Nap1 is essential for eupyrene spermatogenesis and migration in Plutella xylostella

IF 3.2 2区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chenxu Zhu , Lijun Zhou , Dongbin Chen , Xu Yang , Lu Zhu , Lansa Qian , Xiaomiao Xu , Gangqi Fang , Awawing A. Andongma , Yongcheng Dong , Lin He , Yongping Huang , Yaohui Wang
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Abstract

Spermatogenesis is a key process for the sexual reproduction species. In lepidopteran insects, spermatogenesis produces two different types of sperms, in which eupyrene sperm carry genomic DNA and fertilize eggs, whereas apyrene sperm are necessary for eupyrene sperm to enter eggs. However, functional genetic studies of spermatogenesis in Plutella xylostella remain a longstanding puzzle even though the phenomenon in lepidoptera has been widely documented more than a century. In this study, we particularly focus on the gene Nap1 which belongs to the Nucleosome assembly protein family. Our findings revealed that Nap1 was highly expressed in the testes, and the disruption of PxNap1 induced male sterility in P. xylostella, while the fertility of mutant females was comparable to wild-type females. Additionally, through immunofluorescence staining analysis, we found that the eupyrene sperm bundles presented diffusedly scattered nuclei in PxNap1 mutant males, while the nuclei in the wild-type were clustered together presented as needle shape. We also found that PxNap1 deficiency hinders the transfer of eupyrene sperm to the bursa copulatrix and spermatheca of females. However, the apyrene spermatogenesis was not affected in the PxNap1 mutant. RNA-seq analyses indicated that the defects of eupyrene sperm in PxNap1 mutants were related to energy metabolic such as pentose and glucuronate interconversions, biosynthesis of amino acids, and pentose phosphate pathway. Our study demonstrates that PxNap1 plays crucial function in eupyrene spermatogenesis and eupyrene sperm migration. Our research provides valuable insights for the genetic factors underlying reproductive processes in Lepidopteran insects.

Abstract Image

Nap1在小菜蛾真核精子发生和迁移中起重要作用。
精子发生是有性生殖物种的一个关键过程。在鳞翅目昆虫中,精子发生产生两种不同类型的精子,其中真核精子携带基因组DNA并使卵子受精,而非真核精子则是真核精子进入卵子所必需的。然而,尽管鳞翅目的精子发生现象已经被广泛记录了一个多世纪,但小菜蛾精子发生的功能遗传学研究仍然是一个长期存在的难题。在这项研究中,我们特别关注Nap1基因,它属于核小体组装蛋白家族。我们的研究结果表明,Nap1在小菜蛾睾丸中高表达,PxNap1的破坏诱导了小菜蛾雄性不育,而突变雌性的生育能力与野生型雌性相当。此外,通过免疫荧光染色分析,我们发现PxNap1突变体雄性的真核精子束呈弥散状核,而野生型的精子束核聚集在一起呈针状。我们还发现PxNap1的缺乏阻碍了雌虫的精原体精子向卵囊性交基质和精囊的转移。然而,在PxNap1突变体中,apyrene精子发生不受影响。RNA-seq分析表明,PxNap1突变体真核精子缺陷与戊糖与葡萄糖醛酸相互转化、氨基酸生物合成、戊糖磷酸途径等能量代谢有关。我们的研究表明,PxNap1在真核精子发生和真核精子迁移中起着至关重要的作用。我们的研究为鳞翅目昆虫生殖过程的遗传因素提供了有价值的见解。
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来源期刊
CiteScore
7.40
自引率
5.30%
发文量
105
审稿时长
40 days
期刊介绍: This international journal publishes original contributions and mini-reviews in the fields of insect biochemistry and insect molecular biology. Main areas of interest are neurochemistry, hormone and pheromone biochemistry, enzymes and metabolism, hormone action and gene regulation, gene characterization and structure, pharmacology, immunology and cell and tissue culture. Papers on the biochemistry and molecular biology of other groups of arthropods are published if of general interest to the readership. Technique papers will be considered for publication if they significantly advance the field of insect biochemistry and molecular biology in the opinion of the Editors and Editorial Board.
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