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MnFtz-f1 Is Required for Molting and Ovulation of the Oriental River Prawn Macrobrachium nipponense.


ABSTRACT: Molting and ovulation are the basic processes responsible for the growth and reproduction of Macrobrachium nipponense; however, the molecular mechanisms of molting and ovulation in M. nipponense are poorly understood. The present study aimed to use MnFtz-f1 as the starting point to study the molting and ovulation phenomena in M. nipponense at the molecular level. The full-length MnFtz-f1 cDNA sequence was 2,198 base pairs (bp) in length with an open reading frame of 1,899 bp encoding 632 amino acids. Quantitative real-time PCR analysis showed that MnFtz-f1 was highly expressed in the ovary at the cleavage stage and on the fifth day after hatching. In vivo administration of 20-hydroxyecdysone (20E) showed that 20E effectively inhibited the expression of the MnFtz-f1 gene, and the silencing of the MnFtz-f1 gene reduced the content of 20E in the ovary. In situ hybridization (ISH) analysis revealed the localization of MnFtz-f1 in the ovary. Silencing of MnFtz-f1 by RNA interference (RNAi) resulted in significant inhibition of the expression of the vitellogenin (Vg), Spook, and Phantom genes, thus confirming that MnFtz-f1 had a mutual regulatory relationship with Vg, Spook, and Phantom. After RNAi, the molting frequency and ovulation number of M. nipponense decreased significantly, which demonstrated that MnFtz-f1 played a pivotal role in the process of molting and ovulation.

SUBMITTER: Yuan H 

PROVIDER: S-EPMC8721877 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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<i>MnFtz-f1</i> Is Required for Molting and Ovulation of the Oriental River Prawn <i>Macrobrachium nipponense</i>.

Yuan Huwei H   Zhang Wenyi W   Fu Yin Y   Jiang Sufei S   Xiong Yiwei Y   Zhai Shuhua S   Gong Yongsheng Y   Qiao Hui H   Fu Hongtuo H   Wu Yan Y  

Frontiers in endocrinology 20211220


Molting and ovulation are the basic processes responsible for the growth and reproduction of <i>Macrobrachium nipponense</i>; however, the molecular mechanisms of molting and ovulation in <i>M. nipponense</i> are poorly understood. The present study aimed to use <i>MnFtz-f1</i> as the starting point to study the molting and ovulation phenomena in <i>M. nipponense</i> at the molecular level. The full-length <i>MnFtz-f1</i> cDNA sequence was 2,198 base pairs (bp) in length with an open reading fra  ...[more]

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