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Optimum conditions for pure culture of major ectomycorrhizal fungi obtained from Pinus sylvestris var. mongolica plantations in southeastern Keerqin sandy lands, China 被引量:1
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作者 许美玲 朱教君 +2 位作者 康宏樟 许爱华 张金鑫 《Journal of Forestry Research》 CAS CSCD 2008年第2期113-118,共6页
The effects of medium, pH, water potential and temperature on the culture for three pure strains (Lactarius deliciosus, Boletus edulis and Lactarius insulsus) of ectomycorrhizal fungi from plantation forests of Mong... The effects of medium, pH, water potential and temperature on the culture for three pure strains (Lactarius deliciosus, Boletus edulis and Lactarius insulsus) of ectomycorrhizal fungi from plantation forests of Mongolian pine (Pinus sylvestris var. mongolica) on sandy lands were observed to obtain the optimum conditions for the growth of ectomycorrhizal fungi. The results indicated that the three ectomycorrhizal fungi could grow well in the mediums containing natural components, such as vitamin, pine juice and yeast powder, pH had a slight effect on the growth of the three ectomycorrhizal fungi, and the optimum pH values were 6.0 for L. deliciosus, 5.0 for B. edulis, respectively. However, L. insulsus had a wide pH range, and it grew better than the other two strains in neutral and light alkalescent mediums. Water potential (produced by Polyethylene Glycol, PEG) had significant effects on the ecological adaptability for the tested three fungi strains. All of the three stains grow better at lower PEG concentration (100 g PEG.kg^-1 H2O). The best water potential was 10% PEG concentration for all of the three stains. Temperatures, especially high temperatures induced the fungi death. The optimum temperature for the growth of ectomycorrhizal fungi was 25-28℃ for all of the three stains. 展开更多
关键词 mongolian pine (pinus sylvestris var. mongolica) ectomycorrhizal fungi MEDIUM PH water potential TEMPERATURE
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Natural regeneration characteristics of Pinus sylvestris var. mongolica forests on sandy land in Honghuaerji, China 被引量:22
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作者 ZHU Jiao-jun KANG Hong-zhang +2 位作者 TAN Hui XU Mei-ling WANG Jun 《Journal of Forestry Research》 SCIE CAS CSCD 2005年第4期253-259,共7页
Natural regeneration in Mongolian pine, Pinus sylvesttis var. mongolica, forest at Honghuaerji of China (the original of the natural Mongolian pine, forest on sandy land) was studied in 2004. The total mean values o... Natural regeneration in Mongolian pine, Pinus sylvesttis var. mongolica, forest at Honghuaerji of China (the original of the natural Mongolian pine, forest on sandy land) was studied in 2004. The total mean values of regeneration indexes were higher in mature stands (more than 80% individual stems were older than 50 years), the maximum of regeneration index reached 29 seedlings, m^ 2, with lowest values in the younger stand, e.g., in 32-year old and 43-year old stands. The stand age was an important factor determining the natural regeneration, which was the best in the older stands in this investigation (e.g. about 80-year old). The regeneration index seemed not to be closely in relation to canopy openness although Mongolian pine is a photophilic tree species. In each type of gaps, natural regeneration was very well. Regeneration indexes were satisfactory at the south and east edges in the circle gaps; and at the east edge of the narrow-square gaps. Results indicated that Mongolian pine, seedlings could endure shading understory, but it would not enter the canopy layer without gap or large disturbance, e.g., fire, wind/snow damage or clear cutting etc. These results may provide potentially references to the management and afforestation of Mongolian pine, plantations on sandy land in arid and semi-arid areas. Researches such as the comprehensive comparisons on regeneration, structure and ecological conditions and so on between natural Mongolian pine, forests and plantations should be conducted in the future. 展开更多
关键词 pinus sylvestris var. mongolica mongolian pine Sandy land Natural regeneration Canopy openness Forest gap Regeneration index
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Comparison of foliar nutrient concentrations between natural and artificial forests of Pinus sylvestris var. mongolica on sandy land, China 被引量:7
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作者 ZHU Jiao-jun TAN Hui +1 位作者 KANG Hong-zhang XU Mei-ling 《Journal of Forestry Research》 SCIE CAS CSCD 2006年第3期177-184,共8页
In order to examine the causes of degradation of Pinus sylvestris var. mongolica plantations on sandy land, the foliar concentrations of N, P, K and C were analyzed and compared between the field grown P. sylvestris v... In order to examine the causes of degradation of Pinus sylvestris var. mongolica plantations on sandy land, the foliar concentrations of N, P, K and C were analyzed and compared between the field grown P. sylvestris var. mongolica trees from two provenances (natural forests and plantations). The results indicated that natural tree needles had lower N, P and C concentrations, and higher K concentrations than those of plantation tree needles. For plantation tree needles, ratios of N: P, P. K and N: K increased with tree age before 45 years old; but they were not clear for the natural tree needles. Compared with the conclusions reported on Pinus spp., we found that the foliar N and P concentrations were in the optimal range for both natural and plantation tree needles. This result suggested that N or P might not be the absolute limit factors in plant nutrient for P sylvestris var. mongolica on sandy land. However, foliar K concentrations in both natural and plantation tree needles were much lower than those reported on Pinus spp. (〉4.80 g kg-1).The N: P ratio of natural needles was in the adequate ranges, but N: P ratio of plantation needles was out of the adequate ranges. These results indicated that there was a better balanced nutrition status in the natural forest than in the plantations. If only considering the foliar nutrient concentrations of P sylvestris var. mongolica from different provenances, it might be concluded that the degradation phenomenon of P. sylvestris var. mongolica plantations was not induced by nutrition deficiency of absolute nutrients of N and P, but might be induced by other mineral nutrients or by the effectiveness of N and P nutrients. The unbalanced nutrition status and relatively quick decomposition of needles in the plantations might also contribute to the degradation. 展开更多
关键词 Degradation phenomenon Forest ecosystem on sandy land N: P ratio Natural mongolian pine pinus sylvestris var. mongolica plantation mongolian pine
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不同水分胁迫方式对沙地樟子松幼苗光合特性的影响 被引量:44
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作者 朱教君 康宏樟 李智辉 《北京林业大学学报》 CAS CSCD 北大核心 2006年第2期57-63,共7页
沙地樟子松引种栽培的成功已使该树种成为中国北方沙区人工造林的首选树种,但由于早期引种的沙地樟子松人工林出现了衰退现象,使得人们对在干旱、半干旱沙地进行大面积樟子松造林产生疑问.为进一步研究沙地樟子松人工林衰退问题,该... 沙地樟子松引种栽培的成功已使该树种成为中国北方沙区人工造林的首选树种,但由于早期引种的沙地樟子松人工林出现了衰退现象,使得人们对在干旱、半干旱沙地进行大面积樟子松造林产生疑问.为进一步研究沙地樟子松人工林衰退问题,该文以2年生沙地樟子松幼苗为材料,采用盆栽控水和聚乙二醇(PEG)处理法对苗木进行水分胁迫试验,比较两种胁迫处理苗木的光合特性.结果表明,土壤水分胁迫与PEG模拟水分胁迫(处理1h)对2年生樟子松幼苗光合生理特征及其水分利用效率影响基本一致;当土壤含水量为40%田间持水量时,沙地樟子松已表现出干旱胁迫,土壤含水量为20%田间持水量时胁迫达到最大.10%PEG处理对2年生樟子松幼苗光合生理指标影响与对照具有相同趋势,表明该处理未对苗木造成严重干旱胁迫.20%与30%PEG处理对樟子松幼苗光合指标影响的趋势相同,胁迫超过2h后樟子松幼苗光合速率、气孔导度、蒸腾速率都降到较低值且相对稳定.土壤含水量为20%田间持水量的胁迫对樟子松幼苗的水分利用效率几乎没有影响,轻度(40%田间持水量)胁迫甚至增高了水分利用效率;PEG胁迫的前期(4h之前),苗木的水分利用效率低于对照;在胁迫处理4h后,20%与30%PEG处理的樟子松的水分利用效率均超过了对照.这表明樟子松在较低的土壤含水量下,具有忍耐、适应干旱胁迫的能力.另外,不同形式的强度胁迫处理(30%PEG和20%田间持水量)的各光合特征指标相对值之间没有差异,表明樟子松苗木在强度胁迫条件下各指标相对值已降至相当低的程度.3种PEG浓度(10%、20%、30%)干旱胁迫处理在2h以内的各指标的相对值与3种土壤水分胁迫处理(40%、30%、20%田间持水量)基本一致,因此,可以认为2h的PEG胁迫处理与土壤水分胁迫处理(7-10d)具有相同的效果. 展开更多
关键词 水分胁迫 沙地 樟子松 光合作用 聚乙二醇(PEG)
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樟子松人工林树冠结构模型及三维图形可视化模拟 被引量:17
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作者 刘兆刚 李凤日 《林业科学》 EI CAS CSCD 北大核心 2009年第6期54-61,共8页
以东北林业大学帽儿山实验林场樟子松人工林为研究对象,采用树干解析、枝解析的方法,分别于2002和2003年在老山施业区选择不同年龄、不同立地和不同密度的樟子松人工林有代表性的林分设置固定标准地15块(2002年设置7块,2003年设置8块),... 以东北林业大学帽儿山实验林场樟子松人工林为研究对象,采用树干解析、枝解析的方法,分别于2002和2003年在老山施业区选择不同年龄、不同立地和不同密度的樟子松人工林有代表性的林分设置固定标准地15块(2002年设置7块,2003年设置8块),共获取解析样木53株,实测2298个一级枝活枝条变量因子(包括总着枝深度、方位角、着枝角度、基径、枝长、弦长、弓高)数据资料。基于理论或经验生长方程,建立樟子松人工林树冠结构静态模型及树冠动态生长模型。采用VC++6.0语言为开发平台,结合OpenGL开放式图形库,将生长模型与形态结构模型结合,建立樟子松人工林树冠动态三维图形可视化模拟系统,实现基于实测数据和生长模型的静态、动态单木和林分的可视化模拟。 展开更多
关键词 樟子松人工林 树冠结构 静态模型 动态模型 可视化模拟
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基于形态结构特征参数的樟子松人工林单木可视化研究 被引量:8
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作者 董灵波 刘兆刚 《北京林业大学学报》 CAS CSCD 北大核心 2011年第5期20-27,共8页
为更加直观地展示樟子松人工林单木的整个生长过程,将系统分析方法和数学建模技术应用于樟子松人工林单木的形态模拟。通过对樟子松人工林单木形态数据的定量分析,结合前人的研究成果,构建了樟子松人工林单木形态模拟模型,并以VC++6.0... 为更加直观地展示樟子松人工林单木的整个生长过程,将系统分析方法和数学建模技术应用于樟子松人工林单木的形态模拟。通过对樟子松人工林单木形态数据的定量分析,结合前人的研究成果,构建了樟子松人工林单木形态模拟模型,并以VC++6.0为开发平台,利用OpenGL构建了樟子松人工林单木生长模拟系统,整个系统由形态模型模块、树冠结构模块、生长模型模块、可视化模块、场景控制模块、数据库和人机交互界面组成。系统运行结果表明:该系统实现了樟子松人工林单木生长机制与形态特征可视化表达的有机融合,展示了树冠结构模型、生长模型与可视化有机融合的思路;该系统不仅能很好地模拟樟子松人工林单木的形态特征,还能较逼真地实现樟子松人工林单木生长过程的模拟。樟子松人工林单木的可视化为人工林的可视化经营提供了基础,同时对于其他树种的可视化表达也有很好的借鉴意义。 展开更多
关键词 樟子松人工林 生长模型 树冠结构模型 形态模型 可视化
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