Holland Nicholas D, Holland Linda Z
Marine Biology Research Division, Scripps Institution of Oceanography, University of California at San Diego, La Jolla, California 93093, USA.
Biol Bull. 2010 Oct;219(2):132-41. doi: 10.1086/BBLv219n2p132.
Here we report on spawning and development of the Bahama lancelet, Asymmetron lucayanum. Ripe adults collected in Bimini spawned the same evening when placed in the dark for 90 minutes. The developmental morphology is described from whole mounts and histological sections. A comparison between development in Asymmetron and the better known cephalochordate genus Branchiostoma reveals similarities during the early embryonic stages but deviations by the late embryonic and early larval stages. Thus, the initial positions of the mouth, first gill slit, and anus differ between the two genera. Even more strikingly, Hatschek's right and left diverticula, which arise by enterocoely at the anterior end of the pharynx in Branchiostoma, never form during Asymmetron development. In Branchiostoma, these diverticula become the rostral coelom and preoral pit. In Asymmetron, by contrast, homologs of the rostral coelom and preoral pit form by schizocoely within an anterior cell cluster of unproven (but likely endodermal) origin. Proposing evolutionary scenarios to account for developmental differences between Asymmetron and Branchiostoma is currently hampered by uncertainty over which genus is basal in the cephalochordates. A better understanding of developmental diversity within the cephalochordates will require phylogenetic analyses based on nuclear genes and the genome sequence of an Asymmetron species.
在此,我们报告巴哈马文昌鱼(Asymmetron lucayanum)的产卵及发育情况。在比米尼收集的成熟个体,于傍晚置于黑暗环境90分钟后即可产卵。发育形态通过整体标本及组织切片进行描述。对文昌鱼属(Asymmetron)与更为人熟知的头索动物文昌鱼属(Branchiostoma)的发育情况进行比较发现,二者在胚胎早期阶段具有相似性,但在胚胎晚期和幼体早期阶段出现了差异。因此,两个属的口、第一鳃裂和肛门的初始位置不同。更引人注目的是,文昌鱼属(Branchiostoma)中通过肠体腔法在咽前端形成的哈氏左右憩室,在文昌鱼属(Asymmetron)的发育过程中从未形成。在文昌鱼属(Branchiostoma)中,这些憩室会发育成吻腔和口前凹。相比之下,在文昌鱼属(Asymmetron)中,吻腔和口前凹的同源结构是通过裂体腔法在一个来源未经证实(但可能是内胚层)的前体细胞簇内形成的。目前,由于头索动物中哪个属处于基部尚不确定,因此难以提出进化假说以解释文昌鱼属(Asymmetron)和文昌鱼属(Branchiostoma)之间的发育差异。要更好地理解头索动物内部的发育多样性,需要基于核基因和文昌鱼属(Asymmetron)物种的基因组序列进行系统发育分析。