Departments of Botany and Plant Pathology, University of Wisconsin, 53706, Madison, WI, USA.
Planta. 1982 Nov;156(2):136-51. doi: 10.1007/BF00395428.
The vascular system of the leaves of Saccharum officinarum L. is composed in part of a system of longitudinal strands that in any given transverse section may be divided into three types of bundle according to size and structure: small, intermediate, and large. Virtually all of the longitudinal strands intergrade, however, from one type bundle to another. For example, virutually all of the strands having large bundle anatomy appear distally in the blade as small bundles, which intergrade into intermediates and then large bundles as they descend the leaf. These large bundles, together with the intermediates that arise midway between them, extend basipetally into the sheath and stem. Most of the remaining longitudinal strands of the blade do not enter the sheath but fuse with other strands above and in the region of the blade joint. Despite the marked decrease in number of bundles at the base of the blade, both the total and mean cross-sectional areas (measured with a digitizer from electron micrographs) of sieve tubes and tracheary elements increase as the bundles continuing into the sheath increase in size. Linear relationships exist between leaf width and total bundle number, and between cross-sectional area of vascular bundles and both total and mean cross-sectional areas of sieve tubes and tracheary elements.
甘蔗叶片的维管束系统部分由一个纵向束系统组成,根据大小和结构,在任何给定的横截面上可以将这些束分为三种类型:小束、中束和大束。然而,几乎所有的纵向束都相互渐变,从一种类型的束过渡到另一种类型。例如,具有大束解剖结构的几乎所有束在叶片的远端都表现为小束,它们向下延伸时逐渐过渡到中束,然后过渡到大束。这些大束与它们之间产生的中束一起,向基部延伸到鞘和茎中。叶片中其余的大部分纵向束不进入鞘,但在叶片连接处的上方和周围与其他束融合。尽管叶片基部的束数量明显减少,但随着进入鞘的束增大,筛管和导管分子的总数和平均横截面积(通过电子显微镜的数字化仪测量)都增加。叶片宽度与总束数之间以及维管束的横截面积与筛管和导管分子的总横截面积和平均横截面积之间存在线性关系。