Petroll Romy, Varshney Deepti, Hiltemann Saskia, Finke Hermann, Schreiber Mona, de Vries Jan, Rensing Stefan A
Plant Cell Biology, Department of Biology, University of Marburg, Marburg, 35043, Germany.
Department of Algal Development and Evolution, Max Planck Institute for Biology Tübingen, Tübingen, 72076, Germany.
Plant J. 2025 Jan;121(1):e17184. doi: 10.1111/tpj.17184. Epub 2024 Dec 12.
Transcription-associated proteins (TAPs) fulfill multiple functions in regulatory and developmental processes and display lineage-specific evolution. TAPscan is a comprehensive and highly reliable tool for genome-wide TAP annotation via domain profiles. Here, we present TAPscan v4, including an updated web interface (https://tapscan.plantcode.cup.uni-freiburg.de/), which enables an in-depth representation of the distribution of 138 TAP families across 678 species from diverse groups of organisms, with a focus on Archaeplastida (plants in the wide sense). With this release, we also make the underlying "Genome Zoo" available, a curated protein data set with scripts and metadata. Eighteen new TAP (sub)families were added as part of the update. Nine of those were gained in the most recent common ancestor of the Streptophyta (comprising streptophyte algae and land plants), or within the streptophyte algae. More than one-third of all detected TAP family gains were identified during the evolution of streptophyte algae, before the emergence of land plants, and are thus likely to have been significant for plant terrestrialization. The TAP complement of the Zygnematophyceae was identified to be the most similar to that of land plants, consistent with the finding that this lineage is sister to land plants. Overall, our data retrace the evolution of streptophyte TAPs, allowing us to pinpoint the regulatory repertoire of the earliest land plants.
转录相关蛋白(TAPs)在调控和发育过程中发挥多种功能,并呈现出谱系特异性进化。TAPscan是一种通过结构域图谱进行全基因组TAP注释的全面且高度可靠的工具。在此,我们展示TAPscan v4,包括一个更新的网络界面(https://tapscan.plantcode.cup.uni-freiburg.de/),它能够深入呈现138个TAP家族在678个来自不同生物类群的物种中的分布情况,重点是古质体类(广义的植物)。随着此次发布,我们还提供了基础的“基因组动物园”,这是一个带有脚本和元数据的经过整理的蛋白质数据集。作为更新的一部分,增加了18个新的TAP(亚)家族。其中9个是在链形植物(包括链形藻类和陆地植物)的最近共同祖先中获得的,或者是在链形藻类中获得的。在所有检测到的TAP家族获得事件中,超过三分之一是在陆地植物出现之前的链形藻类进化过程中发生的,因此可能对植物陆地化具有重要意义。已确定双星藻纲的TAP组成与陆地植物的最为相似,这与该谱系是陆地植物姐妹群的发现一致。总体而言,我们的数据追溯了链形植物TAPs的进化过程,使我们能够确定最早陆地植物的调控指令集。