热带森林树种种子萌发的热生物学方面

L. D. F. D. A. Melo, J. C. F. M. Junior, Larice Bruna Ferreira Soares, L. Chaves, J. C. A. Neto, V. M. Ferreira, Maria Inajal Rodrigues da Silva das Neves, E. P. Gonçalves, J. S. Viana, R. D. A. Paes, J. F. O. Costa, Wesley Oliveira de Assis
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引用次数: 0

摘要

本研究旨在评价温度对鼠李科(Colubrina glandulosa)、豆科(Chloroleucon dumosum)、豆科(Enterolobium concortisiliquum)、豆科含羞草(Mimosa bimucronata)和皂荚(sapinus saponaria)萌发的生态和应用影响。然后测定萌发、平均萌发时间、萌发均匀度和萌发活化能随温度的变化规律。该实验是在巴西亚拉戈州联邦大学阿拉戈斯分校工程与农业科学校区的植物繁殖实验室进行的。试验设计完全随机化,4个重复,每个处理25粒种子。数据进行方差分析,采用5%概率的Tukey检验比较均值。在生化需氧量(Biochemical oxygen Demand, B.O.D.)萌发室恒温培养5、10、15、20、25、30、35和40℃,20-30℃交替培养。C. glandlosa、C. dumosum、E. contortisiliquum和M. bimucronata种子在10ºC≤T≤35ºC萌发,S. saponaria种子在20ºC≤T≤35ºC萌发。结果表明,种子在最佳温度范围内相对频率呈单峰分布,在最短时间内集中萌发。在10ºC≤T≤30ºC范围内活化能为正,在35ºC温度下信号反转。所研究的物种具有较宽的耐温范围,其生长速度与耐温范围呈曲线关系。发芽过程主要是自耗的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal-biological aspects of germination of seeds in tropical forest tree species
The present study was carried out with the objective of evaluating the ecological and applied aspects of temperature in the germination of Colubrina glandulosa (Rhamnaceae), Chloroleucon dumosum (Fabaceae), Enterolobium contortisiliquum (Fabaceae), Mimosa bimucronata (Fabaceae) and Sapindus saponaria (Sapindaceae). Then we assessed germination, average germination time, germination uniformity and germination activation energy as a function of temperatures. The experiment was conducted at the Plant Propagation Laboratory, on the Engineering and Agricultural Sciences Campus, at the Federal University of Alagoas, Rio Largo, AL, Brazil. The experimental design was completely randomized with four replications of 25 seeds per treatment. The data were subjected to analysis of variance and the means were compared using the Tukey test at 5% probability. The isothermal incubation was performed in Biochemical Oxigen Demand (B.O.D.) germination chamber, at constant temperatures of 5, 10, 15, 20, 25, 30, 35 and 40 ºC and alternating at 20-30 ºC. The seeds of C. glandulosa, C. dumosum, E. contortisiliquum and M. bimucronata germinated in the range of 10 ºC ≤ T ≤ 35 ºC, and S. saponaria germinated in the range of 20 ºC ≤ T ≤ 35 ºC. We found that seeds in the optimal temperature range has unimodal distribution of relative frequency, concentrating germination in the shortest time. The activation energy was positive in the range of 10 ºC ≤ T ≤ 30 ºC, with an inversion of the signal at a temperature of 35 ºC. The studied species had a wide range of temperature tolerance and the speed was curvilinearly dependent on them. The germination process is predominantly endergonic
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