Starko Samuel
UWA Oceans Institute and School of Biological Sciences Crawley Western Australia Australia.
Ecol Evol. 2024 Aug 8;14(8):e70109. doi: 10.1002/ece3.70109. eCollection 2024 Aug.
Branching stipe morphologies have evolved multiple times across the kelp (Laminariales) lineage, creating morphological forms that drive the complexity of kelp forest habitats. Although branching is likely a complicated developmental process, it has evolved repeatedly through kelp evolution and the processes facilitating the emergence of branched forms from unbranched ancestors remain unclear. Here I report on abnormally branched individuals ( = 9) from five kelp species found in British Columbia, Canada that had atypical bifurcations in their stipes, creating a single dichotomous branch. One of these species generally lacks branching entirely () while the other four exhibit some branching but typically lack this stipe bifurcation (, , , ). These unusually branched individuals exhibited replicated morphological subunits distal to the stipe bifurcation, including more blades, pneumatocysts, and sporophylls than is typical. This suggests that unbranched species possess an inherent developmental capacity for modularity with autonomy in the development of individual modules that may have helped to facilitate the widespread emergence of branched morphologies. Given the role of kelp forests in coastal environments, branching may influence habitat characteristics, potentially influencing community dynamics, and is thus a trait of particular evolutionary interest. These findings highlight the need for experiments that manipulate kelp development to better characterise the ontogenetic processes of these globally important taxa.
分支柄形态在海带(海带目)谱系中多次进化,产生了驱动海带森林栖息地复杂性的形态形式。尽管分支可能是一个复杂的发育过程,但它在海带进化过程中反复出现,而促进从无分支祖先出现分支形式的过程仍不清楚。在这里,我报告了在加拿大不列颠哥伦比亚省发现的来自五种海带物种的异常分支个体(共9个),它们的柄部有非典型的分叉,形成了单个二叉分支。其中一个物种通常完全没有分支(),而其他四个物种有一些分支,但通常没有这种柄部分叉(,,,)。这些异常分支的个体在柄部分叉远端表现出重复的形态亚单位,包括比典型情况更多的叶片、气囊和孢子叶。这表明无分支物种具有模块化的内在发育能力,个体模块的发育具有自主性,这可能有助于促进分支形态的广泛出现。鉴于海带森林在沿海环境中的作用,分支可能会影响栖息地特征,潜在地影响群落动态,因此是一个具有特殊进化意义的特征。这些发现凸显了进行操纵海带发育的实验的必要性,以便更好地描述这些全球重要类群的个体发育过程。