• At last, searched the cytology structure of grape adventitious bud.

    同时葡萄不定芽发生细胞学结构进行了探索。

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  • Stablepolyploid plants were obtained through the application of the adventitious bud technique.

    同时采用不定技术对变异株进行稳定,获得了完全多倍体。

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  • It also showed that adventitious bud could grow root and develop complete plants in the medium MS.

    不定MS培养基正常生根发育完整植株

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  • TDZ and CPPU had different effects on callus induction, adventitious bud propagation and seedlings growth.

    TDZCPPU伤组织的诱导不定的分化及组培苗的生长等方面表现出不同的效果。

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  • It was observed that the adventitious bud grew rapidly and new generation of adventitious buds emerged from them.

    不定生长迅速,同时发现不定芽上可以再形成新的不定

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  • Results showed that the immature stems are good explants of callus induction and adventitious bud differentiation;

    盐桦伤组织高效诱导不定分化最适外植体为段;

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  • Results There were significant difference in different length of adventitious bud, difference between the multiplication and radication of culture media.

    结果不同高度不定之间显著差异,不同增殖生根培养基之间有显著差异。

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  • For the multiplication and root development of the adventitious bud from leaf disc, hormone concentration and composition were also examined in this study.

    另外,以叶片再生不定试材,进行了不同激素组合对百合增殖生根的研究。

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  • At present, Agrobacterium mediated transformation of leaves are widely adopted in apples, and transgenic shoots were mainly obtained from adventitious bud regeneration.

    目前,农杆菌介导法苹果应用主要转化方法,叶片再生不定芽途径是被广泛应用的受体系统。

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  • The result indicated that TDZ had effect on the adventitious buds induction of "Carbernet Sauvignon". Adventitious bud regenerating rate from leaf and petiole is 18.06% and 28.57%, respectively.

    结果表明TDZ赤霞珠离体叶片叶柄不定再生诱导作用,对叶片、叶柄的最高诱导分别为18.06%28.57%;

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  • Method: MS medium was used as basal medium and ba and NAA were supplemented to find out the optimal hormone combinations for adventitious buds initiation, adventitious bud multiplication and rooting.

    方法以MS培养基基本培养基,通过研究植物生长物质BANAA丛生芽的分化、丛生芽的增殖生根的影响找出相应最佳生长物质组合

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  • Method: MS medium was used as basal medium and ba and NAA were supplemented to find out the optimal hormone combinations for adventitious buds initiation, adventitious bud multiplication and rooting.

    方法以MS培养基基本培养基,通过研究植物生长物质BANAA丛生芽的分化、丛生芽的增殖生根的影响找出相应最佳生长物质组合

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