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April 26, 2026Pest Management Science1 citations

Niche differentiation of two sorghum aphid species: Host leaf ontogeny drives divergent feeding behavior and fitness

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ZGZi‐Meng GuiLZLian‐Sheng ZangZSZhen Shen

Key Points

  • This research aims to elucidate the niche differentiation between two sorghum aphid species based on host leaf developmental stages.
  • Conducted life table experiments across four leaf treatments: Heart Leaves at Seedling, Old Leaves at Seedling, Heart Leaves at Jointing, and Old Leaves at Jointing stages.
  • Utilized electrical penetration graph (EPG) techniques to assess feeding behavior on heart and old leaves.
  • Compared fitness metrics including lifespan and fecundity across leaf niches for both aphid species.
  • Rhopalosiphum maidis showed optimal fitness on heart leaves with a lifespan of 25.62 days and a fecundity of 51.8 nymphs; performed poorly on old leaves.
  • Melanaphis sacchari adapted better to old leaves but exhibited lower fitness on heart leaves; specific numbers in fitness metrics were not provided.
  • EPG recordings indicated Rhopalosiphum maidis experienced lower mechanical resistance in probing on heart leaves compared to old leaves.

Abstract

Abstract BACKGROUND Aphids are major pests threatening sorghum production, and their population dynamics and feeding behavior are profoundly influenced by host developmental stages and leaf traits. To clarify niche differentiation between Rhopalosiphum maidis and Melanaphis sacchari on sorghum, we combined life table and electrical penetration graph (EPG) techniques to compare their fitness and feeding behaviors across different sorghum leaf niches. RESULTS The life table experiment included four leaf treatments designed to compare aphid feeding niches: Heart Leaves at Seedling Stage (HL‐SS), Old Leaves at Seedling Stage (OL‐SS), Heart Leaves at Jointing Stage (HL‐JS), and Old Leaves at Jointing Stage (OL‐JS), whereas the EPG experiment focused on leaf age effects with two treatments: heart leaf (HL) and old leaf (OL). Results consistently demonstrated distinct niche adaptations between the two aphid species. Rhopalosiphum maidis exhibited optimal fitness only on HL, characterized by the longest lifespan (25.62 days), highest fecundity ( F = 51.8 nymphs), and extended reproductive period (15.3 days), while EPG recordings revealed the least mechanical resistance during probing (Total duration of F = 0.33 min), allowing localization of suitable feeding sites. However, it performed poorly on OL. In contrast, M. sacchari showed superior adaptation on OL but the lowest fitness on HL. CONCLUSION By integrating population performance and feeding behavior, this study reveals that leaf age and plant phenology jointly drive aphid niche differentiation on sorghum. These findings inform sorghum aphid‐resistant breeding by emphasizing stage‐ and leaf‐specific resistance evaluation, and support precision aphid management targeting key leaf niches across sorghum developmental stages. © 2026 Society of Chemical Industry.

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Cite This Study

Gui et al. (2026) studied this question.

synapsesocial.com/papers/69edad094a46254e215b4abbhttps://doi.org/10.1002/ps.70858
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