Department of Algal Development and Evolution, Max Planck Institute for Biology Tübingen, 72076 Tübingen, Germany.
Development. 2024 Oct 15;151(20). doi: 10.1242/dev.203004. Epub 2024 Sep 20.
The transition from simple to complex multicellularity represents a major evolutionary step that occurred in only a few eukaryotic lineages. Comparative analyses of these lineages provide insights into the molecular and cellular mechanisms driving this transition, but limited understanding of the biology of some complex multicellular lineages, such as brown algae, has hampered progress. This Review explores how recent advances in genetic and genomic technologies now allow detailed investigations into the molecular bases of brown algae development. We highlight how forward genetic techniques have identified mutants that enhance our understanding of pattern formation and sexual differentiation in these organisms. Additionally, the existence and nature of morphogens in brown algae and the potential influence of the microbiome in key developmental processes are examined. Outstanding questions, such as the identity of master regulators, the definition and characterization of cell types, and the molecular bases of developmental plasticity are discussed, with insights into how recent technical advances could provide answers. Overall, this Review highlights how brown algae are emerging as alternative model organisms, contributing to our understanding of the evolution of multicellular life and the diversity of body plans.
从简单到复杂的多细胞生物的转变代表了一个主要的进化步骤,只发生在少数几个真核生物谱系中。对这些谱系的比较分析提供了深入了解推动这一转变的分子和细胞机制的见解,但对一些复杂多细胞谱系的生物学的了解有限,例如褐藻,阻碍了进展。这篇综述探讨了遗传和基因组技术的最新进展如何使我们能够详细研究褐藻发育的分子基础。我们强调了正向遗传技术如何识别出突变体,从而增强了我们对这些生物中模式形成和有性分化的理解。此外,褐藻中形态发生素的存在和性质以及微生物组在关键发育过程中的潜在影响也进行了研究。讨论了悬而未决的问题,例如主调控因子的身份、细胞类型的定义和特征以及发育可塑性的分子基础,并探讨了最近的技术进步如何提供答案的见解。总的来说,这篇综述强调了褐藻如何作为替代模式生物出现,有助于我们理解多细胞生命的进化和身体计划的多样性。