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March 7, 2026Annual Review of Plant Biology2 citations

Gravity Sensing for Gravitropism

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MMMiyo Terao MoritaTNTakeshi NishimuraHSHiromasa Shikata

Key Points

  • The aim is to summarize recent advances in understanding gravity sensing mechanisms in flowering plants.
  • Reviewed recent literature on molecular mechanisms of gravity sensing and signal transduction.
  • Focused on the role of starch-filled amyloplasts and LAZY1-LIKE proteins.
  • Analyzed how these proteins interact in the context of signal pathways affecting auxin transport.
  • Identified key proteins involved in gravity sensing, including LAZY1-LIKE and D6PKs.
  • Highlighted the role of amyloplasts in activating signaling pathways related to plant orientation.
  • Introduced the concept of antigravitropic offset and its differences from classical gravitropism.

Abstract

Gravitropism allows plants to reorient their growth along the gravity vector by sensing and responding to changes in orientation. This review summarizes recent advances in elucidating the molecular mechanisms underlying gravity sensing and signal transduction, with a focus on flowering plants. Central to this process are starch-filled amyloplasts that sediment within statocytes and activate downstream signaling pathways. Recent discoveries include the identification of LAZY1-LIKE family proteins, which translocate from amyloplasts to the plasma membrane in response to gravistimulation and recruit regulators such as RLDs and D6PKs to control polar auxin transport. We also discuss the emerging concept of antigravitropic offset, which modulates lateral organ angles, and its potential mechanistic divergence from classical gravitropism. Collectively, these findings reveal an integrated system to regulate organ orientation and plant architecture.

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Cite This Study

Morita et al. (2026) studied this question.

synapsesocial.com/papers/69abc1b45af8044f7a4ea939https://doi.org/10.1146/annurev-arplant-070225-032745
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