Comparative genomic analysis reveals the genetic basis of the environmental adaptability of Propylea japonica. [PDF]
Yang X +9 more
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Testing the Effects of Prey Type on the Life History and Population-Level Parameters of Chrysoperla externa (Neuroptera: Chrysopidae). [PDF]
Braghini A +8 more
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Possible Fossil Larvae of Staphylinidae from Kachin Amber and a Quantitative Morphological Comparison Indicate That Rove Beetle Larvae Partly Replaced Lacewing Larvae. [PDF]
Haug JT, Zippel A, Haug GT, Haug C.
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Influência do tempo de armazenamento dos ovos sobre o período embrionário e viabilidade de Ceraeochrysa caligata (Banks, 1946) (Neuroptera: chrysopidae). [PDF]
CRUZ, I. +3 more
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Advances in the Integrated Pest Management of Quinoa (Chenopodium quinoa Willd.): A Global Perspective. [PDF]
Cruces L, de la Peña E, De Clercq P.
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Chrysopidae Associated with Citrus in Florida
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An Achiasmatic Mechanism That Ensures the Regular Segregation of Sex Chromosomes in Male Meiosis in the Black Spongilla-fly <i>Sisyra nigra</i> (Retzius 1738), Sisyridae, Differs from the Mechanism Commonly Observed Within Neuroptera. [PDF]
Nokkala S, Nokkala C.
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Lacewings Parasitoids ( Neu.: Chrysopidae) in Shiraz
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Published as part of Perez-Gelabert, Daniel E., 2008, Arthropods of Hispaniola (Dominican Republic and Haiti): A checklist and bibliography, pp.
Beata Gabrys +97 more
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Eocene Chrysopidae and the Florissant chrysopid assemblage The oldest known Cenozoic species of Chrysopidae is Sinonothochrysa zhangi Huang et Nel in Huang et al. (2021) from the Paleocene of southern China (Huang et al. 2021). Its venation is characteristic of the subfamily Nothochrysinae (see its diagnosis of Makarkin & Archibald 2013), including the
Makarkin, Vladimir N. +2 more
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