PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 20, 2026Bulletin of Entomological Research0 citations

The low-temperature tolerance of Cinara cedri (Hemiptera: Aphidoidea: Lachninae)

View Full Paper
RWR.F. WangWZWD ZhangSMShencheng Ma

Key Points

  • This research aims to assess the cold tolerance of Cinara cedri and its implications for climatic adaptability and invasion risks.
  • Determined supercooling points for eggs, adults, and nymphs.
  • Evaluated lethal low temperatures and mortality rates under controlled conditions.
  • Assessed impacts of cold acclimation and rapid cold hardening on cold tolerance.
  • Egg SCP was −30.14°C, significantly lower than adults (−12.89°C) and nymphs (−14.21°C).
  • LT50 for adults were estimated at −10.28°C and −9.06°C; for nymphs, −8.00°C and −6.87°C.
  • Cold hardiness was enhanced in December compared to May, with notable reductions in adult mortality after 2 hours at 3°C.

Abstract

Abstract Cinara cedri is an economically important pest infesting cedars. This study presents the first study of its cold tolerance, providing key parameters for assessing its climatic adaptability and potential invasion risks. The supercooling points (SCPs) of eggs, adults, and first-instar nymphs (hereafter nymphs) were determined, along with lethal low temperatures, and the effects of cold acclimation (ACC) and rapid cold hardening (RCH) on cold tolerance. Results showed that eggs exhibited the strongest supercooling capacity, with a mean SCP of −30.14°C, significantly lower than that of adults (−12.89°C) and nymphs (−14.21°C). Under constant laboratory conditions, active aphids suffered no significant mortality at −5°C, whereas exposure to −7°C and −10°C for 1 and 2 h resulted in substantially higher mortality in nymphs than in adults. The 1– and 2–h lethal temperatures for 50% mortality (LT 50 ) were estimated as −10.28°C and −9.06°C for adults, and −8.00°C and −6.87°C for nymphs, respectively. Both ACC and RCH effectively enhanced cold tolerance; adults and nymphs exhibited markedly stronger cold hardiness in December relative to May, and exposure to 3°C for 2 h significantly reduced adult mortality. Collectively, these results establish an empirical foundation for forecasting population responses to short-term extreme low-temperature events and contribute to understanding the low-temperature biology of this aphid.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5089f03e14405aa9c677https://doi.org/10.1017/s0007485326101102
Ask AI
Helpful
Bookmark
Share
View Full Paper