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梁山慈竹体细胞无性系再生植株纤维素含量与纤维形态研究 被引量:2

Changes of somaclones of Dendrocalamus farinosus in cellulose content and fiber morphology
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摘要 (以生育期相同的)30个梁山慈竹体细胞无性系再生植株和实生苗植株的茎杆为材料,对其纤维素含量和纤维形态进行分析。结果表明,无性系再生植株在纤维素含量和纤维形态方面均发生了较大的变异,再生植株无性系NO.126-1、NO.129的纤维素含量优于对照,达到显著水平(F>F0.05);NO.143的纤维素含量是对照植株的1.16倍,达到极显著水平(F>F0.01);NO.132、NO.40-2和NO.66-1的纤维形态明显优于对照,表明离体诱导的体细胞无性系变异可以应用于梁山慈竹遗传改良。 A total of 30 regenerated plants were obtained simultaneously from callus of the same mature seed embryo in Dendrocalamus farinosus. Then, at the same development stage, cellulose contents and fiber morphology of stems from somaelones and control were further analyzed. The results showed that there were significant differences both in cellulose content and fiber morphology among 30 clones. Somaclones NO. 126-1 and NO. 129 were superior in cellulose content compared with the control. Significantly, cellulose content of NO. 143 was 1. 16-fold of control ( F 〉 F0.01 ). On the other hand, somaclones NO. 132, NO. 40-2 and NO. 66-1 had better fiber quality than the control. This study proved the feasibility of somaclonal variation in vitro in genetic improvement of Dendrocalamus farinosus.
出处 《竹子研究汇刊》 北大核心 2013年第2期12-15,共4页 Journal of Bamboo Research
基金 四川省应用基础研究基金资助项目(05JY029-101) 四川主要丛生竹定向培育技术项目资助(10zx1102)
关键词 梁山慈竹 体细胞无性系变异 再生植株 纤维素含量 纤维形态 Dendrocalamus farinosus Somaclonal variation regenerated plants cellulosecontent fiber morphology
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  • 1梁善庆,罗建举.人工林米老排木材化学成分及其在树干高度上的变异[J].中南林学院学报,2004,24(5):28-31. 被引量:31
  • 2王光萍,丁雨龙,黄敏仁,王明庥.观赏竹的试管快繁研究[J].林业科学,2005,41(5):51-55. 被引量:21
  • 3李在留,辉朝茂.珍稀竹种巨龙竹组织培养研究[J].林业科学,2006,42(2):43-48. 被引量:20
  • 4SEGAL L, CREELY J J, et al. An Empirical Method for Estimating the Degree of Crystallinity of Native Cellulose Using the X-Ray Diffractometer [J]. Textile Research Journal, 1959, 29: 786-794.
  • 5MEYLAN B A. The measurement of microfibril angle by X-ray diffraction [J]. Forest Prod. J, 1967, 17(5): 51-58.
  • 6CAVE I D. Theory of x-ray measurement of microfibril angle in wood [J]. For Prod J, 1966(16): 37-42.
  • 7STUART S, EVANS R. X-ray diffraction estimation of the microfibril angle variation in Eucalypt wood [J]. Appita, 1995, 48(3): 197-200.
  • 8阮锡根,尹思慈,孙成志.应用X射线衍射.(002)衍射弧法测定木材纤维次生壁的微纤丝角[J].林业科学,1982,18(1):64-70.
  • 9Jin-Ling Yuan, JirrJun Yue, Xiao-Li Wu, et aL Protocol for Callus Induction and Somatic Embryogenesis in Moso Bam- boo ['J]. PLoS ONE, 2013, 8(12): e81954.
  • 10Shang-lian Hu, .Jian-ying Zhou, Ying Cao, et al. In vitro callus induction and plant regeneration from mature seed embryo and young shoots in a giant syrnpodial bamboo, Dendrocalamus farinosus (Keng et Keng f. ) Chia et H.L. Fung. African 3ournal of Bioteehnology, 2011, 10 (16), 3210-3215.

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