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叶蝉Oncometopia orbona(F.)(昆虫纲,同翅目,叶蝉科)个体发育过程中支气管体的分泌

Secretion of brochosomes during the ontogenesis of a leafhopper, Oncometopia orbona (F.) (Insecta, Homoptera, Cicadellidae).

作者信息

Rakitov R A

机构信息

Center for Biodiversity, Illinois Natural History Survey, Champaign 61820, USA.

出版信息

Tissue Cell. 2000 Feb;32(1):28-39. doi: 10.1054/tice.1999.0084.

Abstract

Secretion of brochosomes, intricately structured symmetrical protein-lipid particles produced in the specialized Malpighian tubules of the Cicadellidae, was studied during the ontogenesis of Oncometopia orbona (F.). Unlike most other cicadellids, O. orbona displays sexual dimorphism in the production of brochosomes. The Malpighian tubule secretory cells of nymphs, males and young females produce spherical brochosomes of 0.3-1.4 microm in diameter, extruded after molts through the hindgut and spread across the integument as a coating. In females with developing eggs the same cells switch to producing rod-like brochosomes of 3.5-11.0 microm in length, which are used to powder the oviposition sites. The transition involves a dramatic change in morphogenesis of the secretory particles. Both types of brochosomes derive from homogenous condensing Golgi granules and acquire their definitive structure as a result of growth, differentiation of the contents into a wall and a core, and development of a lattice of surface invaginations. Final stages of this process take place in Golgi-derived vacuoles. In the development of rod-like brochosomes the condensing granules coalesce into masses several times larger than nascent spherical type. These giant granules flatten, then become doughnut-shaped and finally break open into a pair of linear particles. Whether the chemical composition differs between the two types of brochosomes remains unknown.

摘要

对稻褐飞虱(Oncometopia orbona (F.))个体发育过程中分泌的微气管小体进行了研究。微气管小体是叶蝉科特化的马氏管中产生的结构复杂的对称蛋白质 - 脂质颗粒。与大多数其他叶蝉不同,稻褐飞虱在微气管小体的产生上表现出性别二态性。若虫、雄性和年轻雌性的马氏管分泌细胞产生直径为0.3 - 1.4微米的球形微气管小体,在蜕皮后通过后肠挤出,并作为一层涂层分布在体表。在卵巢发育的雌性中,相同的细胞转而产生长度为3.5 - 11.0微米的棒状微气管小体,用于在产卵位点上撒粉。这种转变涉及分泌颗粒形态发生的显著变化。两种类型的微气管小体均源自均匀凝聚的高尔基体颗粒,并通过生长、内容物分化为壁和核心以及表面内陷晶格的发育而获得其最终结构。这一过程的最后阶段发生在源自高尔基体的液泡中。在棒状微气管小体的发育过程中,凝聚颗粒聚集成比新生球形颗粒大几倍的团块。这些巨大颗粒变平,然后变成甜甜圈形状,最终裂开形成一对线性颗粒。两种类型的微气管小体在化学成分上是否存在差异仍不清楚。

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