Transcriptome Analyses of FY Mutants Reveal Its Role in mRNA Alternative Polyadenylation.

Plant Cell

Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems, College of the Environment and Ecology, Xiamen University, Xiamen, Fujian, China 361102

Published: October 2019

A crucial step for mRNA polyadenylation is poly(A) signal recognition by -acting factors. The mammalian cleavage and polyadenylation specificity factor (CPSF) complex components CPSF30 and WD repeat-containing protein33 (WDR33) recognize the canonical AAUAAA for polyadenylation. In Arabidopsis (), the flowering time regulator FY is the homolog of WDR33. However, its role in mRNA polyadenylation is poorly understood. Using poly(A) tag sequencing, we found that >50% of alternative polyadenylation (APA) events are altered in single mutants or double mutants with (a null mutant of ), but mutation of the FY WD40-repeat has a stronger effect than deletion of the plant-unique Pro-Pro-Leu-Pro-Pro (PPLPP) domain. mutations disrupt AAUAAA or AAUAAA-like poly(A) signal recognition. Notably, A-rich signal usage is suppressed in the WD40-repeat mutation but promoted in PPLPP-domain deficiency. However, mutations do not aggravate the altered signal usage in Furthermore, the WD40-repeat mutation shows a preference for 3' untranslated region shortening, but the PPLPP-domain deficiency shows a preference for lengthening. Interestingly, the WD40-repeat mutant exhibits shortened primary roots and late flowering with alteration of APA of related genes. Importantly, the long transcripts of two APA genes affected in are related to abiotic stress responses. These results reveal a conserved and specific role of FY in mRNA polyadenylation.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6790095PMC
http://dx.doi.org/10.1105/tpc.18.00545DOI Listing

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