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6 results for “Plodia interpunctella”

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zenodo40/100

Fig. 1 in Distribution and Occurrence of Vairimorpha plodiae (Opisthokonta: Microspora) in the Indian Meal Moth, Plodia interpunctella (Lepidoptera: Pyralidae) Populations: An Extensive Field Study

Fig. 1. The microsporidian pathogen, Vairimorpha plodiae infections in Plodia interpunctella populations in Turkey. Infected populations (note that the pathogen naturally disperses in all populations). (AYD: Aydın, BOL: Bolu, DNZ: Denizli, GZP: Gaziantep, ISP: Isparta, İST: İstanbul, İZM: İzmir, MLT: Malatya, ORD: Ordu, SAM: Samsun, ST: Siirt, TRB: Trabzon)

opencc-by-4.0Dec 2021View details →
dryad36/100

Effect of behavioral conditions on silk characteristics in the Indian meal moth (Plodia interpunctella)

<p><span>Lepidopteran silks are produced during the larval stage and are used for mobility and protection from predators, parasitoids, and pathogens. Our knowledge of silk structure and production in Lepidoptera is based largely on the biology of the domesticated silkworm moth (<em>Bombyx mori</em>), but recent comparative evidence suggests that silk production and structure vary widely across moth taxa. Some species like the Indian meal moth (<em>Plodia interpunctella</em>) are becoming important biological models to study silk for its potential application to materials science and medicine, but many aspects of silk production in this species remain unknown. Here we characterize physical changes in the silk of <em>P. interpunctella</em> by measuring the width of wandering and pupal silk strands and find that pupal silk is significantly thicker than the latter.  We then report individual variation in pupal silk production in our lab-reared colony with a very small number of individuals forgoing pupal silk (&lt; 4%) and find that overcrowding had no effect on this, whereas exposure to elevated temperatures reduced rates of pupal silk production.</span></p>

opencc-zeroApr 2023View details →
dryad36/100

Effect of behavioral conditions on silk characteristics in the Indian meal moth (Plodia interpunctella)

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publicApr 2023View details →
dryad28/100

Data from: Temperature-induced developmental plasticity in Plodia interpunctella: reproductive behaviour and sperm length.

In both plants and animals, male gametogenesis is particularly sensitive to heat stress, to the extent that a single hot or cold day can compromise crop productivity or population persistence. In animals, heat stress during development can impact a male's ability to secure copulations and/or his post-copulatory fertility. Despite such observations, relatively few studies have examined the consequences of developmental temperature on the reproductive behaviour and physiology of individuals. Here we report for the first time the effects of developmental temperature on the phenotypic expression of both apyrene and eupyrene sperm and the copulatory behaviour of the Indian meal moth, Plodia interpunctella. We show that the length of both apyrene and eupyrene sperm decrease with increasing developmental temperature and that males are less likely to engage in copulation when reared at the highest and lowest temperatures. Where copulation occurred, the duration of copula decreased as male developmental temperature increased. We argue that identification of the mechanisms and consequences of reproductive failure in animals facing heat stress will help understand how wild and domesticated populations will respond to global climate change. We also contend that such studies will help elucidate long-standing evolutionary questions around the maintenance of genetic variation in traits highly relevant to fitness and the role of phenotypic plasticity in driving the evolution of novel traits.

opencc-zeroDec 2018View details →
dryad28/100

Data from: Temperature-induced developmental plasticity in Plodia interpunctella: reproductive behaviour and sperm length.

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publicApr 2019View details →
dryad28/100

Data from: Sperm morph and remating frequency in the Indian meal moth, Plodia interpunctella

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publicJul 2018View details →

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