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Effect of shading and substrate on the germination and seedling growth of Acacia mangium and Acacia mearnsii

机译:遮荫和基质对马占相思和小金合欢种子萌发和幼苗生长的影响

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摘要

The speed and uniform germination of seeds, followed by the prompt seedling emergence, are highly desirable characteristics in seedling production. Studies aiming to enable the use of organic waste such as sewage sludge and pine bark in the supply chain represent a current demand. The aim of this study was to identify conditions of shading and substrate which are more favorable to the process of seed germination and seedling growth of Acacia mangium and Acacia mearnsii. After overcoming dormancy in hot water, the seeds were sown in three substrates: substrate plantmax commercial forest (control), pine bark and pine bark mixed with biosolids (1:1). The tubes were placed in a tree nursery under three shading conditions: 50%, 30% and 0% (full sun). The evaluated parameters were: speed and germination percentage (daily until 30 days) and shoot length of seedlings (weekly from 75 to 150 days). The experiment was a completely randomized design with treatments in a factorial 3 x 3 and the results were submitted to regression analysis. The highest germination was obtained in the sowing of Acacia mangium in pine bark at 30% shading and commercial substrate at 30 and 50% shading for Acacia mearnsii in pine bark under 50% shading or commercial substrate in full sun. For both species, seedlings grew faster and reached larger size in the final substrate of pine bark with biosolids and in any condition of shading (30 e 50 %) and full sun, anticipating the production of seedlings.
机译:种子的生长速度和均匀发芽,然后迅速出苗,是幼苗生产中非常理想的特性。旨在使有机废物(如污水污泥和松树皮)在供应链中得以使用的研究代表了当前的需求。本研究的目的是确定遮荫和基质条件,它们更有利于马占相思和小相思的种子萌发和幼苗生长。在热水中克服休眠后,将种子播种在三种基质中:基质maximum商品林(对照),松树皮和与生物固体混合的松树皮(1:1)。将试管置于三种遮荫条件下的苗圃中:50%,30%和0%(充满阳光)。评价的参数为:速度和发芽率(每天至30天)和幼苗的苗长(每周75至150天)。该实验是完全随机设计,采用因子3 x 3进行处理,并将结果提交回归分析。在30%遮光度下在松树皮中的马占相思和在30%和50%遮光度下在松树皮中的相思树在50%遮光度或商业基质下在充分的阳光下播种获得最高的发芽率。对于这两个物种,在具有生物固体的松树皮最终基质中,在任何遮荫(30%e 50%)和阳光充足的条件下,幼苗的生长速度都更快并达到更大的尺寸,从而预期幼苗的产量。

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