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1)  Polysacchride of fungal cell wall
真菌细胞壁多糖
2)  cell wall polysaccharides
细菌胞壁多糖
1.
The optimization of the embedding conditions of the beads immobilized cell wall polysaccharides for the adsorption of plumbum and cadmium;
吸附铅、镉固定化细菌胞壁多糖小球包埋条件的优化选择
3)  fungi cell wall
真菌细胞壁
1.
The process of the new method is that the upper or lower cortex and thaus of lichens are broken by Liquid Nitrogen,then fungi cell walls are destroyed by Benzyl Chloride(Phch 2Cl) under weak base condition,so the total DNA of lichen fungus is gained.
利用液氮破碎地衣体的上下表皮层及藻层,再用氯化苄在弱碱条件下破坏真菌细胞壁,从而获得地衣真菌总DNA。
4)  cell wall polysaccharides
细胞壁多糖
1.
The cell wall material (CWM) and eight cell wall polysaccharides fractions were extracted from ‘Fuji’ and ‘Kinsei’ apples during storage at different time (0 and 42 days).
以2种苹果为试材,提取了不同贮藏时期果实的细胞壁物质和8种细胞壁多糖组分,并采用气相色谱法分析了细胞壁多糖组分的单糖组成。
2.
The changes in cell wall polysaccharides, phenols and lignin content of green asparagus (Asparagus Officinalis L.
以绿芦笋栽培品种Mary Washington500为试验材料,采用HPLC分析方法,研究了常温贮藏条件下,绿芦笋细胞壁多糖、酚类物质和木质素含量的变化。
3.
The objective of the present study is therefore to investigate the differences in cell wall polysaccharides between border cells and root apices of pea (Pisum sativum) under A1 exposure.
【目的】明确根边缘细胞与根对铝敏感性差异及其与细胞壁多糖组分含量的关系。
5)  cell wall polysaccharide
细胞壁多糖
1.
The degradation specificity of four βgalactosidase isozymes to arabinogalactan and the cell wall polysaccharides such as Na2CO31, KOH3 and cellulose rich fractions was investigated.
以苹果为试验材料,提取细胞壁结合型β-半乳糖苷酶,并通过羟磷灰石柱色谱法分离出4种β-半乳糖苷酶同工酶(GALase ~ ),研究β-半乳糖苷酶同工酶对阿拉伯半乳聚糖和Na2CO3-1、KOH-3、细胞壁残渣等细胞壁多糖组分的降解特性。
2.
Texture properties of the fruit and vegetable are very important for its merchandise value and the changes of the cell wall polysaccharide has a strong effect on the texture properties of the postharvest fruit and vegetable.
果蔬的质地特性对其商品价值非常重要,而采后果蔬细胞壁多糖的变化对质地特性具有重要影响。
6)  Multicellular eumycetes
多细胞真菌
1.
Multicellular eumycetes don\'t grow in high density,but grow more eugenic with the reduce of density.
结果:单细胞真菌在不同浓度的甘草流浸膏培养基中都生长,而且有随着浓度增高生长旺盛的现象;多细胞真菌在高浓度的甘草流浸膏培养基中不生长,在低浓度中开始生长,并有逐渐生长旺盛的趋势。
补充资料:多细胞真菌


多细胞真菌
polycellularis fungus

真菌的形态有单细胞和多细胞两种类型,而多细胞真菌多呈丝状,分枝交织成团,称为丝状菌,即一般通称的霉菌。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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