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1.
The closing apparatus in the metathoracic scent gland system of Notonecta glauca is described, and notes on the distribution of metathoracic scent glands in the family Notonectidae are included.  相似文献   

2.
The paper provides further clues as to the physiological function and biological significance of the ‘accessory gland’ in the metathoracic scent apparatus of the lygaeid Oncopeltus fasciatus. From various lines of evidence (gas chromatographic, cytochemical) it is concluded as probable that the accessory gland secretes small quantities of a mucopolysaccharide secretory product together with water. The difficulty of reconciling these data with other data indicating that the accessory gland is involved in the biosynthesis of the scent aldehydes is discussed. It is suggested that the water secreted into the median scent reservoir by the accessory gland provides O. fasciatus with a means of volumetric compensation for a diminished output of scent repellent.  相似文献   

3.
In most of the six coreoid genera examined there are differences in the scent gland complex. This comprises a median, ventral, metathoracic reservoir with either one, two, or three pairs of accessory glands.

The nine adult bugs examined all produced a colourless, single-phase scent, the components of which were similar although the relative proportions varied. Either n-hexanal or n-hexyl acetate, or both, were usually the major constituents (about 90 per cent of the total) and n-hexanol and acetic acid were also present in amounts varying from traces to about 10 per cent. In one species n-butanal was detected and in two species n-butyl butyrate and (probably) butyric acid were present.

The characteristic, ester odour of these coreoid bugs is quite unlike that of pentatomid bugs examined so far and the two groups do not possess a single component in common; nevertheless there are interesting analogies between the scent components of both groups.  相似文献   


4.
Abstract. Morphological characters and molecular sequence data were for the first time analysed separately and combined for the true water bugs (Hemiptera–Heteroptera, infraorder Nepomorpha). Data from forty species representing all families were included, together with two outgroup species representing the infraorders Gerromorpha and Leptopodomorpha. The morphological data matrix consisted of sixty‐five characters obtained from literature sources. Molecular data included approximately 960 bp from the mitochondrial gene 16S and the nuclear gene 28S for all forty‐two terminal taxa. The morphological dataset was analysed using maximum parsimony and the combined morphological and molecular (16S + 28S rDNA) dataset was analysed using direct optimization. A sensitivity analysis of sixteen different sets of parameters (various combinations of insertion–deletion cost and transversion costs) was undertaken. Character congruence was used as an optimality criterion to choose among competing phylogenetic hypotheses. The final hypothesis was obtained from the analysis of the combined molecular and mor phological dataset with the most congruent parameter set. This hypothesis supports the monophyly of all currently recognized families of Nepomorpha, and of the superfamilies Nepoidea (Nepidae + Belostomatidae), Corixoidea (Corixidae), Ochteroidea Ochteridae + Gelastocoridae), Notonectoidea (Notonectidae), and Pleoidea (Pleidae + Helotrephidae), but not the monophyly of the Naucoroidea (Naucoridae + Aphelocheiridae + Potamocoridae). The close relationship between the Notonectidae and Pleoidea is also supported. Our hypothesis concurs with Mahner in the placement of the Corixidae as a sister group to the remaining nepomorphan superfamilies except the Nepoidea, but differs in the placement of the Ochteroidea as a sister group to the Notonectoidea + Pleoidea. The superfamily Naucoroidea should be limited to only including the family Naucoridae and not the families Aphelocheiridae and Potamocoridae. The present analysis strongly supports a sister group relationship between the families Aphelocheiridae and Potamocoridae, a monophylum for which we propose a new superfamily, Aphelocheiroidea.  相似文献   

5.
The Heteroptera show a diversity of glands associated with the epidermis. They have multiple roles including the production of noxious scents. Here, we examine the cellular arrangement and cytoskeletal components of the scent glands of pentatomoid Heteroptera in three families, Pentatomidae (stink bugs), Tessaratomidae, and Scutelleridae (shield-backed bugs or jewel bugs). The glands are; (1) the dorsal abdominal glands, (2) the tubular glands of the composite metathoracic gland, and (3) the accessory gland component of the composite metathoracic gland. The dorsal abdominal glands are at their largest in nymphs and decrease in size in adults. The metathoracic gland is an adult-specific gland unit with a reservoir and multiple types of gland cells. The accessory gland is composed of many unicellular glands concentrated in a sinuous line across the reservoir wall. The lateral tubular gland is composed of two-cell units. The dorsal abdominal glands of nymphs are composed of three-cell units with a prominent cuticular component derived from the saccule cell sitting between the duct and receiving canal. The cuticular components that channel secretion from the microvilli of the secretory cell to the exterior differ in the three gland types. The significance of the numbers of cells comprising gland units is related to the role of cells in regenerating the cuticular components of the glands at moulting in nymphs.  相似文献   

6.
The metathoracic scent system in Heteroptera produces and releases defensive volatile compounds. The odor produced by predatory stink bugs differs from phytophagous bugs, suggesting a variation between the structure and function of the metathoracic scent system. The anatomy and ultrastructure of the external thoracic efferent system, scent gland, and reservoir in the stink bug predators Brontocoris tabidus, Podisus nigrispinus, and Supputius cincticeps (Heteroptera: Pentatomidae: Asopinae) were studied. External thoracic efferent systems of B. tabidus, P. nigrispinus, and S. cincticeps have anatomical differences in ostiole, peritreme, and evaporatorium. Scent glands have a secretory portion and a reservoir. The reservoir has irregular projections, and in B. tabidus, it is enlarged and heart shaped, whereas in P. nigrispinus and S. cincticeps it is flattened and semicircular. The secretory tissue of the scent gland has well-developed globular secretory cells that produce odorous compounds, and the reservoir has a single layer of cubical cells lined by a cuticular intima. Secretory cells are type III with an intracellular end apparatus, well-developed nucleus with decondensed chromatin, and cytoplasm rich in mitochondria, lysosomes, granules, and smooth endoplasmic reticulum. These findings suggest that there are differences in physiological function of the odoriferous system and the volatile compounds produced by the secretory cells, which may indicate variation in defensive behavior of these species.  相似文献   

7.
蝽类昆虫的臭腺   总被引:3,自引:2,他引:1  
臭腺是蝽类昆虫的重要特征之一 ,几乎所有的蝽类昆虫都具有臭腺 ;本文简单介绍了蝽类臭腺的形态结构、发育和臭腺分泌物的组成及其生物学作用等 ,其中对猎蝽科昆虫的相关介绍较为详细。  相似文献   

8.
The coreid Leptoglossus occidentalis is a Nearctic bug responsible for severe seed losses to pine orchards. When disturbed, adults and nymphs emit a defensive secretion deemed an allomone. Here we describe the gross morphology of the scent gland apparatus and the related evaporatory structures in nymphs and adults of L. occidentalis, through light microscopy and scanning electron microscopy. Adults of both sexes possess a metathoracic scent gland complex (MTG) including a central orange‐yellow reservoir and a pair of white lateral glands, connected by ducts to the reservoir. The MTG belongs to the diastomian type, with two ostioles located on the metathorax associated with a microsculptured cuticular accumulation area, i.e. evaporatory area, which can prevent the spread of the secretion on to non‐evaporative cuticle and increase scent fluid evaporation. A high number of male‐specific sternal gland pores were observed. These pores and associated glands are likely the source of an attractant pheromone, which could be extremely useful in monitoring and combating this invasive pest. In nymphs, MTG is replaced by two dorsal abdominal scent glands (DAGs) located between the 4th and the 6th urotergites. DAGs are reddish cuticle‐lined sacs with gland cells forming the gland wall; the scent substances are released through two orifices lying on the mid‐dorsal abdominal line between urotergites IV–V and V–VI. Also in nymphs, peculiar cuticular evaporatory areas surround both orifices.  相似文献   

9.
In Xinjiang (Western China), the fauna of water bugs and semiaquatic bugs comprises 28 species of 7 families belonging to the infraorders Nepomorpha Popov, 1968 and Gerromorpha Popov, 1971. The present paper provides new data on the distribution of 19 species of 6 families (Nepidae, Corixidae, Naucoridae, Notonectidae, Hebridae, and Gerridae). Four species of the family Corixidae, Micronecta griseola Horváth, 1899, Hesperocorixa linnaei (Fieber, 1848), Paracorixa kiritshenkoi (Lundblad, 1933), and Sigara seistanensis (Distant, 1920), and one species of the family Hebridae, Hebrus pilipes Kanyukova, 1997, are recorded for the first time for China. The family Hebridae and three species of the family Corixidae, Cymatia rogenhoferi (Fieber, 1864), Corixa dentipes Thomson, 1869, and Paracorixa caspica (Horváth, 1878), are new to the fauna of Xinjiang. The record of Gerris odontogaster (Zetterstedt, 1828) whose distribution in Northwestern China had been considered doubtful was confirmed. A key to the species of the genus Micronecta from Middle Asia and Western China is given. Differences between the two closely related species Sigara seistanensis (Distant, 1920) and S. striata (Linnaeus, 1758) are discussed, and their distinctive features are listed.  相似文献   

10.
Bugs of the genus Lincus (Heteroptera : Pentatomidae) are attracted by volatile compounds emitted from the inflorescences of fertile palms. To define the basis of their chemical ecology, we have studied the metathoracic scent glands (MTG) of males and females of 2 species, L. spurcus and L. malevolus. The metathoracic scent gland system belongs to the diastomien type. The 2 glandular pores located between the mesothoracic and metathoracic coxae are associated with “crescent-like” evaporation areas. The large median reservoir, which is composed of one type of flattened pigmented epithelial cells, is flanked by multitubular lateral glands. These glands result from the apposition of 2 cell-type glandular units. The strip-like accessory gland is embedded in the reservoir wall. At its level, the thinner cuticular intima forms finger-like invaginations where a protein secretory product is secreted. Extracts of the volatile fraction of the metathoracic gland secretion were analyzed by capillary gas chromatography (GC) and by GC-mass spectrometry (GC-MS). These analyses exhibited a typical pentatomid MTG composition. The glands of L. spurcus and L. malevolus males and females contain 11 compounds: (E)-2-hexenal, 4-keto-(E)-2-hexenal, (E)-2-hexenoic acid, decane, (E)-2-octenal, undecene, undecane, (E)-2-octenly acetate, (E)-2-decenal, tridecane and (E)-2-decenyl acetate, including 3 major compounds, which represent 60–85% of the secretion in the 2 species: (E)-2-hexenal, (E)-2-octenal, and n-undecane. The 4-keto-(E)-2-hexenal is present only in the L. malevolus MTG, and represents 26% of its secretion. The female extracts of both species are characterized by the presence of (E)-2-hexenoic acid, which was detected in the male extracts as traces.  相似文献   

11.
Semiochemistry of aposematic seed bugs   总被引:3,自引:0,他引:3  
(E)-2,7-Octadienyl acetate and (E)-2-octenyl acetate (1:10 by volume) were identified as a pheromone attractive to both sexes of the lygaeid bug, Tropidothorax cruciger. In a parallel investigation of Neacoryphus bicrucis (Lygaeidae), (E,E)-2,4-hexadienyl acetate and phenethyl acetate (≈9:1) were identified from males, and found attractive to both sexes of adults in the field plus a tachinid fly parasitoid of the bugs. In N. bicrucis, the pheromone was clearly shown to come from the tubular accessory glands of the metathoracic scent gland; this evidence, plus earlier literature reports for other species, indicate that male lygaeids are the pheromone emitters. In another lygaeid, Oncopeltus fasciatus, 2-isobutyl-3-methoxypyrazine was identified in the cardiac glycoside-laden fluid sequestered from milkweed hosts and expelled by these bugs when they are attacked. Alkyl methoxypyrazines are warning odorants associated with poisonous insect secretions, and their presence in O. fasciatus indicates that the plant-derived chemical defense of lygaeines is more elaborate than previously appreciated.  相似文献   

12.
Tessaratoma papillosa (Drury) (Hemiptera: Tessaratomidae) is a serious insect pest of litchi and longan in South China. When disturbed, this insect could release large quantities of disagreeable odorous volatiles from its scent gland. Knowledge on the scent gland and its secretion is crucial for developing the semiochemical methods to manage this pest. Morphology and ultrastructure of the metathoracic scent glands (MTGs) were studied under stereo and scanning electron microscopy, and the volatile compounds of MTGs from both male and female T. papillosa were analyzed with coupled gas chromatography?Cmass spectrometry (GC?CMS). The MTG complex is located between the metathorax and the first abdominal segment at the ventral surface of the insect, which has a well-developed single double valve cystic-shaped orange median reservoir, paired colorless lateral glands in both sides, and a long and wavy tubular accessory gland that inlays tightly into the ventral edge around the median reservoir. The MTG opens to the body surface through paired ostioles located between the meso- and metacoxae of the evaporatorium with mushroom bodies. The GC?CMS analyses showed that female and male adults have nine major volatile components in common. Tridecane is the most abundant in both females and males, reaching up to 47.1% and 51.8% of relative amount, respectively. The minor component is benzophenone with only 0.28% and 0.14%. Furthermore, undecane, tetradecane, 3-methyl-tridecane, and cyclopentadecane were found only in males. The possible function of volatile compounds of MTG contents in T. papillosa is addressed.  相似文献   

13.
The metathoracic scent glands in the Heteroptera produce defence secretions which are spread outside the body through and by using the thoracic external scent efferent system. That complex system was studied in 18 species from 11 genera of four subfamilies, Elvisurinae, Eurygastrinae, Hoteinae and Scutellerinae of the family Scutelleridae (Pentatomoidea). The results have been compared with published data. The pattern of that system is more consistent at the level of genus, mostly very similar in the congeneric species, but mostly variable within higher taxonomic levels, tribes and subfamilies. Five types of the external scent efferent system are recognized within the family Scutelleridae, basic two of them in studied species: (i) peritreme well developed, covering large part of metapleuron, evaporatorium small, developed only on metapleuron, (ii) evaporatorium large, more conspicuous than moderate-sized to small peritreme, extending to mesopleuron as large structure. The results do not support a hypothesis that the system of structures associated externally with metathoracic scent glands is in correlation with type of a habitat. However, these structures are well usable as diagnostic characters for scutellerid genera (e.g. Cantao, Hyperonchus, Scutellera and Solenosthedium).  相似文献   

14.
Estimation of nektonic insect populations   总被引:1,自引:0,他引:1  
SUMMARY 1. A water column sampler is described for obtaining absolute population estimates of nektonic insects in shallow waters.
2. Relative population estimates were obtained for Corixidae (Hemip-tera) and Buenoa (Hemiptera: Notonectidae) using a standardized sweep net procedure and compared to absolute estimates from column samples. These two types of estimates were highly correlated among lakes.
3. Simultaneous prediction and tolerance intervals for predictions from linear regressions indicated that reliable absolute population estimates generally cannot be expected from relative estimates  相似文献   

15.
Abstract. 1. The water bug Plea minutissima Leach (Hemiptera: Pleidae) from time to time crawls out of the water and distributes secretion from its metathoracic glands over the ventral part of its body. By this 'secretion-grooming' antiseptic gland substances, mostly hydrogen peroxide, are applied to the hydrofuge hairs which hold the respiratory air bubble.
2. When the bugs are prevented from leaving the water, their mortality increases significantly, and individuals lacking the air bubble are observed. Examination of such bugs with Scanning Electron Microscopy techniques reveals bacteria growing on their hydrofuge hairs, whereas in bugs allowed to secretion-groom the hairs are not contaminated by microorganisms.
3. Artificial application of diluted metathoracic gland secretion on the body surface of P. minutissima kills bacteria, while specific ciliates, which never colonize the respiratory region, are not harmed by the secretion.
4. It can be concluded that secretion-grooming prevents the contamination of the hydrofuge respiratory region that leads to the wetting of the hydrofuge respiratory regions, resulting in the loss of the air bubble, and, finally, the drowning of the animals.
5. Other possible functions of the secretion, such as chemical defence against predators or wetting of the body surface, could not be demonstrated or seem unlikely.  相似文献   

16.
应用光学显微镜和电子显微镜技术,观察了麝鼠(Onda zibethica)香腺囊的组织结构,证明香腺由腺细胞、支持细胞和排香管组成。顶浆分泌方式泌香。简述了各级排香管的细胞结构及功能,为建立麝鼠人工活体取香和体外泌香奠定了组织学基础。  相似文献   

17.
Zalom  Frank G. 《Hydrobiologia》1981,80(3):251-255
Variables associated with the seasonal abundance of members of a prey complex consisting of Chironomidae, Corixidae and Crustacea, and of a predator guild including Belostomatidae, Dytiscidae, Hydrophilidae and Notonectidae sampled from California rice fields were evaluated by multiple regression analysis. Variables included water temperature, rice plant stand and potential predator-prey interactions. Regression equations using water temperature and rice plant stand as independent variables described the seasonal abundance of both the prey complex (F = 5.619; P = 0.025) and the predator guild (F = 9.037; P = 0.005). Predator-prey interactions further modified many of the seasonal patterns of the organisms observed.  相似文献   

18.
The internal and external anatomy of the posterior metathoracic region, pregenital abdomen, and associated nervous system of the heteropteran infraorder Enicocephalomorpha are thoroughly described, using an array of state-of-the art techniques. Based on morphology, it is hypothesised which modes of communication these insects use. This study is based primarily on an undescribed species of Cocles Bergroth, 1905 (Enicocephalidae) and another undescribed species of Lomagostus Villiers, 1958 (Aenictopecheidae), but additional representatives of the infraorder are also examined. Our results are compared with the literature on other Heteroptera. The metathoracic scent gland system of Enicocephalomorpha uses the same muscles as that of more derived Heteroptera, although the efferent system is different. The presence of a tergal plate and well-developed longitudinal musculature in the families Enicocephalidae and Aenictopecheidae, as well as a sexually dimorphic set of sclerites and membranes that allow an as yet undetermined type of motion, may indicate the presence of vibrational signaling in the infraorder, although experimental confirmation is required. Our findings raise new research questions regarding heteropteran functional morphology and communication.  相似文献   

19.
补充头刺、后胸臭腺和生殖节等特征后重新定义了东洋区特有属-污网蝽属,并确认该属单质.记述中国污网蝽属昆虫3种,其中狄氏污网蝽Ildefonsus distanti为新种,窄污网蝽Ildefonsus nexus Drake et Ruhoff为中国新纪录种.文中给出了污网蝽属名录及种类检索表.新种的模式标本保存于南开大学昆虫标本室.  相似文献   

20.
Scent gland size and activity and frequency of marking under standard conditions were compared in five groups of male and female gerbils: (1) intact, sham-operated controls, (2) intact with scent glands excised, (3) gonadectomized, (4) gonadectomized injected with 1000 μg testosterone propionate (TP) on alternate days, and (5) gonadectomized with a low dose (25 μg) TP applied topically to the ventral scent gland on alternate days. The animals were housed in individual cages and tested for marking in an open field arena with plastic pegs.The scent gland is not required in either sex for the behavioural act of marking. Topical application of a dose of TP too low to exert a systematic effect restored the scent gland but not marking. Injection of sufficient TP to restore seminal vesicle weight restored marking, as well as the scent glands.It was concluded that in the male, both marking behaviour and scent gland size are controlled by the testes. The effect of androgens on marking is mediated directly through the central nervous system, and not through peripheral stimulation of the glands.Females have smaller glands and mark less than males. The ovaries appear to have little control over marking frequency, and some control over scent gland size. It is possible to stimulate marking behaviour to supernormal levels by TP injection, but not by topical application.  相似文献   

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