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Complete Mitochondrial Genome of Stethoconus Japonicus (Hemiptera: Miridae): Insights into the Evolutionary Traits within the Family Miridae

Gene, 2023
The mitochondrial (mt) genome sequence of insects possesses numerous evolutionary traits. To better understand the evolution of mt genomes within the family Miridae, the complete mt genome of the predatory Japanese plant bug Stethoconus japonicus Schumacher was sequenced before undertaking a comparative analysis of all reported plant bug mt genomes ...
Shi-Chun Chen   +4 more
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Miridae

2023
Fil: Coscaron, Maria del Carmen. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina.
Carpintero, Diego Leonardo   +1 more
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(Heteroptera: Miridae: Mirinae)

2006
Ferreira, Paulo Sérgio F., Coelho, Lívia A. (2006): (Heteroptera: Miridae: Mirinae).
Ferreira, Paulo Sérgio F.   +1 more
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Plant Bugs (Miridae)

2015
The Miridae, or plant bugs, with more than 1,300 genera and 11,130 described species, represent the largest and most diverse family of Heteroptera. Although many plant bugs are phytophagous and may cause serious damage to crops, a great many are predatory and may be important in biological control programs.
Paulo S. F. Ferreira   +2 more
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?????????? ???????????????? (Heteroptera, Miridae) ?????????? ?????????????????????? ??????

2023
???The monotypical genera are described: Bobocris gen. n. with type-species B. roseolus sp. n., Monocris gen. n. with type-species M. griseus sp. n., Lopidodenus gen. n. with type-species L. ogivus sp. n. and Macrotylus hymenocratii sp. n.
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Cyto-taxonomy of Miridae and Nabidae (Hemiptera)

Chromosoma, 1956
1. The chromosome numbers of 51Miridae and nineNabidae (Hemiptera-Heteroptera, Cimicoidea) are given. 2. InMiridae, Deraeocorinae, Bryocorinae andMirinae have a type 2n=34 and Phylinae 2n=32. Dicyphinae has 2n=48 and Orthotylinae 2n=24. The basic mirid caryotype is 32A+X+Y. 3. The caryotype ofDicyphinae supports the view that
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Host plant use for oviposition by Trigonotylus caelestialium (Hemiptera: Miridae) and Stenotus rubrovittatus (Hemiptera: Miridae)

Applied Entomology and Zoology, 2012
The main hosts and sites of oviposition for the two bugs, Trigonotylus caelestialium (Kirkaldy) (Hemiptera: Miridae) and Stenotus rubrovittatus (Matsumura) (Hemiptera: Miridae), that cause pecky rice were investigated in 24 poaceous plants. Nymphs of T. caelestialium emerged from both spikelets and leaf sheaths, while nymphs of S. rubrovittatus emerged
Atsuhiko Nagasawa   +2 more
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Plant bugs (Hemiptera: Miridae) associated with pastures in Colombia 

Zootaxa, 2018
Eight species of the family Miridae found in Colombian pastures belong to four genera: Collaria, Cynodonmiris, Neotropicomiris and Stenodema. All species are included in the tribe Stenodemini and are associated with Poaceae grasses. Diagnosis, keys to species and genera, and distribution in Colombian regions as well as the principal host of these ...
Barreto-Triana, Nancy   +3 more
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The Number of Testis Follicles in Miridae

Nature, 1961
THE male reproductive system of bugs has been investigated in detail for a handful of species1 or, in a range of species, quantitative data presented on the testis follicles2; but the dominant family in temperate climates, Miridae, has scarcely been examined—probably because of the difficulty specific determination presents to non-specialists.
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