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Observation and establishment of gonad development stages in polyplacophorans (Mollusca): Chiton (Chiton) articulatus a case study

机译:多色性夜蛾(Mollusca)性腺发育阶段的观察和建立:Chiton(Chiton)articulatus案例研究

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Gonad development stages (GDS) and, subsequently, the reproductive cycle are described by performing histology of some gonad portions. In polyplacophorans, gametogenesis is not enough to define GDS; further anatomical gonad features are relevant. In most adult polyplacophorans, the gonad is a simple anatomical structure that resembles and operates as one single gonadal acinus without glandular structure. These features have gone unnoticed causing inaccurate GDS assignment and, consequently, imprecise reproductive season in polyplacophorans. Here, dissection protocols that allow extracting a compact gonad are established. Emphasizing the anatomical structure of the whole gonad and the displacement of gametes, five GDS were assigned to both sexes of Chiton (Chiton) articulatus: I-goniogenesis, II-development, III-ripe, IV-spawning, V-rest. Tissue platelets contribute importantly to GDS assignment and even help distinguishing between males and females. Neither a randomly selected portion of gonad nor a longitudinal section are recommended because it leads to misinterpretation higher than 50% in determining GDS and besides ignores displacement of gametes. A panoramic sweep across a complete transverse-section of each gonad was validated as the best option for establishing GDS. This new methodology was tested on several polyplacophorans species, and seems generally applicable for histological assessment of reproductive cycle and reproductive season in polyplacophorans.
机译:通过进行一些性腺部分的组织学描述性腺发育阶段(GDS)以及随后的生殖周期。在多发球菌素中,配子发生不足以定义GDS。进一步的解剖性腺特征是相关的。在大多数成年的多生斑中,性腺是一种简单的解剖结构,类似于一个腺体,没有腺体结构,并且像一个单独的性腺腺一样运作。这些功能没有引起注意,导致不正确的GDS分配,因此,多斑节肢动物的繁殖季节不精确。在这里,建立了允许提取紧凑性腺的解剖方案。为了强调整个性腺的解剖结构和配子的移位,将五个GDS分配给了Chiton(Chiton)节的两个性别:I型生殖,II型发育,III型成熟,IV产卵,V型休息。组织血小板对GDS的分配有重要作用,甚至有助于区分男性和女性。既不建议随机选择性腺,也不建议采用纵切面,因为在确定GDS时会导致误解率高于50%,而且会忽略配子的移位。验证在每个性腺的整个横截面上进行全景扫描是建立GDS的最佳选择。这种新的方法已在几种多生菌斑物种上进行了测试,似乎普遍适用于多生菌斑的生殖周期和生殖季节的组织学评估。

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