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May 28, 2026Molecules0 citationsOpen Access

Tomato Yellow Leaf Curl Virus Reprograms Polyamine Metabolism in Bemisia tabaci MED to Enhance Viral DNA Accumulation

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ZSZitong SangHHHaolin HanFQFangfang Qi

Key Points

  • To understand how tomato yellow leaf curl virus affects polyamine metabolism in Bemisia tabaci and its impact on viral accumulation.
  • Demonstrated alterations in polyamine levels post-TYLCV infection in B. tabaci.
  • Measured the correlation between polyamine availability and viral DNA accumulation.
  • Evaluated the effects on immune and MAPK signaling gene expression.
  • Increased polyamine levels positively correlate with higher viral DNA accumulation.
  • Polyamine availability leads to significantly elevated viral loads in B. tabaci.
  • Infection suppresses expression of immune and MAPK signaling genes.

Abstract

Tomato yellow leaf curl virus (TYLCV) is a major plant pathogen that spreads worldwide through persistent circulative transmission by Bemisia tabaci. During transmission, TYLCV crosses several physiological barriers in the insect vector, evading immune defenses and altering host metabolic pathways to facilitate viral accumulation. Polyamines, essential for maintaining nucleic acid stability and promoting cellular processes, are known to play a critical role in viral accumulation. However, their role in TYLCV accumulation within B. tabaci is not well understood. Here, we demonstrate that TYLCV infection leads to significant alterations in polyamine levels in B. tabaci, with polyamine availability positively affecting viral DNA accumulation. Polyamine availability leads to higher viral loads and suppresses the expression of immune and MAPK signaling genes. These findings provide new insights into virus–vector and metabolic interactions underlying viral persistence in insect vectors.

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Cite This Study

Sang et al. (2026) studied this question.

synapsesocial.com/papers/6a17dcbb3fad632b0f9d9739https://doi.org/10.3390/molecules31111835
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