• 不同外植体愈伤组织分化程度不同。

    The callia from different explants were differential in differentiation.

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  • 叶片诱导组织分化能力强。

    The callus from leaf segments exerted a higher differentiation rate.

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  • 其它基因负责其它组织分化

    Other gene sets are responsible for additional tissues.

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  • 胚状体组织分化

    The bud was differentiated from the embryoid and the callus.

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  • 不定愈伤组织分化形成

    Adventitious buds were formed from calluses.

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  • 复杂性程序组织分化的细致程度。

    The term complexity refers to the amount of differentiation in an organization.

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  • 然后诱导组织分化

    Second, to promote bud differentiation from the calluses.

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  • VEGF表达组织分化程度密切关系

    The expression of VEGF has close relation with tissue differentiation degree.

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  • 误诊10特点临床分期早,组织分化好。

    Their ages, clinical features, pathologic characteristics were compared between the two groups.

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  • 淀粉酶的活性高低愈伤组织分化有着密切关系

    There was a positive relationship between amylaseactivity and callus differentiation.

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  • 体细胞大部分间接途径产生表层组织分化而来;

    Most of embryoids generate from the surface of the callus through the indirect process;

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  • DNA蛋白质合成速度的变化增殖组织分化相关

    The DNA and protein synthetic rates have relations with the somatic embryo increment and tissue differentiation.

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  • 成熟胚诱导组织分化能力最强,可以达到54.3%左右。

    The regenerating ability of callus from embryo is highest to 54.3%.

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  • 植物发育过程中的PCD植物自身形态建成组织分化重要意义

    PCD is important for the formation of structure and differentiation of plants.

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  • 分化途径产生生姜愈伤组织分化频率,不利于 生姜组织培养

    The differentiation rate of callus produced by the pathway of de-differentiation was low, which was disadvantage to tissue culture of Zingiber offcinai Roscoe.

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  • 乳腺癌组织VEGF表达阳性淋巴结转移阳性、组织分化密切相关;

    The positive expression of VEGF in breast cancer tissues is associated with the metastasis of lymph nodes and the tissues' low differentiation.

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  • 以金边瑞香段为外植体,探讨了不同培养基组织诱导、愈伤组织分化的影响。

    These young stems as explants placed on different media formed calli, whose amount then increased by different cultures on different media and for different generations.

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  • 研究品种基本培养基激素处理、组织切块大小对红掌愈伤组织分化培养影响

    The influences were studied of variety, basic medium, hormone combination and slice block of callus on the callus differentiation culture of Anthurium andraeanum.

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  • EYA蛋白作为重要转录调控因子,直接参与胚胎发育过程中的细胞增殖组织分化器官发育。

    EYA was thought to function as a transcriptional regulatory factor that plays an important role in cell proliferation, tissue differentiation and embryonic development.

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  • 东方百合鳞片外植体,采用MS培养基不同外源激素配比,进行组织培养,研究其茎尖分生组织分化

    Meristem culture of Oriental Hybrid Lily through its scales was studied in MS medium with different external hormone treatments.

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  • PCD细胞组织平衡特化,以及组织分化器官建成和病原体反应植物发育过程中起著重要作用。

    PCD is important in processes of plant development such as cell and tissue homeostasis and specialization, tissue differentiation and organ sculpting, and reactions to pathogens.

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  • 研究结果证实脊索既有上皮组织分化特点又有间组织的表现,存在着具有多潜能分化的恶性干细胞群体。

    Some cells were multipotential neoplasms cells in which the stem cells were capable of differentiation along both epithelial and mesenchymal pathways.

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  • 其它植物激素2,4 - D,NAAKT等对三七组织分化影响不大,改变愈伤组织生长状态

    Other plant hormones such as 2, 4-d, NAA or KT did not influenced obviously the callus differentiation, but they could change the growth state of the callus.

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  • 同时CXCR4VEGF-C表达组织的不同润程度、组织分化程度和病理分期之间有密切关系,且两者呈正相关

    The positive expression of VEGF and CXCR4 were correlated with the tumor of invasion, differentiation and Dukes′stage, and the expression of VEGF was positively correlated with CXCR4.

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  • 结果表明:诱导组织分化所用外源CTK/IAA分化出芽或根愈伤组织内源CTK/IAA值呈相关;

    The relation between the level of exogenous CTK/IAA for inducing differentiation and the level of endogenous CTK/IAA in callus with bud or root differentiation is negative.

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  • 统计分析表明本实验设计2,4 - D诱导普通荞麦组织主要因素;愈伤组织分化的主要因素是6 -BA

    The variance analysis suggested that the main factor of callus inducement is 2, 4-d, and the main factor for callus differentiation 6-ba.

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  • 同源异位基因作为组织分化调节基因,其与血管生成的关系已从多方面进行了研究,HOXD3HOXB3HOXD10PRXHEX

    Homeobox genes, as differentiating and regulating genes, may have effect on angiogenesis, such as HOXD3, HOXB3, HOXD10, PRX, HEX, etc.

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  • 研究了苦莓叶片愈伤组织诱导分化

    Callus induction and redifferentiation of black chokeberry leaf in vitro were studied.

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  • 研究了苦莓叶片愈伤组织诱导分化

    Callus induction and redifferentiation of black chokeberry leaf in vitro were studied.

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