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Yamane, F.

Publications and source records attributed to Yamane, F..

2 recordsLinked to original sources

Insulin-like androgenic gland factor regulates the development of internal and external secondary sexual characteristics in juvenile male kuruma prawn Marsupenaeus japonicus

In decapod crustaceans, insulin-like androgenic gland factor (IAG) is a well-known peptide hormone produced by the androgenic gland, a male-specific endocrine organ. In certain species classified within Pleocyemata, experimental manipulation of IAG signaling has successfully altered both internal and external sexual characteristics, leading to sex reversal. Therefore, IAG is considered a key regulator of male sexual differentiation and maturation and is thought to be a crustacean androgen. In the kuruma prawn Marsupenaeus japonicus (Dendrobranchiata), an important fishery species in Japan, a homologous molecule known as Maj-IAG has been identified. However, its physiological function in males remains poorly understood. In this context, we conducted Maj-IAG knockdown (KD) via RNA interference in juvenile male M. japonicus. Over a 9-week period, Maj-IAG KD significantly inhibited the development of the petasma, male-specific external copulatory structure, and parts of the internal reproductive organs, such as the vas deferens and seminal vesicles. In contrast, somatic growth and testicular development were unaffected by Maj-IAG KD. Histological analysis of the testes revealed no evident abnormalities such as degeneration of testicular structures or abnormal arrest of germ cell differentiation. These findings indicate that Maj-IAG partially governs the development of male secondary sexual characteristics in juveniles and further suggest that once testicular differentiation is initiated, the maintenance and development of the testis proceeds without dependence on Maj-IAG. Our study provides fundamental insights that may contribute to the advancement of functional sex reversal technologies in penaeid shrimps. HighlightsO_LILong-term gene knockdown of the insulin-like androgenic gland factor gene (Maj-IAG) was successfully achieved in Marsupenaeus japonicus. C_LIO_LISomatic growth and spermatogenesis were not affected by Maj-IAG knockdown. C_LIO_LIMaj-IAG is involved in the development of male secondary sexual characteristics in juvenile prawns, including the external male copulatory structures and certain parts of the internal male reproductive organs. C_LI

zoology↗

Dual roles of crustacean female sex hormone during juvenile stage in the kuruma prawn Marsupenaeus japonicus

The crustacean female sex hormone (CFSH) has been identified as a female-specific hormone that plays a crucial role in female phenotype developments in the blue crab Callinectes sapidus. To date, its homologous genes have been reported in various decapod species. Additionally, unlike the blue crab, several species have two different CFSH subtypes. The kuruma prawn Marsupenaeus japonicus is a representative example species of this phenomenon, having two CFSH subtypes identified from the eyestalk (MajCFSH) and ovary (MajCFSH-ov). Eyestalk-type MajCFSH is expressed predominantly in the eyestalk at the same level in both sexes, indicating no female-specificity. Here, we conducted gene knockdown analysis of eyestalk-type MajCFSH using sexually immature juveniles of kuruma prawn (average body length: [~]10 mm) to elucidate its physiological functions. As a result, MajCFSH-knockdown did not affect the development of sex-specific characteristics such as external reproductive organs, while it induced apparent growth suppression in male juveniles, implying that MajCFSH may play a male-specific juvenile growth role. Moreover, MajCFSH-knockdown female and male juveniles changed their body color to become brighter, indicating that MajCFSH has the ability to change body color by dispersing the pigment granules in the chromatophore. Overall, our present study improved our understanding of the physiological roles of CFSH using kuruma prawn. Highlights- MajCFSH-knockdown was conducted using sexually immature juveniles of kuruma prawn. - MajCFSH-knockdown male juveniles showed significant growth suppression. - MajCFSH-knockdown female and male juveniles changed their body color to become brighter.

physiology↗