Libidibia ferrea种子电导率试验的充分性。例图)。L. P. Queiroz . ferrea .按不同质量分类

P. C. Souto, J. C. A. Neto, V. M. Ferreira, E. P. Gonçalves, Cristian Bernardo da Silva, Karolyne Priscila Oliveira dos Santos, J. C. F. M. Junior, Lucas Teles Bezerra
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摘要

本研究旨在采用电导率试验的方法来检测不同质量铁立比亚种子的活力差异。根据种子的个体质量进行分类:小种子≤0.14 g,中种子0.15≤x≤0.19,大种子≥0.20 g。随后,测定种子形态(1000粒种子的长度、宽度、厚度、含水量和重量)和种子的初始生理势(萌发、首次计数、平均时间、平均速度、发芽率系数、萌发出苗率指数、出苗率、苗长、干质量)。电导率采用3 × 12的阶乘方案,采用3种种子质量和12个浸泡时间(2、4、6、8、10、12、14、16、18、20、22和24 h),体积分别为50和75 mL水,分别为25和50种种子。种子的物理和生理指标与电导率试验高度相关。铁酸盐种子质量与其生理电位有直接关系,质量≥0.20 g的种子为高活力种子;种子质量0.15≤x≤0.19,活力中等;种子质量≤0.14 g,活力低。电导率试验可有效评价不同质量的铁酸盐种子在50 mL蒸馏水中浸泡4 h后的生理电位
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Adequacy of the electrical conductivity test on Libidibia ferrea seeds (Mart. Ex Tul.) L. P. Queiroz var. ferrea classified with different masses
This study aimed to adapt the methodology of the electrical conductivity test to detect differences in vigor between seeds of Libidibia ferrea of different masses. The seeds were classified according to their individual mass: small seeds ≤ 0.14 g, medium seeds 0.15 ≤ x ≤ 0.19, large seeds ≥ 0.20 g. Subsequently, seed morphology (length, width, thickness, water content, and weight of 1000 seeds), and the initial physiological potential of the seeds (germination, first count, average time, average speed, germination rate coefficient, germination and emergence rate index, emergence percentage, seedling length, and dry mass) were determined. The electrical conductivity was conducted in a 3 × 12 factorial scheme with three seed masses and 12 immersion periods (2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, and 24 h), in volumes of 50 and 75 mL of water, with 25 and 50 seeds, respectively. The physical and physiological variables of the seeds were highly correlated with the electrical conductivity test. The seed mass of L. ferrea has a direct relationship with its physiological potential, with the seeds of mass ≥ 0.20 g classified with high vigor; the seeds of mass 0.15 ≤ x ≤ 0.19 with intermediate vigor; and the seeds of mass ≤ 0.14 g with low vigor. The electrical conductivity test is efficient in the evaluation of the physiological potential of L. ferrea seeds of different masses when conducted with 25 seeds soaked in 50 mL of distilled water for 4 h
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