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1. Heat stress promotes Arabidopsis AGO1 phase separation and association with stress granule components

2. TYMV and TRV infect Arabidopsis thaliana by expressing weak suppressors of RNA silencing and inducing host RNASE THREE LIKE1.

3. Contrasting epigenetic control of transgenes and endogenous genes promotes post-transcriptional transgene silencing in Arabidopsis

4. NADPH Oxidase-Mediated Reactive Oxygen Species Production: Subcellular Localization and Reassessment of Its Role in Plant Defense

5. RNA silencing is resistant to low-temperature in grapevine.

6. RDR2 partially antagonizes the production of RDR6-dependent siRNA in sense transgene-mediated PTGS.

7. Redundant and specific roles of the ARGONAUTE proteins AGO1 and ZLL in development and small RNA-directed gene silencing.

8. SINE RNA induces severe developmental defects in Arabidopsis thaliana and interacts with HYL1 (DRB1), a key member of the DCL1 complex.

9. Contrasting epigenetic control of transgenes and endogenous genes promotes post-transcriptional transgene silencing in Arabidopsis

10. Overexpression of ATG8 in Arabidopsis Stimulates Autophagic Activity and Increases Nitrogen Remobilization Efficiency and Grain Filling

11. sgs1: a neomorphic nac52 allele impairing post-transcriptional gene silencing through SGS3 downregulation

12. Gene editing: Edited plants should not be patented

13. Edited plants should not be patented

14. Cytoplasmic Arabidopsis AGO7 accumulates in membrane-associated siRNA bodies and is required for ta-siRNA biogenesis

15. A neomorphic sgs3 allele stabilizing miRNA cleavage products reveals that SGS3 acts as a homodimer

16. MicroRNA maturation and action—the expanding roles of ARGONAUTEs

17. Second-Site Mutagenesis of a Hypomorphic argonaute1 Allele Identifies SUPERKILLER3 as an Endogenous Suppressor of Transgene Posttranscriptional Gene Silencing

18. Respective contributions of Arabidopsis DCL2 and DCL4 to RNA silencing

19. Arabidopsis RPA2: A Genetic Link among Transcriptional Gene Silencing, DNA Repair, and DNA Replication

20. Rac regulation of NtrbohD, the oxidase responsible for the oxidative burst in elicited tobacco cell

21. Cloning of Rac and Rho-GDI from tobacco using an heterologous two-hybrid screen*1*The first two authors contributed equally to this work

22. Transgene-induced gene silencing in plants

23. [Untitled]

24. Requirement of sense transcription for homology‐dependent virus resistance and trans‐ inactivation

25. [Untitled]

26. RNA silencing is resistant to low-temperature in grapevine

27. In situ detection of expression of thegus reporter gene in transgenic plants: ten years of blue genes

28. RDR2 Partially Antagonizes the Production of RDR6-Dependent siRNA in Sense Transgene-Mediated PTGS

29. Mutations in the Arabidopsis H3K4me2/3 Demethylase JMJ14 Suppress Posttranscriptional Gene Silencing by Decreasing Transgene Transcription

30. Synthesis of a bifunctional metallothionein/beta-glucuronidase fusion protein in transgenic tobacco plants as a means of reducing leaf cadmium levels

31. The Conserved RNA Trafficking Proteins HPR1 and TEX1 Are Involved in the Production of Endogenous and Exogenous Small Interfering RNA in Arabidopsis[C][W]

32. A neomorphic sgs3 allele stabilizing miRNA cleavage products reveals that SGS3 acts as a homodimer

33. SINE RNA Induces Severe Developmental Defects in Arabidopsis thaliana and Interacts with HYL1 (DRB1), a Key Member of the DCL1 Complex

34. Regulation of reactive oxygen species production by a 14-3-3 protein in elicited tobacco cells

35. DRB4-dependent TAS3 trans-acting siRNAs control leaf morphology through AGO7

36. The plasma membrane oxidase NtrbohD is responsible for AOS production in elicited tobacco cells

37. Arabidopsis SGS2 and SGS3 genes are required for posttranscriptional gene silencing and natural virus resistance

38. The fungal elicitor cryptogein induces cell wall modifications on tobacco cell suspension

39. Flank matrix attachment regions (MARs) from chicken, bean, yeast or tobacco do not prevent homology-dependent trans-silencing in transgenic tobacco plants

40. Arabidopsis mutants impaired in cosuppression

41. Systemic acquired silencing: transgene-specific post-transcriptional silencing is transmitted by grafting from silenced stocks to non-silenced scions

42. A Transcriptionally Active State Is Required for Post-Transcriptional Silencing (Cosuppression) of Nitrate Reductase Host Genes and Transgenes

43. Expression of single copies of a strongly expressed 35S transgene can be silenced post-transcriptionally

44. Frequencies, timing, and spatial patterns of co-suppression of nitrate reductase and nitrite reductase in transgenic tobacco plants

45. Evaluation in tobacco of the organ specificity and strength of the rolD promoter, domain A of the 35S promoter and the 35S2 promoter

46. Molecular and genetic analysis of nitrite reductase co-suppression in transgenic tobacco plants

47. Caractérisation d'un complexe chromatinien impliqué dans l'inactivation post-transcriptionnelle des ARNs

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