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Experiments on temperature-accelerated germination, seeding quantity, and optimum density of seedling were made forKalopanax septemlobus. The experimental results indicated that the seeds ofkalopananx septemlobus had physiological dormancy because of unmature embryo and existence of inhibitory matter in the seed. Temperature-accelerated
germination was a preferable and essential way to assure the germination. Seed dormancy could be overcome through accelerating
germination. Firstly, warm treatment should be done, morphological maturity occurred, then, followed by lower temperature
treatment, reaching physiological maturity. Seeding quantity, optimum density and the relations between density of seedlings
and yield were studied.
Responsible Editor: Chai Ruihai 相似文献
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以长白山刺楸人工林选择的刺楸优良个体休眠枝条为试验材料,进行刺楸组培快繁各个阶段最适培养基的筛选。结果表明,刺楸组织培养的最适外置体为叶柄;愈伤组织诱导的最适培养基为WPM+2,4-D0.50 mg/L+NAA0.1 mg/L,诱导率96%;愈伤组织诱导再分化最适培养基为WPM+KT2.0 mg/L+6-BA0.50 mg/L+NAA 0.1 mg/L,分化率达82%;不定芽继代培养最适培养基为WPM+KT1.0 mg/L+6-BA0.50 mg/L+NAA 0.1 mg/L,增殖系数为3.69;不定芽生根培养最适培养基为WPM+NAA 0.5 mg/L,生根率达到85%。 相似文献
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通过对刺楸进行打破休眠和变温催芽试验,研究了刺楸种子深度休眠的机理和催芽方法,结果表明:引起深度休眠的主要原因是种胚发育不完全,尚需一定的时间和温度条件才能完成种胚的发育,种子采收后须立即用湿河沙堆藏,层积处理的天数不少于120d。 相似文献
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刺楸木材应拉木解剖特性的变异规律研究(英文) 总被引:3,自引:0,他引:3
以安徽琅琊山天然林内的三株树干具有10°倾斜角的刺楸应拉木为材料,分应拉区( 简称 T区) ,对应区( 简称 O 区) 和侧区( 简称 S 区) 来研究其应拉木纤维长度、微纤丝角和组织比量的径向变异和轴向变异规律.结果表明:刺楸应拉木三区纤维长度的径向变异为“先递增,后保持平稳”模式,微纤丝角度的径向变异模式为“先递减,后保持平稳”模式,但三区由递增或递减向平稳过渡的年限不同, S, O 区都为17 年左右, T 区为22 年左右;三区组织比量的径向变异和解剖特性的轴向变异模式都不尽相同. 相似文献
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通过对红松、刺楸人工混交林,红松纯林物种多样性的研究,结果表明,红松、刺楸混交林物种丰富度最大,植物种类最多,红松纯林仅为混交林的43%,总数量为混交林的32%,红松、刺楸混交林乔木层多样性指数为1.430 5,均匀度指数为0.687 9,优势度指数为0.290 6,丰富度指数为1.413 7,而红松纯林多样性指数、均匀度指数均为0,优势度指数为1,丰富度指数为0.371 2。在灌木层中,混交林与纯林各项指标区别不大,只有丰富度指数为混交林(纯林。在草本层中,混交林各项指数基本都大于纯林,只有均匀度指数红松纯林(混交林。 相似文献
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通过不同试验材料、GA3应用和变温层积催芽对比试验,对刺楸种子解除休眠进行研究的结果表明:鲜种+GA3+(15℃,30 d;冷冻,90 d;-4~0℃,90 d)处理方法发芽率达到90.2%,出苗率达到81.5%;气干种温水(72 h)+GA3+(13~18℃,90 d;0~4℃,90 d)处理方法发芽率达到76.3%,出苗率达到66.4%。采用鲜种进行变温催芽处理对刺楸种子发芽率、出苗率和1年生苗木质量提高具有显著作用(p<0.01和p<0.05)。研究表明,刺楸种子属于形态-生理休眠类型,采用鲜种+GA3+变温层积催芽的综合处理方法能有效解除刺楸种子休眠。 相似文献
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Effects of stratification, desiccation, radicle pruning, and season of sowing on Quercus vulcanica germination and growth were studied to identify optimum nursery procedures for artificial regeneration of this species. Following stratification (0, 2, 4 and 8 weeks), acorns were germinated, and acorn moisture content and germination performance were also determined at various times during desiccation. In early December unsprouted acorns were planted in containers, and in early April sprouted acorns, which had been stored in polyethylene bags at 4 °C, with radicles left intact or with radicles pruned back to 1.0 cm were planted in containers.Stratification for 2 and 4 weeks did not increase germination percentage but significantly increased germination rate. Germination percentage of the seeds dropped when the moisture content of the seeds was reduced by desiccation, and the critical minimum moisture content of the recalcitrant Q. vulcanica acorns was found to be 11–16%. Spring sowing of sprouted acorns altered the morphology the containerized seedlings and caused the formation of significantly more main roots, but resulted in significantly less shoot height and shoot dry weight. Spring-sown sprouted acorns had also a significant advantage over the fall-sown unsprouted acorns in seedling survival, and thus nursery personnel should not be concerned if acorns sprout before sowing. 相似文献
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不同温度对高羊茅种子发芽的影响 总被引:4,自引:0,他引:4
高羊茅种子在不同温度下的发芽实验结果表明:高羊茅最适宜播种的温度为20—25℃,温度高至30℃,发芽率显著下降,不宜播种;温度低至10℃,平均发芽速度显著减小,发芽率有所下降。 相似文献
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采用滤纸培养皿法研究了南方红豆杉叶浸提液对小麦种子萌发与幼苗生长的影响。研究结果发现,红豆杉叶浸提液对小麦种子的萌发和幼苗生长存在不同程度的抑制作用。低浓度的南方红豆杉浸提液促进小麦种子的萌发,高浓度浸提液抑制小麦种子的萌发。当浸提液浓度为6g/mL时,小麦种子的萌发率达到最高。南方红豆杉叶浸提液对小麦幼苗根系生长产生显著抑制作用。随着浸提液浓度的升高,小麦须根的长度逐渐下降,但不定根的数目逐渐增加。当浸提液的浓度为10g/mL时,根长抑制率达到42.48%。方差分析结果表明,南方红豆杉叶浸提液对小麦的根生长产生显著的抑制作用。对小麦幼苗的茎生长、根的生物量和茎的生物量均表现为低浓度的浸提液促进茎的生长和生物量的增加,高浓度浸提液则抑制茎的生长和生物量增加。研究结果表明,南方红豆杉浸提液表现低浓度时促进种子的萌发、须根数目的增加、茎的生物及生物量的增加,高浓度时则产生一定的抑制作用,而对根长的生长表现为显著的抑制作用。 相似文献
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仙客来种子在15℃、黑暗条件下处理6天后播种能显著提高发芽率,处理9天后播种其幼苗素质明显增强。去掉胚根端一部分胚乳的种子在20℃恒温培养箱中其从播种到萌发的时间比正常播种的种子明显缩短。 相似文献
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分别用30、60、75和95℃的热水及用浓硫酸处理山皂荚种子的结果表明,30℃热水处理2min与5min的种子差异不显著,处理10min的种子与前两组差异显著。60℃热水处理的3组时间间的差异显著,75℃的热水处理的3组时间间的差异显著,95℃处理2min与5min的种子差异显著,处理2min与10min的种子差异显著,处理5rnin与10min的种子差异不显著。用75℃热水处理种子10min对山皂荚的种子萌发最为有利,浓硫酸处理60rain的山皂荚种子较热水处理山皂荚种子吸水性能大。 相似文献