Integration of nematode-responsive regulatory sequences from Arabidopsis thaliana into nematode control strategies

Author(s):  
N. Barthels ◽  
M. Karimi ◽  
I. Vercauteren ◽  
M. Van Montagu ◽  
G. Gheysen
Agronomy ◽  
2020 ◽  
Vol 10 (9) ◽  
pp. 1387
Author(s):  
Yuji Oka

The phaseout of methyl bromide and the ban on, or withdrawal of, other toxic soil fumigants and non-fumigant nematicides belonging to the organophosphate and carbamate groups are leading to changes in nematode-control strategies. Sustainable nematode-control methods are available and preferred, but not always effective enough, especially for cash crops in intensive agriculture. A few non-fumigant nematicides, which have a relatively high control efficacy with a low toxicity to non-target organisms, have been released to the market or are in the process of being registered for use. Fluensulfone, fluopyram, and fluazaindolizine are the three main and most promising next-generation nematicides. In this paper, several aspects of these non-fumigant nematicides are reviewed, along with a brief history and problems of old-generation nematicides.


PLoS ONE ◽  
2020 ◽  
Vol 15 (8) ◽  
pp. e0236143
Author(s):  
Charlotte L. Kerr ◽  
David R. Armstrong ◽  
Alison J. Anderson

Plants ◽  
2020 ◽  
Vol 9 (12) ◽  
pp. 1751
Author(s):  
Yichao Li ◽  
Maxwell Mullin ◽  
Yingnan Zhang ◽  
Frank Drews ◽  
Lonnie R. Welch ◽  
...  

Hydroxyproline-rich glycoproteins (HRGPs) are a superfamily of plant cell wall structural proteins that function in various aspects of plant growth and development, including pollen tube growth. We have previously characterized protein sequence signatures for three family members in the HRGP superfamily: the hyperglycosylated arabinogalactan-proteins (AGPs), the moderately glycosylated extensins (EXTs), and the lightly glycosylated proline-rich proteins (PRPs). However, the mechanism of pollen-specific HRGP gene expression remains unexplored. To this end, we developed an integrative analysis pipeline combining RNA-seq gene expression and promoter sequences to identify cis-regulatory motifs responsible for pollen-specific expression of HRGP genes in Arabidopsis thaliana. Specifically, we mined the public RNA-seq datasets and identified 13 pollen-specific HRGP genes. Ensemble motif discovery identified 15 conserved promoter elements between A.thaliana and A. lyrata. Motif scanning revealed two pollen related transcription factors: GATA12 and brassinosteroid (BR) signaling pathway regulator BZR1. Finally, we performed a regression analysis and demonstrated that the 15 motifs provided a good model of HRGP gene expression in pollen (R = 0.61). In conclusion, we performed the first integrative analysis of cis-regulatory motifs in pollen-specific HRGP genes, revealing important insights into transcriptional regulation in pollen tissue.


1994 ◽  
Vol 13-13 (3-4) ◽  
Author(s):  
Chokchai Intapruk ◽  
Keiji Yamamoto ◽  
Masami Sekine ◽  
Mitsuo Takano ◽  
Atsuhiko Shinmyo

2015 ◽  
Vol 112 (27) ◽  
pp. E3485-E3494 ◽  
Author(s):  
Joseph A. Liberman ◽  
Krishna C. Suddala ◽  
Asaminew Aytenfisu ◽  
Dalen Chan ◽  
Ivan A. Belashov ◽  
...  

PreQ1-III riboswitches are newly identified RNA elements that control bacterial genes in response to preQ1 (7-aminomethyl-7-deazaguanine), a precursor to the essential hypermodified tRNA base queuosine. Although numerous riboswitches fold as H-type or HLout-type pseudoknots that integrate ligand-binding and regulatory sequences within a single folded domain, the preQ1-III riboswitch aptamer forms a HLout-type pseudoknot that does not appear to incorporate its ribosome-binding site (RBS). To understand how this unusual organization confers function, we determined the crystal structure of the class III preQ1 riboswitch from Faecalibacterium prausnitzii at 2.75 Å resolution. PreQ1 binds tightly (KD,app 6.5 ± 0.5 nM) between helices P1 and P2 of a three-way helical junction wherein the third helix, P4, projects orthogonally from the ligand-binding pocket, exposing its stem-loop to base pair with the 3′ RBS. Biochemical analysis, computational modeling, and single-molecule FRET imaging demonstrated that preQ1 enhances P4 reorientation toward P1–P2, promoting a partially nested, H-type pseudoknot in which the RBS undergoes rapid docking (kdock ∼0.6 s−1) and undocking (kundock ∼1.1 s−1). Discovery of such dynamic conformational switching provides insight into how a riboswitch with bipartite architecture uses dynamics to modulate expression platform accessibility, thus expanding the known repertoire of gene control strategies used by regulatory RNAs.


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