Small RNA-mediated silencing of phototropin suppresses the induction of photoprotection in the green alga <i>Chlamydomonas reinhardtii</i>.

Yamasaki, Tomohito; Tokutsu, Ryutaro; Sawa, Haruhi; Razali, Nazifa Naziha; Hayashi, Momoka; Minagawa, Jun · Proc Natl Acad Sci U S A · 2023

basic_science · Level V

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Abstract

Small RNAs (sRNAs) form complexes with Argonaute proteins and bind to transcripts with complementary sequences to repress gene expression. sRNA-mediated regulation is conserved in a diverse range of eukaryotes and is involved in the control of various physiological functions. sRNAs are present in the unicellular green alga <i>Chlamydomonas reinhardtii</i>, and genetic analyses revealed that the core sRNA biogenesis and action mechanisms are conserved with those of multicellular organisms. However, the roles of sRNAs in this organism remain largely unknown. Here, we report that <i>Chlamydomonas</i> sRNAs contribute to the induction of photoprotection. In this alga, photoprotection is mediated by LIGHT HARVESTING COMPLEX STRESS-RELATED 3 (LHCSR3), whose expression is induced by light signals through the blue-light receptor phototropin (PHOT). We demonstrate here that sRNA-defective mutants showed increased PHOT abundance leading to greater <i>LHCSR3</i> expression. Disruption of the precursor for two sRNAs predicted to bind to the <i>PHOT</i> transcript also increased PHOT accumulation and <i>LHCSR3</i> expression. The induction of <i>LHCSR3</i> in the mutants was enhanced by light containing blue wavelengths, but not by red light, indicating that the sRNAs regulate the degree of photoprotection via regulation of <i>PHOT</i> expression. Our results suggest that sRNAs are involved not only in the regulation of photoprotection but also in biological phenomena regulated by PHOT signaling.

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