Chloroplast-to-Nucleus Signaling Regulates MicroRNA Biogenesis in Arabidopsis

As integral regulators in plant development and stress response, microRNAs (miRNAs) themselves need to be tightly regulated. Here, we show that tocopherols (vitamin E), lipid-soluble antioxidants synthesized from tyrosine in chloroplasts, positively regulate the biogenesis of miRNAs. Tocopherols are...

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Published inDevelopmental cell Vol. 48; no. 3; pp. 371 - 382.e4
Main Authors Fang, Xiaofeng, Zhao, Gaozhan, Zhang, Su, Li, Yaoxi, Gu, Hanqing, Li, Yan, Zhao, Qiao, Qi, Yijun
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 11.02.2019
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Abstract As integral regulators in plant development and stress response, microRNAs (miRNAs) themselves need to be tightly regulated. Here, we show that tocopherols (vitamin E), lipid-soluble antioxidants synthesized from tyrosine in chloroplasts, positively regulate the biogenesis of miRNAs. Tocopherols are required for the accumulation of 3′-phosphoadenosine 5′-phosphate (PAP), a retrograde inhibitor of the nuclear exoribonucleases (XRN), which may protect primary miRNAs from being degraded and promote mature miRNA production. Such regulation is involved in heat-induced accumulation of miR398 and plant acquisition of heat tolerance. Our study reveals a chloroplast-to-nucleus signaling mechanism that favors miRNA biogenesis under heat and possibly other environmental perturbations. [Display omitted] •Tocopherols positively regulate miRNA biogenesis•Tocopherols are required for PAP accumulation•PAP positively regulates miRNA biogenesis•Retrograde regulation of miR398 confers heat tolerance As key regulators of gene expression, miRNAs themselves are subjected to sophisticated regulation. Fang et al. report that chloroplast retrograde signaling involving tocopherols (vitamin E) and PAP, a retrograde inhibitor of the nuclear XRN exonucleases, regulates miRNA biogenesis in Arabidopsis and confers heat tolerance.
AbstractList As integral regulators in plant development and stress response, microRNAs (miRNAs) themselves need to be tightly regulated. Here, we show that tocopherols (vitamin E), lipid-soluble antioxidants synthesized from tyrosine in chloroplasts, positively regulate the biogenesis of miRNAs. Tocopherols are required for the accumulation of 3'-phosphoadenosine 5'-phosphate (PAP), a retrograde inhibitor of the nuclear exoribonucleases (XRN), which may protect primary miRNAs from being degraded and promote mature miRNA production. Such regulation is involved in heat-induced accumulation of miR398 and plant acquisition of heat tolerance. Our study reveals a chloroplast-to-nucleus signaling mechanism that favors miRNA biogenesis under heat and possibly other environmental perturbations.
As integral regulators in plant development and stress response, microRNAs (miRNAs) themselves need to be tightly regulated. Here, we show that tocopherols (vitamin E), lipid-soluble antioxidants synthesized from tyrosine in chloroplasts, positively regulate the biogenesis of miRNAs. Tocopherols are required for the accumulation of 3′-phosphoadenosine 5′-phosphate (PAP), a retrograde inhibitor of the nuclear exoribonucleases (XRN), which may protect primary miRNAs from being degraded and promote mature miRNA production. Such regulation is involved in heat-induced accumulation of miR398 and plant acquisition of heat tolerance. Our study reveals a chloroplast-to-nucleus signaling mechanism that favors miRNA biogenesis under heat and possibly other environmental perturbations. [Display omitted] •Tocopherols positively regulate miRNA biogenesis•Tocopherols are required for PAP accumulation•PAP positively regulates miRNA biogenesis•Retrograde regulation of miR398 confers heat tolerance As key regulators of gene expression, miRNAs themselves are subjected to sophisticated regulation. Fang et al. report that chloroplast retrograde signaling involving tocopherols (vitamin E) and PAP, a retrograde inhibitor of the nuclear XRN exonucleases, regulates miRNA biogenesis in Arabidopsis and confers heat tolerance.
Author Qi, Yijun
Gu, Hanqing
Zhao, Qiao
Fang, Xiaofeng
Li, Yan
Zhang, Su
Zhao, Gaozhan
Li, Yaoxi
Author_xml – sequence: 1
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  organization: Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing 100084, China
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  organization: Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing 100084, China
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30595534$$D View this record in MEDLINE/PubMed
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Issue 3
Keywords heat tolerance
stress response
plastid
retrograde signaling
chloroplast
miRNA
microRNA
tocopherol
exoribonuclease
Language English
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Snippet As integral regulators in plant development and stress response, microRNAs (miRNAs) themselves need to be tightly regulated. Here, we show that tocopherols...
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SubjectTerms Adenosine Diphosphate - metabolism
Arabidopsis - metabolism
Arabidopsis Proteins - metabolism
Cell Nucleus - metabolism
chloroplast
Chloroplasts - metabolism
exoribonuclease
Exoribonucleases - metabolism
Gene Expression Regulation, Plant - genetics
heat tolerance
microRNA
MicroRNAs - metabolism
miRNA
plastid
retrograde signaling
Signal Transduction - physiology
stress response
Stress, Physiological - physiology
tocopherol
Title Chloroplast-to-Nucleus Signaling Regulates MicroRNA Biogenesis in Arabidopsis
URI https://dx.doi.org/10.1016/j.devcel.2018.11.046
https://www.ncbi.nlm.nih.gov/pubmed/30595534
https://search.proquest.com/docview/2161924214
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