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Wheat miR9678 Affects Seed Germination by Generating Phased siRNAs and Modulating Abscisic Acid/Gibberellin Signaling. | LitMetric

Wheat miR9678 Affects Seed Germination by Generating Phased siRNAs and Modulating Abscisic Acid/Gibberellin Signaling.

Plant Cell

State Key Laboratory for Agrobiotechnology and Key Laboratory of Crop Heterosis and Utilization (MOE) and Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing 100193, P.R. China

Published: April 2018

AI Article Synopsis

  • Seed germination is crucial for grain yield and quality, but excessive germination can lead to preharvest sprouting (PHS), especially in rainy conditions during harvest.
  • This study focuses on a specific wheat microRNA (miR9678) that is expressed in the seed and found that its overexpression delays germination and increases PHS resistance by lowering gibberellin (GA) levels, while silencing it leads to faster germination.
  • Further analysis revealed that miR9678 interacts with a long noncoding RNA to produce small interfering RNAs that delay germination, and its expression is activated by proteins related to abscisic acid (ABA) signaling, highlighting a complex regulatory network.

Article Abstract

Seed germination is important for grain yield and quality and rapid, near-simultaneous germination helps in cultivation; however, cultivars that germinate too readily can undergo preharvest sprouting (PHS), which causes substantial losses in areas that tend to get rain around harvest time. Moreover, our knowledge of mechanisms regulating seed germination in wheat () remains limited. In this study, we analyzed function of a wheat-specific microRNA 9678 (miR9678), which is specifically expressed in the scutellum of developing and germinating seeds. Overexpression of miR9678 delayed germination and improved resistance to PHS in wheat through reducing bioactive gibberellin (GA) levels; miR9678 silencing enhanced germination rates. We provide evidence that miR9678 targets a long noncoding RNA () and triggers the generation of phased small interfering RNAs that play a role in the delay of seed germination. Finally, we found that abscisic acid (ABA) signaling proteins bind the promoter of miR9678 precursor and activate its expression, indicating that miR9678 affects germination by modulating the GA/ABA signaling.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5969276PMC
http://dx.doi.org/10.1105/tpc.17.00842DOI Listing

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