红锥
- 网络castanopsis hystrix;C. hystrix;Castanopsis hystrix A.DC.
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ABA对红锥、苦槠种子发育和萌发的效应研究
Study ABA sensitivity of seeds during development of Castanopsis hystrix and Castanopsis sclerophylla
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红锥木材性质与UF胶固化时间关系的研究
Studies on the Relationship between Castanopsis hystrix Wood Properties and Curing Time of UF
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优良红锥种质资源遗传多样性的ISSR分析与聚类
Genetic diversity of Castanopsis hystrix germplasm resources by ISSR and cluster analysis
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试验研究表明,合理施肥能促进红锥人工幼林的生长,施肥量水平不同,其促生效果也不同,N、P、K肥对红锥人工幼林的生长具有同等重要的特性。
The results of experiment showed that rational amount of applied fertilizer could accelerate the growth of castanopsis hystrix young plantation , the effect of acceleration is different in accordance with the level of fertilization , N ? P ?
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红锥不同模式造林效果分析
Analyses of the Planting Effects of Different Patterns of Castanopsis hystrix
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红锥混交林生长情况调查分析
Survey and Analysis on Growth of Mixed Plantation of Castanopsis hystrix
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红锥种群结构和空间分布格局的研究
A study on structure and spatial distribution pattern of Castanopsis hystrix population
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红锥中心分布区种源早期生长研究
Study on Early Growth of Castanopsis hystrix Provenances from Its Central Distribution
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炉气窑干燥红锥锯材干燥技术探索
Trials of Castanopsis Hystrix Timber Drying in Furnace Gas Kiln
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红锥切根育苗试验研究
A Test Study on Growing Seedlings for Castanopsis hystrix by Cutting Roots
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红锥嫁接技术试验
A Trial on Grafting Technology of Castanopsis hystrix
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人工林红锥木材干燥特性初探
Drying Characteristics of Plantation Grown Castanopsis hystrix
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红锥等8个阔叶树种抗旱生理指标比较及光合作用特征
A Study on the Photosynthetic Characters and Physiological Indexes of Drought Resistance for Eight Broad Leaved Tree Species
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在对红锥遗传改良工作的过程中,优良个体、优良群体和优良种源选择都不容忽视。
In genetic improvement of Castanopsis hystrix , good individual , fine group and fine provenance selection are too important to ignore .
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红锥天然分布区表型变异研究另一方面,在T2代再生植株中发现大量表型变异(不育变异和农艺性状变异)并分析了转基因分离株系与对照自交系7个农艺性状的差异。
Study on Phenotype Variation of Castanopsis hystrix at Natural Distribution On the other hand , we obtained a great deal of phenotype variation from the T_2 generation plants .
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所以红锥的遗传改良应主要集中在群体内个体的改良上,同时也要考虑群体间优良群体的选择,通过群体选择和优树选择相互配合,从而取得最大的遗传增益。
So the genetic improvement of Castanopsis hystrix should be mainly focus on the individuals , also pay attention to the group selection . Combine the group selection and good individuals , which made the most of the genetic gain .
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10个不同生态型红锥之间的遗传相似系数介于0.5946~0.7148之间,但不同地区红锥也存在着一定的遗传差异(遗传差异在0.2852~0.4054);
Genetic similarity index of ten C. hystrix from different ecological areas ranged from 0.594 6 to 0.714 8 , and their genetic distance ranged from 0.285 2 to 0.405 4.Among the ten C. hystrix , there are obvious genetic diversity .
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结果表明:切根能使红锥苗木主根变短,侧根部位提高,根系发达,苗木地径和苗高明显增加,生长旺盛。
The results showed that cutting roots could shorten main root of nursery stock , raise the position of roots on the side and make root system developed so that nursery stocks had vigorous growth in form that diameter and height increased significantly .
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细胞内记录的结果也进一步地发现,红敏视锥通路和绿敏视锥通路上的AMPA受体表达可能不同。
Intracellular recording results also suggested that the subtype of AMPA receptor maybe expressed differently between red-cone pathway and green-cone pathway .
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模型包括两个并行的信号通道,即红敏视锥和绿敏视锥信号通道,神经元之间的突触连接强度在模型中表示为相应通道的放大系数;
The model consists of two parallel signal pathways , which are the red - and green-cone signal pathways respectively . The strength of synapses between the relevant neurons of each signal pathway is represented by its gain term ;