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Genetic Gain and Projected Increase in Stand Volume from Two Cycles Breeding Program of Acacia mangium : Implications to Plantation Productivity and Sustainable Forestry in Indonesia

机译:遗传增益和血清苗期育种计划的常量增益和预计增加:印度尼西亚植物生产率和可持续林业的影响

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摘要

Two cycles breeding program of Acacia mangium was practiced by Center for Forest Biotechnology and Tree Improvement Research. Although improved seed from the breeding program have been used in operational plantation, the real amount of gains in productivity was not verified together yet. This study was aimed to observe realized genetic gain and projected increase in stand volume from the two cycles breeding of A. mangium, and to discuss the implications on plantation productivity and sustainable forestry in Indonesia. Improved seed from first and second-generation seed orchard were tested together with an unimproved seed in genetic gain trial in West Java, with spacing of 3 x 3 m. Measurements were done at three years ages for height, dbh, and stem volume. Realized genetic gain was calculated as the percentage increase of improved seed over the unimproved one. Results of study showed that improved seed performed better growth than the unimproved with realized gain of 5-24% (height), 3-44% (dbh) and 11-90% (stem volume). Improved seed from second-generation outperformed that from the first-generation, with an improvement of 6-16% (height), 3-26% (dbh) and 20-53% (stem volume). Genetic gains increased with increasing ages for height, but it tended to decrease for dbh and stem volume. At given site and silvicultural practices, projected increase in stand volume at 8 years rotation reached 290-325 m3/ha, which is equal to 30-50% of gains. The uses of high genetically improved seed, in combination with intensive silviculture, would provide significant impacts on plantation productivity and sustainable forestry in Indonesia.
机译:两个循环养殖马占相思的方案是由中心森林生物技术和树木改良研究实践。虽然从育种计划改良的种子已经在运作种植中使用,在提高生产率的实际数额还没有一起验证。本研究旨在观察意识到遗传增益和预计从两个循环养殖马占相思的蓄积量增加,并讨论在印尼种植园生产力和可持续林业的影响。从第一和第二代种子园改善种子用在西爪哇遗传增益试验未改良种子一起测试,以3×3米间距。测量在三个时代的高度,胸径年完成,茎体积。实现遗传增益计算为改良种子的在未经改进的一个增加的百分比。研究的结果表明,改良的种子进行比未改良有5-24%(高度),3-44%(DBH)和11-90%(茎体积)来实现增益更好的生长。从第二代改良种子优于从第一代,具有6-16%(高度),3-26%(DBH)和20-53%的改善(干体积)。遗传增益与高度的增加年龄增加,但它倾向于降低对胸径和树干体积。在给定地点和营林措施,预计8年增加蓄积量达到转动290-325立方米/公顷,等于收益的30-50%。高的使用基因改良的种子,在密集的造林相结合,将提供关于在印尼种植园生产力和可持续林业显著的影响。

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