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September 27, 2025Frontiers in Insect Science2 citationsOpen Access

Effects of pre-adult photoperiod experience on reproductive parameters of Chrysoperla nipponensis (Tjeder): potential implications for mass-rearing of natural enemies

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XKXue KongMXMinghui XuHLHaolin Li

Key Points

  • Short-day conditions increase fecundity in Chrysoperla nipponensis, enhancing reproductive success without lowering lifespan.
  • Long-day conditions inhibit diapause while extending the oviposition duration, thus promoting reproductive output.
  • Photoperiod-sensitive stages significantly influence key reproductive parameters, emphasizing the importance of environmental cues.
  • Understanding these mechanisms can help optimize mass-rearing strategies for biological control using natural enemies.

Abstract

Photoperiod is a critical environmental factor for insect development and physiology, yet little is known about the effects of photoperiodic signals received during photoperiod-sensitive stages on reproductive parameters. The green lacewing, Chrysoperla nipponensis , is a promising candidate for mass rearing in biological control. Photoperiod is the primary environmental factor influencing C. nipponensis reproductive diapause. This study investigates how photoperiodic cues during photoperiod-sensitive stages affect key reproductive parameters such as fecundity, lifespan, oviposition duration, oviposition rate, diapause rate, pre-oviposition period, and lipid content of C. nipponensis . The results showed that short-day conditions (Light:Dark = 9h:15h; L9:D15) during pre-adult stages increase total lipid and triglyceride levels in both third larvae and newly emerged females, thereby enhancing fecundity of female, without reducing lifespan or oviposition. Furthermore, long-day conditions (Light:Dark = 15h:9h; L15:D9) during the pre-adult stage inhibited diapause, while increasing fecundity and extending oviposition duration. Our findings demonstrate that photoperiodic signals during the pre-adult stages significantly affect the reproductive parameters of C. nipponensis , which advances the understanding of photoperiod-dependent reproductive diapause and offers novel insights for optimizing strategies in mass-rearing of natural enemies.

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Cite This Study

Kong et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc5236b42https://doi.org/10.3389/finsc.2025.1680910
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