Whittaker J R
J Embryol Exp Morphol. 1980 Feb;55:343-54.
This research shows that myoplasmic crescent material of the ascidian egg has both functional autonomy and functional specificity in establishing the differentiation pathway of muscle lineage cells. The cytoplasmic segregation pattern in eggs of Styela plicata was altered by compression of the embryos during third cleavage. This caused a meridional division instead of the normal equatorial third cleavage; first and second cleavages are meridional. Since eggs of S. plicata have a pronounced yellow myoplasmic crescent, one observes directly that third cleavage under compression resulted in a flat 8-cell stage with four cells containing yellow myoplasm instead of the two myoplasm-containing cells that would be formed by normal equatorial division at third cleavage. If such altered 8-cell-stage embryos were released from compression and kept from undergoing further divisions by continuous treatment with cytochalasin B, some embryos eventually developed histospecific acetylcholinesterase in three and four cells instead of in just the two muscle lineage cells found in cleavage-arrested normal 8-cell stages. The wider myoplasmic distribution effected by altering the division plane at third cleavage apparently caused a change in developmental fate of the extra cells receiving myoplasm. This meridional third cleavage also resulted in a changed nuclear lineage pattern. Two nuclei that would ordinarily be in ectodermal lineage cells after third cleavage were now associated with yellow myoplasm. Acetylcholinesterase development in these cells demonstrates that nuclear lineages are not responsible for muscle acetylcholinesterase development in the ascidian embryo.
这项研究表明,海鞘卵的肌质新月物质在建立肌肉谱系细胞的分化途径方面具有功能自主性和功能特异性。皱瘤海鞘卵中的细胞质分离模式在第三次卵裂期间因胚胎受压而改变。这导致了纵裂而非正常的赤道第三次卵裂;第一次和第二次卵裂是纵裂。由于皱瘤海鞘的卵有明显的黄色肌质新月,人们可以直接观察到,受压情况下的第三次卵裂产生了一个扁平的8细胞期,其中四个细胞含有黄色肌质,而不是正常赤道第三次卵裂时形成的两个含有肌质的细胞。如果将这种改变后的8细胞期胚胎从压力中释放出来,并用细胞松弛素B持续处理使其不再进一步分裂,一些胚胎最终会在三个或四个细胞中而不是在正常8细胞期经卵裂阻滞处理后仅在两个肌肉谱系细胞中发育出组织特异性乙酰胆碱酯酶。通过改变第三次卵裂的分裂平面所实现的更广泛的肌质分布显然导致了接受肌质的额外细胞的发育命运发生变化。这种纵裂的第三次卵裂也导致了核谱系模式的改变。通常在第三次卵裂后应处于外胚层谱系细胞中的两个细胞核现在与黄色肌质相关联。这些细胞中乙酰胆碱酯酶的发育表明,核谱系并不负责海鞘胚胎中肌肉乙酰胆碱酯酶的发育。