• Genetic variations on tracheid microfibril Angle of 55 Chinese fir clones were investigated.

    55个杉木无性系管胞微纤丝遗传变异进行了研究。

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  • Tensile strength is mainly controlled by tracheid length, tracheid strength, microfibril angle and crystalline degree etc.

    抗拉强度主要长度、管胞强度、角度结晶度因子的控制。

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  • The broad sense heritability estimates of clones varied between 0.734 and (0.867), indicating the microfibril angle was under strong genetic control.

    广义遗传变化0.734~0.867,微纤丝无性系的差异很强的遗传控制

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  • It indicates that there are significant differences for microfibril Angle, basic density, bending strength and rate of shrinkage of poplar 63 and poplar 69 by variance analysis.

    方差分析表明:63杨、69杨微纤丝基本密度抗弯强度差异显著,说明63和69杨滩地类型影响较大。

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  • The distribution of microfibril spiral angle and relative orientational index of cellulose crystallites in cotton fibre cell walls had been studied by X-ray diffraction analysis.

    x射线衍射法对棉纤维细胞壁微原纤螺旋纤维素相对取向指数植株中的分布规律进行研究。

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  • The recent progresses in cellulose synthesis, the functions of relative enzymes and microfibril in process of cellulose synthesis were reviewed. The studies in cellulose synthesis were prospected.

    本文对纤维素合成、合成中所需要以及纤维素沉积作用等方面进行了综述探讨, 并对纤维素合成的深入研究进行展望

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  • The recent progresses in cellulose synthesis, the functions of relative enzymes and microfibril in process of cellulose synthesis were reviewed. The studies in cellulose synthesis were prospected.

    本文对纤维素合成、合成中所需要以及纤维素沉积作用等方面进行了综述探讨, 并对纤维素合成的深入研究进行展望

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