Page 151 - Read Online
P. 151
Cai et al. Extracell Vesicles Circ Nucleic Acids 2023;4:262-82 https://dx.doi.org/10.20517/evcna.2023.10 Page 17
exosome marker proteins. FEBS Lett 2009;583:3363-6. DOI PubMed
33. Boccia E, Alfieri M, Belvedere R, et al. Plant hairy roots for the production of extracellular vesicles with antitumor bioactivity.
Commun Biol 2022;5:848. DOI PubMed PMC
34. De Palma M, Ambrosone A, Leone A, et al. Plant roots release small extracellular vesicles with antifungal activity. Plants
2020;9:1777. DOI PubMed PMC
35. Cai Q, He B, Weiberg A, Buck AH, Jin H. Small RNAs and extracellular vesicles: new mechanisms of cross-species communication
and innovative tools for disease control. PLoS Pathog 2019;15:e1008090. DOI PubMed PMC
36. Cai Q, He B, Jin H. A safe ride in extracellular vesicles - small RNA trafficking between plant hosts and pathogens. Curr Opin Plant
Biol 2019;52:140-8. DOI PubMed
37. Huang CY, Wang H, Hu P, Hamby R, Jin H. Small RNAs - big players in plant-microbe interactions. Cell Host Microbe
2019;26:173-82. DOI PubMed
38. Cai Q, He B, Kogel KH, Jin H. Cross-kingdom RNA trafficking and environmental RNAi-nature's blueprint for modern crop
protection strategies. Curr Opin Microbiol 2018;46:58-64. DOI PubMed PMC
39. Wang M, Thomas N, Jin H. Cross-kingdom RNA trafficking and environmental RNAi for powerful innovative pre- and post-harvest
plant protection. Curr Opin Plant Biol 2017;38:133-41. DOI PubMed PMC
40. Knip M, Constantin ME, Thordal-Christensen H. Trans-kingdom cross-talk: small RNAs on the move. Plos Genetics
2014;10:e1004602. DOI PubMed PMC
41. Wang M, Dean RA. Movement of small RNAs in and between plants and fungi. Mol Plant Pathol 2020;21:589-601. DOI PubMed
PMC
42. Buck AH, Coakley G, Simbari F, et al. Exosomes secreted by nematode parasites transfer small RNAs to mammalian cells and
modulate innate immunity. Nat Commun 2014;5:5488. DOI PubMed PMC
43. Hou Y, Zhai Y, Feng L, et al. A phytophthora effector suppresses trans-kingdom RNAi to promote disease susceptibility. Cell Host
Microbe 2019;25:153-165.e5. DOI PubMed PMC
44. Liu S, da Cunha AP, Rezende RM, et al. The host shapes the gut microbiota via fecal microRNA. Cell Host Microbe 2016;19:32-43.
DOI PubMed PMC
45. Cai Q, He B, Wang S, et al. Message in a bubble: shuttling small rnas and proteins between cells and interacting organisms using
extracellular vesicles. Annu Rev Plant Biol 2021;72:497-524. DOI PubMed PMC
46. Choi JW, Kim SC, Hong SH, Lee HJ. Secretable small rnas via outer membrane vesicles in periodontal pathogens. J Dent Res
2017;96:458-66. DOI PubMed
47. Costa JH, Bazioli JM, Barbosa LD, et al. Phytotoxic tryptoquialanines produced in vivo by penicillium digitatum are exported in
extracellular vesicles. mBio 2021:12. DOI PubMed PMC
48. Wang Z, Zeng J, Deng J, et al. Pathogen-derived extracellular vesicles: emerging mediators of plant-microbe interactions. Mol Plant
Microbe Interact 2023;36:218-27. DOI
49. Garcia-Ceron D, Lowe RGT, McKenna JA, et al. Extracellular vesicles from fusarium graminearum contain protein effectors
expressed during infection of corn. J Fungi 2021;7:977. DOI PubMed PMC
50. Hill EH, Solomon PS. Extracellular vesicles from the apoplastic fungal wheat pathogen Zymoseptoria tritici. Fungal Biol Biotechnol
2020;7:13. DOI PubMed PMC
51. Bleackley MR, Samuel M, Garcia-Ceron D, et al. Extracellular vesicles from the cotton pathogen fusarium oxysporum f. sp.
vasinfectum induce a phytotoxic response in plants. Front Plant Sci 2019;10:1610. DOI PubMed PMC
52. Fang Y, Wang Z, Zhang S, Peng Q, Liu X. Characterization and proteome analysis of the extracellular vesicles of phytophthora
capsici. J Proteomics 2021;238:104137. DOI
53. Wang Y, Wang Y, Wang Y. Apoplastic proteases: powerful weapons against pathogen infection in plants. Plant Commun
2020;1:100085. DOI PubMed PMC
54. Delaunois B, Colby T, Belloy N, et al. Large-scale proteomic analysis of the grapevine leaf apoplastic fluid reveals mainly stress-
related proteins and cell wall modifying enzymes. BMC Plant Biol 2013;13:24. DOI PubMed PMC
55. Roth R, Hillmer S, Funaya C, et al. Arbuscular cell invasion coincides with extracellular vesicles and membrane tubules. Nat Plants
2019;5:204-11. DOI
56. He B, Cai Q, Qiao L, et al. RNA-binding proteins contribute to small RNA loading in plant extracellular vesicles. Nat Plants
2021;7:342-52. DOI PubMed PMC
57. Regente M, Pinedo M, San Clemente H, Balliau T, Jamet E, de la Canal L. Plant extracellular vesicles are incorporated by a fungal
pathogen and inhibit its growth. J Exp Bot 2017;68:5485-95. DOI PubMed
58. Prado N, De Linares C, Sanz ML, et al. Pollensomes as natural vehicles for pollen allergens. J Immunol 2015;195:445-9. DOI
59. Prado N, Alché Jde D, Casado-Vela J, et al. Nanovesicles are secreted during pollen germination and pollen tube growth: a possible
role in fertilization. Mol Plant 2014;7:573-7. DOI
60. Movahed N, Cabanillas DG, Wan J, Vali H, Laliberté JF, Zheng H. Turnip mosaic virus components are released into the
extracellular space by vesicles in infected leaves. Plant Physiol 2019;180:1375-88. DOI PubMed PMC
61. Kowal J, Arras G, Colombo M, et al. Proteomic comparison defines novel markers to characterize heterogeneous populations of
extracellular vesicle subtypes. Proc Natl Acad Sci USA 2016;113:E968-77. DOI PubMed PMC
62. Gurunathan S, Kang MH, Qasim M, Khan K, Kim JH. Biogenesis, membrane trafficking, functions, and next generation

