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野大豆     
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  wild soybean
     In order to determine an appropriate sampling strategy for the effective conservation of wild soybean (Glycine soja Sieb. et Zucc.)
     为了有效地保护野大豆(Glycine soja Sieb.et Zucc.)
短句来源
     Studies on the Cultivated Characteristics of Wild Soybean
     野大豆栽培特性的研究
短句来源
     A higher level of salt tolerance in saline populations of wild soybean ( Glycine soja Sieb. et Zucc.)
     黄河三角洲野大豆(Glycine soja Sieb. et Zucc.) 盐渍群体的耐盐性高于附近的正常群体。
短句来源
     Wild soybean seedlings were treated with 0, 50, 100 and 200 mmol/L NaCl , then the Na+ , Cl- and K+ content of shoots and roots were measured and compared.
     用不同浓度的NaCl溶液处理野大豆幼苗后,测定并比较根及地上部的Na+、Cl-、K+含量.
短句来源
     Sampling Strategy Within a Wild Soybean Population Based on Its Genetic Variation Detected by ISSR Markers
     利用ISSR标记研究野大豆居群内遗传变异及其取样策略(英文)
短句来源
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  glycine soja
     Li, Glycine soja Sieb.
     Li,野大豆Glycine soja Sieb.
短句来源
     The seeds and seedlings of two Glycine soja populations(BB52,the salt-tolerant;N23232,the salt-sensitive)were treated with iso-osmotic(-0.53 MPa) PEG-6000,NaCl,Na~+-salt and Cl~——salt solution.
     用等渗(-0.53 MPa)PEG-6000、NaC l、Na+-盐和C l--盐溶液分别处理野大豆种群BB52(耐盐性较强)和N23232(耐盐性较弱)的种子和幼苗。
短句来源
     Random amplified polymorphic DNA (RAPD) analysis was applied to eight populations of wild soybeans (Glycine soja ) from five different latitudes and five populations within Jinhua, Zhejiang Province respectively.
     为了阐明不同尺度范围内野大豆种群的遗传分化情况 ,应用随机扩增多态性 DNA( RAPD)方法 ,分别对我国 5个纬度 8个不同地点的野大豆 ( Glycine soja)种群及浙江金华地区 5个野大豆种群 ,进行了分子生态学研究。
短句来源
     In order to determine an appropriate sampling strategy for the effective conservation of wild soybean (Glycine soja Sieb. et Zucc.)
     为了有效地保护野大豆(Glycine soja Sieb.et Zucc.)
短句来源
     A higher level of salt tolerance in saline populations of wild soybean ( Glycine soja Sieb. et Zucc.)
     黄河三角洲野大豆(Glycine soja Sieb. et Zucc.) 盐渍群体的耐盐性高于附近的正常群体。
短句来源
更多       
  wild soyabean
     Experiment on Treating Hard Seeds of Wild Soyabean( Glycine soja Sieb. et Zucc.)in Yellow River Delta Area
     黄河三角洲野大豆硬实种子处理试验
短句来源
     In general,the hard seed rate of the wild soyabean is higher than 96%,needing to be treated for use.
     黄河三角洲野大豆(GlycinesojaSieb.etZuce.)种子硬实率高达96%,需进行种子处理。
短句来源
  “野大豆”译为未确定词的双语例句
     Pretreated with 2.0mg/L 6-BA and 2.0mg/L 2,4-D,roots,shoots and plantlets have been obtained from the calli of ecopotyl,cotyledon and cotyledonary node oxplant of Glycin soja on MS modium upple- mentod with 1.0-5.0mg/L 6-BA and 0.5-1.0mg/L IAA.
     在种子萌发过程中,经6-BA(2.0mg/L)和2,4-D(20.mg/L)预处理,野大豆(GlyCine Soja)的上胚轴、子叶和子叶节外植物的愈伤组织在含6-BA(1.0~5.0mg/L)和 IAA(0.5~1.0mg/L)的 MS 培养基上分化出根和苗,获得再生植株。
短句来源
     Cluster analysis based on genetic distance generated from the RAPD data showed that there were high genetic variations among G. soja populations from different latitude and within Jinhua area.
     根据 RAPD数据计算相似系数及遗传距离并进行聚类分析 ,发现无论是不同纬度野大豆种群还是金华地区野大豆小种群均存在较高的遗传变异 ,且不同纬度野大豆种群间的遗传变异与地理纬度有一定正相关。
短句来源
     Q cluster analysis and graph theory analysis shows these is great diversity among wild soybeans,semi wild soybeans and cultivated soybeans.
     Q 分析及图论分析揭示野大豆、半野生大豆与栽培大豆之间存在较大差异.
短句来源
     In treatment,the seeds were soaked in concentrated sulfuric acid and stirred for 3,6,9,12 and 0(control treatment) minutes,then put on filter paper and sands.
     试验用98%浓硫酸浸泡加搅拌处理野大豆种子,设3,6,9,12 min及对照5个水平,并分别以滤纸和沙作为培养床进行发芽试验。
短句来源
     in China, a natural population from Jiangwan Airport in Shanghai was studied for its genetic diversity through the inter-simple sequence repeat (ISSR) marker analysis of a sample set consisting of 100 randomly collected individuals.
     并制定合理的居群取样策略,对上海江湾机场的一个天然野大豆居群进行了100个单株(个体)的随机取样,并用ISSR分子标记对其进行了遗传多样性分析。
短句来源
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  wild soybean
Sampling strategy for wild soybean (Glycine soja) populations based on their genetic diversity and fine-scale spatial genetic st
      
A total of 892 individuals sampled from a wild soybean population in a natural reserve near the Yellow River estuary located in Kenli of Shandong Province (China) were investigated.
      
Spatial autocorrelation analysis revealed that the genetic patch size of this wild soybean population is about 18 m.
      
The study provided a scientific basis for the sampling strategy of wild soybean populations.
      
Genetic Variation of Wild Soybean Glycine soja Sieb.
      
更多          
  glycine soja
Sampling strategy for wild soybean (Glycine soja) populations based on their genetic diversity and fine-scale spatial genetic st
      
Genetic Variation of Wild Soybean Glycine soja Sieb.
      
Most of these communities were in the lower succession stage, however, community Phragmites communis+Glycine soja and community Imperata cylindrica+G.soja were close to the succession stage of grassland climax.
      
Screening of Glycine max and Glycine soja genotypes for multiple shoot formation at the cotyledonary node
      
The soybean, Glycine max and its wild progenitor, Glycine soja, have been surveyed for repeat length variation for the nuclearly encoded 5S ribosomal RNA genes.
      
更多          
  wild groundnut
In vitro plant regeneration from seed explants of wild groundnut species (Genus Arachis, Section Extranervosae)
      
In vitro regeneration of wild groundnut species from Section Extranervosae (Arachis villosulicarpa, A.
      
The culture of nodal segments in the presence of 2.7 μM NAA as the sole growth regulator is recommended for the multiplication of in vitro collections of wild groundnut species in order to avoid callusing and adventitious shoot formation.
      
Variation in a wild groundnut species, Arachis duranensis Krapov.
      
Developmental inhibition ofSpodoptera litura (Fab.) larvae by a novel caffeoylquinic acid from the wild groundnut,Arachis paragu
      
  其他


This paper deals mainly with the results of observation.investigation and identification on the specimens and theirresearch deta of some wild species of Genus Glycine from Li-aoning Province. The specimens mentioned above had extensi-vely been collected and cultured by Tieling Institute of Agri-cultural Research in recent years. New yarieties of wild soybean, i. e. "Glycine soja Sieb. et Zucc. var. albiflora P. Y. Fuet Y. A. Chen" and its new variant form "G. soja Sieb. etZucc. var. albiflora P. Y. Fu et Y....

This paper deals mainly with the results of observation.investigation and identification on the specimens and theirresearch deta of some wild species of Genus Glycine from Li-aoning Province. The specimens mentioned above had extensi-vely been collected and cultured by Tieling Institute of Agri-cultural Research in recent years. New yarieties of wild soybean, i. e. "Glycine soja Sieb. et Zucc. var. albiflora P. Y. Fuet Y. A. Chen" and its new variant form "G. soja Sieb. etZucc. var. albiflora P. Y. Fu et Y. A. Chen f. angustifoliaP. Y. Fu et Y. A. Chen", which have a certain position innature and are more stable in cultural experiments, are publi-shed. The new Chinese name of "G. gracilis Skv. var. nigraSkv." is proposed and the meaning of its correct name--theextent of its characterization is revised.In the present paper, the legitimate and correct name, sy-nonym, its brief description, habitat and distribution of eachtaxon are recorded in order to identify conveniently. At thesame time, a key to t ication of wild species of Genuslycine from Liaoning Province is provided for application.,However, a further study of the problems on the classificationof variant forms of their seeds is considered to be needed.

本文主要叙述了对铁岭农科所几年来广泛调查采集和栽培的辽宁野生的大豆属植物的情况和标本等进行观察和研究鉴定的结果。发表了在自然界占有一定位置、栽培试验比较稳定的野大豆的新的变种“白花野大豆”Glycine soja Sieb.et Zucc.var.albiflora P.Y.Fu et Y.A.Chen“和新变型“狭叶白花野大豆”Glycine soja Sieb.et Zucc.var.albiflora P.Y.Fu et Y.A.Chen f.angustifolia P.Y.Fu.etY.A.Chen。提出“白花宽叶蔓豆”的新中名,并对其拉丁学名正确名称的含义——特征范围作出修正。为了便于鉴别,记述了每个种型的拉丁学名、有关异名、简要特征及生境、产地和分布,同时提出了辽宁省野生大豆属植物分类检索表以利应用。对于其种子的变异类型的分类问题认为是需要另行研究解决的。

A new group of soybean rhizobia-extra-slow-growing soybean rhiz-obia was obtainted from wild soybean(Glycine soja) nodules in Liaoning province. It nodulated cultivated soybean excellently and could form effective association with mung been(Phaseclus aureus), but not nodulated on pea(Pisum sp), miknetch(letus sp), sweetclover (Melilotus sp.)and astraglus (A. sinicus). The new group did not belong to 135 serogroup. Its ability of alkaline production was especially strong, after cultivation 5 days. PH reched 7.72-8.09....

A new group of soybean rhizobia-extra-slow-growing soybean rhiz-obia was obtainted from wild soybean(Glycine soja) nodules in Liaoning province. It nodulated cultivated soybean excellently and could form effective association with mung been(Phaseclus aureus), but not nodulated on pea(Pisum sp), miknetch(letus sp), sweetclover (Melilotus sp.)and astraglus (A. sinicus). The new group did not belong to 135 serogroup. Its ability of alkaline production was especially strong, after cultivation 5 days. PH reched 7.72-8.09. They have an extra-long generation time, for example strain 2064 has a doubling time of approximately 25.9h.

1982年从辽宁省铁岭地区的野大豆根瘤中分离得到一个大豆根瘤菌新类群—超慢型大豆根瘤菌。此类群在栽培大豆上结瘤良好,但在豌豆、百脉根、紫云英、草木樨上不结瘤;在绿豆上能结瘤,不属135血清型。突出的特点是产碱能力强,培养5天后pH达到7.72—8.05,代时超长,被测定的2064菌株代时为25.9小时。

We had systematically studied the absorption, excitation, emission and Gaus-sian deconvolution spectra of soybean chloroplast at different temperatures. Thereare three main bands in low temperature emission spectrum of chloroplast, i.e.,at 685 nm (referred to as F_(685)), 695 nm (F_(695)) and 735 nm (F_(735)), respectively.They were considered generally to be derived from different pigment-protein com-plexes.We investigated the excitation energy transfer between antenna pigments inchoroplast excited by laser...

We had systematically studied the absorption, excitation, emission and Gaus-sian deconvolution spectra of soybean chloroplast at different temperatures. Thereare three main bands in low temperature emission spectrum of chloroplast, i.e.,at 685 nm (referred to as F_(685)), 695 nm (F_(695)) and 735 nm (F_(735)), respectively.They were considered generally to be derived from different pigment-protein com-plexes.We investigated the excitation energy transfer between antenna pigments inchoroplast excited by laser pulses with wavelength of 337. 1 nm and duration of4 nm. The flurescence yield in chloroplast is a function of single laser pulse intensity.The relative flurescence yield of F_(685) decreases with an increase of energydensity from 10~(12) photon cm~(-2) to 10~(15) photon cm~(-2). It is consistent withsinglet-singlet exciton annihilation processes: The diffusion coefficient is D-9.6×10~(-3)cm~2 s~(-1), the diffusion length is L-5. 79×10~2 A and transfer probability is W-2.4×10~(11) s~(-1), which is consistent with singlet-singlet exciton annihilation processes.

野大豆叶绿体在低温(77K)时出现三条荧光发射谱带,它们来源于不同的色素蛋白复合体。 在纳秒脉冲激光激发下,捕光天线色素的相对荧光量子产额,随激光强度的增加有明显下降现象。用激子理论和动力学方程讨论和计算了激子扩散参量。指出激子转移是随机的,非相干的。

 
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