的萌发试验在培养皿上进行了4个重复,每个重复50粒种子。对6种温度条件和4种预处理进行了评价,以打破种子的休眠状态。甜菜和甜菜种子休眠较浅,商品化品种(如甜菜)休眠较少。Tamarillo和S. quitoense(即普通的lulo)。对于这两个物种,最近收获的种子比在低含水量(4%)和低储存温度(20°C)下储存数月的种子萌发能力更强。施用GA3 (2000 mg L-1)或交变温度(25/15°C)均可成功打破甜菜和藜麦种子的休眠。然而,两种处理同时没有提供额外的好处,以促进种子发芽。硝态钾(1%)在恒温和交变温度下均能促进甜菜葡萄种子的萌发,而只有在交变温度下才能促进甜菜葡萄种子的萌发。在所有温度下,施用GA3均比施用KNO3提高了两种植物的发芽率。使用这些处理中的任何一种都可以很好地打破betaceum和quitoense的种子休眠,并且可以根据预算和其他资源选择最方便的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seed dormancy and germination in tree tomato (Solanum betaceum Cav.) and lulo (Solanum quitoense Lam.)
Tree tomato (Solanum betaceum Cav.) and lulo (Solanum quitoense Lam.) fruits enjoy high consumption and commercialization in Colombia. Seed dormancy has been reported for both species, and their propagation depends on seeds. The optimal germination conditions for these species are not well known. Thus, the temperature regimes for the seed germination were based on the mean, minimum and maximum temperatures of the locations where the crops were grown. Germination tests were carried out in four replicates of 50 seeds each on Petri dishes for both crops. Six temperature conditions and four pre-treatments were evaluated to break the seed dormancy for several seed lots. S. betaceum and S. quitoese exhibited shallow seed dormancy, and less dormancy was detected in the commercialized cultivars, such as S. betaceum cv. Tamarillo and S. quitoense (i.e. common lulo). For both species, the most recently harvested seeds had more germination capacity than the seeds stored for several months at a low seed moisture content (4%) and low storage temperature (20°C). The seed dormancy of S. betaceum and S. quitoense was broken successfully by applying GA3 (2,000 mg L-1) or alternating temperatures (e.g. 25/15°C). However, both treatments at the same time did not provide an additional benefit to promote seed germination. Potassium nitrate (1%) promoted seed germination in the S. betaceum seeds at both constant and alternating temperatures and in the S. quitoense seeds, only when alternating temperatures were applied. The application of GA3 increased the rate of germination more than KNO3 for both species at all temperatures. Using any of these treatments would work well to break seed dormancy in S. betaceum and S. quitoense, and the most convenient option could be selected depending upon budget and other resources.
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