Kawamura Kazuo, Watanabe Hiroshi
Shimoda Marine Research Center, University of Tsukuba, Shimoda, 5-10-1, 415, Shizuoka, Japan.
Wilehm Roux Arch Dev Biol. 1983 Jan;192(1):28-36. doi: 10.1007/BF00848766.
In the polysteelid ascidian,Polyandrocarpa misakiensis, buds can arise at any antero-posterior positional level around the basal margin of a functional zooid. In this study, each bud was cut into anterior and posterior halves along its proximo-distal axis. When an anterior half was combined with a posterior half from a higher (more posterior) level, the future zooid developed the same anteroposterior polarity as a normal bud. When the same operation was performed with a posterior half from a lower (more anterior) level, the antero-posterior polarity was inverted, resulting in a reversed body asymmetry (situs inversus viscerum). Bud polarity depended not on the size or the growth stage of the fragmented buds, but on the difference in parental positional levels from which respective buds to be fused had originated. Surgically constructed doublehalf buds developed a single polarity instead of a pattern reduplication. Insertion experiments with bud pieces showed that the gap between the positional levels was recognized at the proximal region of operated buds. The results of this study are inconsistent with the predictions of the polar coordinate model for pattern formation. It is concluded that a parent zooid possesses antero-posterior position-specific potential for determining bud polarity.
在多钢海鞘(Polyandrocarpa misakiensis)中,芽可以在功能个体基部边缘周围的任何前后位置水平处产生。在本研究中,每个芽沿着其近端 - 远端轴被切成前半部分和后半部分。当一个前半部分与来自较高(更靠后)水平的后半部分结合时,未来的个体发育出与正常芽相同的前后极性。当用来自较低(更靠前)水平的后半部分进行相同操作时,前后极性反转,导致身体不对称反转(内脏反位)。芽的极性不取决于碎片化芽的大小或生长阶段,而是取决于要融合的各个芽所起源的亲代位置水平的差异。手术构建的双半芽发育出单一极性而不是模式重复。芽片的插入实验表明,操作芽的近端区域能够识别位置水平之间的差距。本研究结果与模式形成的极坐标模型预测不一致。得出的结论是,亲代个体具有决定芽极性的前后位置特异性潜能。