miR156 and miR390 Regulate tasiRNA Accumulation and Developmental Timing in Physcomitrella patens

Author:

Cho Sung Hyun1,Coruh Ceyda12,Axtell Michael J.12

Affiliation:

1. Department of Biology, Penn State University, University Park, Pennsylvania 16802

2. Plant Biology PhD Program, Huck Institutes of the Life Sciences, Penn State University, University Park, Pennsylvania 16802

Abstract

Abstract microRNA156 (miR156) affects developmental timing in flowering plants. miR156 and its target relationships with members of the SQUAMOSA PROMOTER BINDING PROTEIN-LIKE (SPL) gene family appear universally conserved in land plants, but the specific functions of miR156 outside of flowering plants are unknown. We find that miR156 promotes a developmental change from young filamentous protonemata to leafy gametophores in the moss Physcomitrella patens, opposite to its role as an inhibitor of development in flowering plants. P.  patens miR156 also influences accumulation of trans-acting small interfering RNAs (tasiRNAs) dependent upon a second ancient microRNA, miR390. Both miR156 and miR390 directly target a single major tasiRNA primary transcript. Inhibition of miR156 function causes increased miR390-triggered tasiRNA accumulation and decreased accumulation of tasiRNA targets. Overexpression of miR390 also caused a slower formation of gametophores, elevated miR390-triggered tasiRNA accumulation, and reduced level of tasiRNA targets. We conclude that a gene regulatory network controlled by miR156, miR390, and their targets controls developmental change in P.  patens. The broad outlines and regulatory logic of this network are conserved in flowering plants, albeit with some modifications. Partially conserved small RNA networks thus influence developmental timing in plants with radically different body plans.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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