<p>In the leaves of most herbaceous plants, stomata exist in both the adaxial (upper) and abaxial (lower) surfaces<sup><CitationRef CitationID="CR1">1</CitationRef>,<CitationRef CitationID="CR2">2</CitationRef></sup>. Many previous studies have reported that stomata on the abaxial surface are more responsive to light than those on the adaxial surface<sup><CitationRef AdditionalCitationIDS="CR4 CR5 CR6 CR7 CR8" CitationID="CR3">3</CitationRef>–<CitationRef CitationID="CR9">9</CitationRef></sup>. However, the underlying molecular mechanism is still unclear. Here, by examining the model plants <i>Arabidopsis</i> and tobacco, we confirmed that the distinct feature occurred at the guard cell level. Next, with both single-cell RNA sequencing and transcriptome sequencing, we compared gene expression patterns of adaxial and abaxial guard cells and highlighted the possibility of different utilization of potassium ion (K<sup>+</sup>) channels. Via in silico OnGuard simulation and genetic modifications, we found that adaxial and abaxial guard cells rely on different K<sup>+</sup><sub>in</sub> channels, which control K<sup>+</sup> influx for stomatal opening. The present study provides insights into understanding the distinct stomatal light response of different leaf surfaces.</p>

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Guard cells on the adaxial and abaxial leaf surfaces use different compositions of potassium ion channels to drive light-induced stomatal opening

  • Jian Wei,
  • Kunshen Hu,
  • Menglong Liu,
  • Yali Liu,
  • Wang Tian,
  • Yue Zhou,
  • Liu-Min Fan,
  • Yizhou Wang,
  • Yin Wang

摘要

In the leaves of most herbaceous plants, stomata exist in both the adaxial (upper) and abaxial (lower) surfaces1,2. Many previous studies have reported that stomata on the abaxial surface are more responsive to light than those on the adaxial surface39. However, the underlying molecular mechanism is still unclear. Here, by examining the model plants Arabidopsis and tobacco, we confirmed that the distinct feature occurred at the guard cell level. Next, with both single-cell RNA sequencing and transcriptome sequencing, we compared gene expression patterns of adaxial and abaxial guard cells and highlighted the possibility of different utilization of potassium ion (K+) channels. Via in silico OnGuard simulation and genetic modifications, we found that adaxial and abaxial guard cells rely on different K+in channels, which control K+ influx for stomatal opening. The present study provides insights into understanding the distinct stomatal light response of different leaf surfaces.