Literature DB >> 29300014

MicroRNAs from the parasitic plant Cuscuta campestris target host messenger RNAs.

Saima Shahid1,2, Gunjune Kim3, Nathan R Johnson1,2, Eric Wafula2, Feng Wang1,2, Ceyda Coruh1,2, Vivian Bernal-Galeano3, Tamia Phifer4, Claude W dePamphilis1,2, James H Westwood3, Michael J Axtell1,2.   

Abstract

Dodders (Cuscuta spp.) are obligate parasitic plants that obtain water and nutrients from the stems of host plants via specialized feeding structures called haustoria. Dodder haustoria facilitate bidirectional movement of viruses, proteins and mRNAs between host and parasite, but the functional effects of these movements are not known. Here we show that Cuscuta campestris haustoria accumulate high levels of many novel microRNAs (miRNAs) while parasitizing Arabidopsis thaliana. Many of these miRNAs are 22 nucleotides in length. Plant miRNAs of this length are uncommon, and are associated with amplification of target silencing through secondary short interfering RNA (siRNA) production. Several A. thaliana mRNAs are targeted by 22-nucleotide C. campestris miRNAs during parasitism, resulting in mRNA cleavage, secondary siRNA production, and decreased mRNA accumulation. Hosts with mutations in two of the loci that encode target mRNAs supported significantly higher growth of C. campestris. The same miRNAs that are expressed and active when C. campestris parasitizes A. thaliana are also expressed and active when it infects Nicotiana benthamiana. Homologues of target mRNAs from many other plant species also contain the predicted target sites for the induced C. campestris miRNAs. These data show that C. campestris miRNAs act as trans-species regulators of host-gene expression, and suggest that they may act as virulence factors during parasitism.

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Year:  2018        PMID: 29300014     DOI: 10.1038/nature25027

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  37 in total

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Authors:  Gunjune Kim; James H Westwood
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3.  Plant science. Genomic-scale exchange of mRNA between a parasitic plant and its hosts.

Authors:  Gunjune Kim; Megan L LeBlanc; Eric K Wafula; Claude W dePamphilis; James H Westwood
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Review 4.  PhasiRNAs in Plants: Their Biogenesis, Genic Sources, and Roles in Stress Responses, Development, and Reproduction.

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