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Ogawa, C.

Publications and source records attributed to Ogawa, C..

2 recordsLinked to original sources

Relationship between gonadosomatic index and spawning-capable status based on gonadal histology in the moonfish Mene maculata

The moonfish Mene maculata (Bloch and Schneider, 1801), the sole extant species of the family Menidae, is widely distributed in the Indo-West Pacific. Although its spawning season has previously been inferred from seasonal variation in the gonadosomatic index (GSI), the histological basis for interpreting GSI as an indicator of spawning-capable status remains limited. Here we describe the gonadal structure of male and female M. maculata and evaluate how GSI and standard length relate to spawning-capable status based on germ cell development. The testis was lobular and exhibited an unrestricted spermatogonial distribution, a structure widely observed among neoteleosts, indicating that the phylogenetic distinctiveness of M. maculata was not associated with a distinctive testicular structure. In the spawning-capable female, oocytes at multiple developmental stages, from primary growth to oocyte maturation, co-occurred within the ovary, indicating asynchronous ovarian development. This finding suggests that M. maculata may be a batch spawner rather than a total spawner as previously inferred. The spawning-capable female had a GSI consistent with previously inferred spawning season estimates. By contrast, histologically examined males were spawning capable at GSI values lower than those previously associated with the inferred spawning season, suggesting that male spawning-capable status may persist beyond the period inferred from elevated GSI alone. This study provides the first histological description of reproductive biology in the phylogenetically distinctive M. maculata and establishes a histological basis for interpreting GSI as a reproductive indicator.

ecology↗

Runx/Cbfβ regulates the development of tolerogenic Thetis cells

Establishing immune tolerance to gut microbiota and food antigens upon first exposures during early life is essential to prevent inflammatory bowel diseases and food allergy and depends on induction of peripherally induced Ror{gamma}t expressing regulatory T (Ror{gamma}t+ pTreg) cells1, 2, 3, 4, 5, 6. Recent studies have identified a critical role for Ror{gamma}t expressing antigen-presenting cells (APC), Thetis cells (TCs), in peripheral regulatory T (pTreg) cell differentiation and tolerance to food and commensal microbes7, 8, 9, 10, 11. TCs encompass four distinct subsets, and a subset of TCs, TC IV induces pTreg differentiation, but the transcription factors that control their differentiation are not fully known. Here, using orthogonal genetic approaches to impair Runx/Cbf{beta} activity, we show that development of specific TCs subsets is regulated by Runx/Cbf{beta} transcriptional factor complexes. While attenuated Runx3 by germline mutations resulted in a severe reduction of all Ror{gamma}t+ APCs, mice lacking one of two Cbf{beta} splicing variants, Cbf{beta}2, exhibited a loss of TC II, III and TC IV subsets with associated loss of Ror{gamma}t+ pTreg cells. Conditional inactivation of Runx1 and Runx3 genes by CD11c-Cre led to a specific loss of TC III and TC IV subsets. Strikingly, CD11c-Cre driven transgenic Runx expression, particularly Runx1, led to enhanced TC IV differentiation and thus Ror{gamma}t+ pTreg cells. Furthermore, transgenic Cbf{beta}2 by CD11c-Cre recovered only TC IV subset with restoration of Ror{gamma}t+ pTreg in Cbf{beta}2-deficient mice. Collectively, our findings establish a critical pathway for TC IV differentiation and provide new insights into therapeutic interventions to promote Ror{gamma}t+ pTreg induction in autoimmune and inflammatory diseases.

immunology↗