A Testis-Specific DMRT1 (Double Sex and Mab-3-Related Transcription Factor 1) Plays a Role in Spermatogenesis and Gonadal Development in the Hermaphrodite Boring Giant Clam Tridacna crocea

Author:

Noor Zohaib1234,Zhao Zhen1345ORCID,Guo Shuming1234ORCID,Wei Zonglu1345,Cai Borui134,Qin Yanping134,Ma Haitao134,Yu Ziniu1234,Li Jun134,Zhang Yuehuan134

Affiliation:

1. Key Laboratory of Tropical Marine Bio-Resources and Ecology, Guangdong Provincial Key Laboratory of Applied Marine Biology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China

2. University of Chinese Academy of Sciences, Beijing 100049, China

3. Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai 519015, China

4. Hainan Provincial Key Laboratory of Tropical Marine Biology Technology, Sanya Institute of Oceanology Chinese Academy of Sciences, Sanya 572024, China

5. Animal Science and Technology College, Guangxi University, Nanning 530004, China

Abstract

The testis-specific double sex and mab-3-related transcription factor 1 (DMRT1) has long been recognized as a crucial player in sex determination across vertebrates, and its essential role in gonadal development and the regulation of spermatogenesis is well established. Here, we report the cloning of the key spermatogenesis-related DMRT1 cDNA, named Tc-DMRT1, from the gonads of Tridacna crocea (T. crocea), with a molecular weight of 41.93 kDa and an isoelectric point of 7.83 (pI). Our hypothesis is that DMRT1 machinery governs spermatogenesis and regulates gonadogenesis. RNAi-mediated Tc-DMRT1 knockdown revealed its critical role in hindering spermatogenesis and reducing expression levels in boring giant clams. A histological analysis showed structural changes, with normal sperm cell counts in the control group (ds-EGFP) but significantly lower concentrations of sperm cells in the experimental group (ds-DMRT1). DMRT1 transcripts during embryogenesis exhibited a significantly high expression pattern (p < 0.05) during the early zygote stage, and whole-embryo in-situ hybridization confirmed its expression pattern throughout embryogenesis. A qRT-PCR analysis of various reproductive stages revealed an abundant expression of Tc-DMRT1 in the gonads during the male reproductive stage. In-situ hybridization showed tissue-specific expression of DMRT1, with a positive signal detected in male-stage gonadal tissues comprising sperm cells, while no signal was detected in other stages. Our study findings provide an initial understanding of the DMRT1 molecular machinery controlling spermatogenesis and its specificity in male-stage gonads of the key bivalve species, Tridacna crocea, and suggest that DMRT1 predominantly functions as a key regulator of spermatogenesis in giant clams.

Funder

National Key Research and Development Program of China

Guangdong Provincial Key Research and Development Program

Guangzhou Science and Technology Project

National Science Foundation of China

Project of Sanya Yazhou Bay Science and Technology City

Science and Technology Project of Guangdong Provincial Department of Natural Resources

Guangdong Basic and Applied Basic Research Foundation

Open Foundation of the State Key Laboratory of Loess and Quaternary Geology

National Marine Genetic Resource Center

earmarked fund for CARS-49

Science and Technology Planning Project of Guangdong Province, China

CAS-TWAS President’s Fellowship Programme

Publisher

MDPI AG

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