J Syst Evol

• Research Article •     Next Articles

A new Cretaceous opilioacarid family sheds light on early evolution of Parasitiformes (Arthropoda: Arachnida)

Qiang Xuan1,2, Zhi-Qiang Zhang3,4*, Chen-Yang Cai1,5, and Di-Ying Huang1,5*   

  1. 1State Key Laboratory of Palaeobiology and Stratigraphy, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing 210008, China
    2University of Chinese Academy of Sciences, Beijing 100049, China
    3Bioeconomy Science Institute, Manaaki Whenua – Landcare Research Group, Auckland 1072, New Zealand
    4School of Biological Sciences, The University of Auckland, Auckland 1027, New Zealand
    5 Nanjing College, University of Chinese Academy of Sciences, Nanjing 211135, China
    *Authors for correspondence. Di-Ying Huang. E-mail: dyhuang@nigpas.ac.cn; Zhi-Qiang Zhang. E-mail: zhiqiang.zhang@auckland.ac.nz
  • Received:2026-05-13 Accepted:2026-07-05
  • Supported by:
    Financial support was provided by the National Key Research and Development Program of China (2024YFF0807601) and the National Natural Science Foundation of China (42288201). Qiang Xuan’s visit to The University of Auckland and Bioeconomy Science Institute (Manaaki Whenua Landcare Research Group) in Auckland was supported by China Scholarship Council (202404910460).

Abstract: Opilioacarida are among the most primitive and enigmatic lineages of mites, retaining numerous plesiomorphic characters that are critical for understanding the early evolution of Parasitiformes. Here, we describe a new extinct family, Plesioacaridae fam. nov., from mid-Cretaceous Kachin amber, representing the second known family within Opilioacarida. The fossil specimen, here named Plesioacarus minutus gen. et sp. nov., was investigated using high-resolution confocal laser scanning microscopy, which revealed an exceptional suite of morphological features clearly distinguishing it from the extant family Opilioacaridae. These include dendritic prodorsal setae, a strongly U-shaped prodorsal furrow, a fused sternapophysis, a pair of setae posterior to the genital plate, a three-clawed palpal apotele, and a three-segmented tarsus I. The morphology of the palp apotele and tarsus I provides new insights into the evolution of appendage segmentation and specialization in early mites. To evaluate its systematic position, we conducted the morphological phylogenetic analysis for Opilioacarida based on 36 discrete characters scored across 22 extinct and extant taxa. The analyses consistently recovered Plesioacaridae as the sister group to all other opilioacarids. This discovery expands the known diversity of Mesozoic Opilioacarida and contributes important evidence for reconstructing the ancestral morphological groundplan and early evolutionary history of Parasitiformes.

Key words: Cretaceous, mites, morphological evolution, new family, Parasitiformes