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党江波, 李彩, 李晔, 龙志坚, 魏旭, 汪卫星, 何桥, 郭启高, 梁国鲁. 豇豆螺旋茎段维管组织观察及其成因分析[J]. 植物科学学报, 2011, 29(6): 743-748.
引用本文: 党江波, 李彩, 李晔, 龙志坚, 魏旭, 汪卫星, 何桥, 郭启高, 梁国鲁. 豇豆螺旋茎段维管组织观察及其成因分析[J]. 植物科学学报, 2011, 29(6): 743-748.
DANG Jiang-Bo, LI Cai, LI Ye, LONG Zhi-Jian, WEI Xu, WANG Wei-Xing, HE Qiao, GUO Qi-Gao, LIANG Guo-Lu. Observation and Genesis Analysis of Vascular Tissue in Cowpea’ s Helix Stem[J]. Plant Science Journal, 2011, 29(6): 743-748.
Citation: DANG Jiang-Bo, LI Cai, LI Ye, LONG Zhi-Jian, WEI Xu, WANG Wei-Xing, HE Qiao, GUO Qi-Gao, LIANG Guo-Lu. Observation and Genesis Analysis of Vascular Tissue in Cowpea’ s Helix Stem[J]. Plant Science Journal, 2011, 29(6): 743-748.

豇豆螺旋茎段维管组织观察及其成因分析

Observation and Genesis Analysis of Vascular Tissue in Cowpea’ s Helix Stem

  • 摘要: 豇豆(Vigna unguiculata Linn.)的茎缠绕支持物形成右手螺旋,其茎段经水浸泡去表皮后可见维管纤维沿茎轴方向呈左手螺旋状排列。用徒手切片法观察螺旋型和直线型茎段各节间中部的横切面,发现二者木质部导管分子均由内至外呈对称的扇形排列;螺旋型茎段各节间扇形的角度均显著小于直线型茎段对应节间的扇形角度(p<0.05);除第1节间外,螺旋型茎段各节间扇形纵横比均显著大于直线型茎段对应节间的扇形纵横比(p<0.05)。分析表明,茎的两种螺旋之间存在扭力平衡;螺旋型与直线型茎段横切面导管分子扇形排列的差异可能是茎段扭转过程中受挤压所致。此外,茎段扭转并不是细胞横向不对称扩张的结果,而可能是由各侧细胞不均衡的纵向生长所造成。

     

    Abstract: Cowpea stems can be right-handed helical when twinning on backers.We found that vascular bundles in skinless stems,which had being soaked in water,ranked lengthways as left-handed helixes,opposite to the stems’ twinning direction.In addition,helix and line type stem internode vessel elements were arranged as sectors when observed in crosswise transection by hand-held slicing method,and the angles of these sectors in helix type stems were significantly less than those in the same internodes of line type stems(p<0.05).The aspect ratios of all sectors were the same,except that in the first internode(p<0.05).These results show that the twinning helix and torsion helix counteracted each other,and the differences between sectors in helix and line type stems resulted from extrusiuoon producing in stem torsion.In addition,analysis showed that stem torsion was not the result of cell asymmetric transverse expansion in the xylem,but of unilateral cell elongation.

     

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