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Development of the root system in spirodela polyrhiza (L.) schleiden (Lemnaceae)

机译:螺旋藻(L.)schleiden(Lemnaceae)根系的发育

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The root structure in members of the Lemnaceae is important to plant researchers, because changes during cell differentiation can more easily be monitored in short roots with determinate growth. Here, the structural organization and cellular differentiation of the root system was assessed in the highly reduced Spirodela polyrhiza. While protected by a prophyllous sheath, rapid cell division occurred in the apical and vascular regions of the immature roots. Concentric rings of endodermis with Casparian strips, cortex, and epidermis enclosed a single vascular strand. The cytoplasmic density of the cortex was high at the apex, but decreased progressively along the root. The root root cap junction, closely attached at initiation, later became a distinct boundary layer filled with fibrillar materials. Chloroplasts were well distributed. Numerous plasmodesmata indicated the likely symplastic movement of ions and metabolites in the root system as well as further into the reduced plant body. A high cytoplasmic density at the apex and extreme vacuolization along the cortex provided possible explanations for the considerable distribution of weight along the roots of the plant body. These conditions probably enable the root tip to serve as a pendulum against water motion.
机译:Lemnaceae的根结构对于植物研究者很重要,因为细胞分化过程中的变化可以更容易地在具有确定生长的短根中进行监测。在此,在高度减少的Spirodela polyrhiza中评估了根系的结构组织和细胞分化。虽然受到预防性鞘的保护,但未成熟根的根尖和血管区域发生了快速的细胞分裂。带有里海带,皮质和表皮的内胚层同心环封闭了一条血管。皮质的细胞质密度在先端较高,但沿根部逐渐降低。起始时紧密连接的根冠盖接合处,后来变成充满纤维状材料的独特边界层。叶绿体分布均匀。大量的等离子藻表明根系中以及进一步进入还原的植物体内的离子和代谢物可能发生共生运动。最高的细胞质密度和沿皮质的极度空泡化为植物体根部重量的显着分布提供了可能的解释。这些条件可能使根尖成为防止水运动的钟摆。

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