首页> 外文期刊>American Journal of Plant Sciences >Comparative Studies of Tracheary Element Structure of Some Gymnosperms with Angiosperms
【24h】

Comparative Studies of Tracheary Element Structure of Some Gymnosperms with Angiosperms

机译:一种高血管植物的气囊元素结构对比较研究

获取原文
           

摘要

Tissues of the pinna and rachis of Cycas diannaensis and pinna, rachis, and root of Cycas taiwaniana, rachis of Cycas szechuanensis, stem of Metasequoia glyptostroboides (Taxodiaceae), stems of Chamaecyparis obtusa (Sieb.et Zucc.) Endl cv. Tetragona (Cupressaceae), and leaves and stems of Michelia alba and Michelia figo and stems of Amygdalus persica (angiosperms) were compared using the scanning electron microscopy. In all species of these gymnosperms, their many tracheary elemnts have perforations in end walls and lateral walls. These structures are the same as vessels of angiosperms; therefore, these tracheary elements are vessel elements. Many types of vessels were found in cycads: pitted vessels in M. glyptostroboides, spiral and pitted vessels in Chamaecyparis obtusa cv. Tetragona. The development and structural characteristics of vessels of cycads, the two other gymnosperms, and the angiosperms were identical. Some characters such as extent of incline of perforation plate in the end wall showed that vessel characters of some angiosperms were more primitive than the cycads or M. glyptostroboides and C. obtusa cv. Tetragona. Many of the vessel elements of the angiosperms were band shaped, without end walls, and had only two lateral walls and other two margins; the end was acuate or with an arc margin; the end of some vessel elements was acute with no perforations, many perforations located only in lateral wall. Such results are rarely reported in previous work. In all species, perforations were seen only in tracheae, and the walls of parenchyma cells only had a thin primary wall and without perforation. Analysis and discussion to the experimental measures which were observed and research of the structure of vessel or tracheid, pointed out that several measures all could be used and the Jeffrey’ method effects were better. Comparing the vessels of cycads, Taxodiaceae and Cupressaceae helps us to understand the mechanism in which these most primitive or more primitive extant gymnosperms were adapted to harsh environments and to understand these species’ evolutionary extent, and has the significance to the studies of plant anatomy, plant systematics and plant evolution.
机译:Cycas Diannaisis和Cycas Taiwaniana,Cycas Szechuanensis的rachis,猪肉梗死的组织,Cycasedaulostroboides(Taxodiaceae),Chamaecyparis optusa(Sieb.et Zuccc.)endl cv的茎。使用扫描电子显微镜进行比较四方Alba和Michelia Alba和Michelia Figo和Michelis Pentica(Agiosperms)的叶子和茎。在这些裸子植物的所有物种中,他们的许多气囊的齿轮在端墙和侧壁中具有穿孔。这些结构与Angiospers的血管相同;因此,这些气管元件是血管元素。在Cycads中发现了许多类型的血管:在C.Clyptostroboides,Chamaecyparis optusa cv中的螺旋和钝容器中的钝血管。四方。丘代菌血管的发展和结构特征,另外两个裸子植物和高管植物是相同的。诸如端壁穿孔板倾斜度范围的一些角色显示,一些高血管植物的血管特征比狼人或M. glyptostroboides和C. obtusa cv更原始。四方。有道腓的许多血管元素都是带状的,没有端壁,并且只有两个侧壁和其他两个边缘;结束是横来的或弧形余量;一些血管元件的末端急性伴有穿孔,许多仅位于侧壁的穿孔。在以前的工作中很少报道这些结果。在所有物种中,仅在气囊中看到穿孔,牙科细胞的壁仅有薄的主墙壁和没有穿孔。分析和讨论观察到的实验措施和研究血管或躯干结构的研究,指出了所有可能使用的措施,杰弗里的方法效果更好。比较丘代山脉的血管,罗西娅群和克拉西亚群有助于我们了解这些最原始或更多原语的机制,其中适应恶劣环境并理解这些物种的进化程度,对植物解剖学的研究具有重要意义,植物系统性与植物演化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号