Sex-specific differences in gonopore and gonadal growth trajectories in the brooding sea urchin, Abatus cavernosus (Spatangoida)

IF 1.3 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Damián G. Gil, Héctor E. Zaixso, Javier A. Tolosano
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引用次数: 5

Abstract

The heart urchin Abatus cavernosus shows sexual dimorphism characterized by the development of external brood pouches and the enlargement of gonopores in brooding females. Relationships between body size, gonopore size, and gonadal maturation in each sex were examined for inflection points using piecewise regression models (PRM). Opening of the gonopore occurred at 15.5 mm test length. Inflection points in the gonadal growth and gonopore diameter trajectories were clustered at smaller sizes in males (23 and 24.2 mm, respectively) than in females (25.1 and 25.9 mm), indicating sex-specific differences in sexual maturation. Gonopore growth showed positive allometry at pre-adult stages of development in both sexes, but isometry and negative allometry in adult females and males, respectively. Gonadal growth was initiated at smaller sizes and proceeded at a higher rate with increasing body size in males than in females. Identification of inflection points in gonopore and gonadal growth trajectories, using objective PRM, allows the determination of life stages and sexual maturation for individuals, thus providing a complementary tool for population studies.

育雏海胆(Abatus cavernosus)性腺生长轨迹的性别差异
海胆呈雌雄二态性,雌性海胆外育儿袋发育,性腺孔增大。使用分段回归模型(PRM)检验了男女体型、性腺孔大小和性腺成熟之间的关系,以寻找拐点。试验长度为15.5 mm时,性腺孔出现开口。性腺生长和性腺孔直径轨迹的拐点在雄性(分别为23和24.2 mm)比雌性(分别为25.1和25.9 mm)聚集在更小的尺寸上,表明性成熟的性别特异性差异。雌雄生殖腺孢子在成虫前发育阶段均表现为正异速生长,雌雄生殖腺孢子在成虫前发育阶段分别表现为等速生长和负异速生长。雄性的性腺生长始于较小的尺寸,随着体型的增加,雄性的性腺生长速度比雌性快。利用客观PRM确定性腺和性腺生长轨迹的拐点,可以确定个体的生命阶段和性成熟,从而为种群研究提供补充工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Invertebrate Biology
Invertebrate Biology 生物-动物学
CiteScore
2.20
自引率
8.30%
发文量
28
审稿时长
>12 weeks
期刊介绍: Invertebrate Biology presents fundamental advances in our understanding of the structure, function, ecology, and evolution of the invertebrates, which represent the vast majority of animal diversity. Though ultimately organismal in focus, the journal publishes manuscripts addressing phenomena at all levels of biological organization. Invertebrate Biology welcomes manuscripts addressing the biology of invertebrates from diverse perspectives, including those of: • genetics, cell, and molecular biology • morphology and biomechanics • reproduction and development • physiology and behavior • ecology • evolution and phylogenetics
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