Exosomes in the phloem and xylem of woody plants

被引:29
|
作者
Chukhchin, Dmitry G. [1 ]
Bolotova, Ksenia [1 ]
Sinelnikov, Igor [2 ]
Churilov, Dmitry [1 ]
Novozhilov, Evgeniy [1 ]
机构
[1] Northern Arctic Fed Univ, Northern Dvina Embankment 17, Arkhangelsk 163000, Russia
[2] Russian Acad Sci, Fed State Inst, Fed Res Ctr Fundamentals Biotechnol, Leninsky Prospect 33,Build 2, Moscow 119071, Russia
关键词
Cryomechanical destruction; Endo-1,4-beta-glucanase; Extracellular vesicles; Pit formation; Cell wall remodeling; Scanning electron microscopy; SECONDARY CELL-WALL; EXTRACELLULAR VESICLES; ARABIDOPSIS-THALIANA; CATALYTIC MECHANISM; PIT MEMBRANES; BORDERED-PIT; GROWTH; BIOSYNTHESIS; EXPRESSION; ENDO-BETA-1,4-GLUCANASES;
D O I
10.1007/s00425-019-03315-y
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Knowledge of plant extracellular vesicles (EVs) is limited by their presence in the apoplastic fluid of seeds and leaves. The contents of plant EVs and their biological functions are unclear. The aim of the present study was to expand our knowledge of EVs in woody plants. Sample splits were prepared from branch and stem samples from angiosperms and gymnosperms after cryomechanical destruction with liquid nitrogen. The study methods included scanning electron (SEM), atomic force microscopy (AFM), endoglucanase activity measurement. EVs visualized on the internal layers of the cell walls proved to be exosomes according to their diameter (65-145 nm). SEM revealed cup-shaped structures characteristic of exosomes in a dry state. Plant exosomes in the form of globules in the native state were visualized for the first time by AFM. Exosomes were present both in the active and dormant cambium. Erosion zones were observed at the sites of exosome localization. The activity of endo-1,4-beta-glucanase was detected in Picea xylem, while the RNA level was very low, suggesting that endo-1,4-beta-glucanases were preserved in the exosomes. There are grounds to assert that endo-1,4-beta-glucanases delivered by exosomes participated in pit cavity formation in the S-1 layer of xylary fibres. A possible mechanism of endo-1,4-beta-glucanase action in the biosynthesis of the secondary wall is proposed. These results demonstrate that the physiological role of the exosomes in the phloem and xylem is the storage and transport of endo-1,4-beta-glucanases participating in cell wall remodeling in woody plants. Present study expands our knowledge about plant exosomes.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] N content of phloem and xylem exudates during the transition to flowering in Sinapis alba and Arabidopsis thaliana
    Corbesier, L
    Havelange, A
    Lejeune, P
    Bernier, G
    Périlleux, C
    PLANT CELL AND ENVIRONMENT, 2001, 24 (03) : 367 - 375
  • [32] Plasticity in variation of xylem and phloem cell characteristics of Norway spruce under different local conditions
    Gricar, Jozica
    Prislan, Peter
    de Luis, Martin
    Gryc, Vladimir
    Hacurova, Jana
    Vavrcik, Hanus
    Cufar, Katarina
    FRONTIERS IN PLANT SCIENCE, 2015, 6
  • [33] Lignin Composition and Structure Differs between Xylem, Phloem and Phellem in Quercus suber L.
    Lourenco, Ana
    Rencoret, Jorge
    Chemetova, Catarina
    Gominho, Jorge
    Gutierrez, Ana
    del Rio, Jose C.
    Pereira, Helena
    FRONTIERS IN PLANT SCIENCE, 2016, 7
  • [34] Enhancement of secondary xylem cell proliferation by Arabidopsis cyclin D overexpression in tobacco plants
    Fujii, Takeo
    Sato, Kanna
    Matsui, Noriko
    Furuichi, Takayuki
    Takenouchi, Sachi
    Nishikubo, Nobuyuki
    Suzuki, Yuzo
    Kawai, Shinya
    Demura, Taku
    Kajita, Shinya
    Katayama, Yoshihiro
    PLANT CELL REPORTS, 2012, 31 (09) : 1573 - 1580
  • [35] Populus NST/SND orthologs are key regulators of secondary cell wall formation in wood fibers, phloem fibers and xylem ray parenchyma cells
    Takata, Naoki
    Awano, Tatsuya
    Nakata, Miyuki T.
    Sano, Yuzou
    Sakamoto, Shingo
    Mitsuda, Nobutaka
    Taniguchi, Toru
    TREE PHYSIOLOGY, 2019, 39 (04) : 514 - 525
  • [36] Method for Assessing the Gas Resistance of Woody Plants
    Yushkov, A. N.
    Borzykh, N. V.
    Saveleva, N. N.
    Zemisov, A. S.
    Chivilev, V. V.
    Bogdanov, R. E.
    JOURNAL OF APPLIED SPECTROSCOPY, 2024, 90 (06) : 1255 - 1258
  • [37] The amino acid distribution in rachis xylem sap and phloem exudate of Vitis vinifera 'Cabernet Sauvignon' bunches
    Gourieroux, Aude M.
    Holzapfel, Bruno P.
    Scollary, Geoffrey R.
    McCully, Margaret E.
    Canny, Martin J.
    Rogiers, Suzy Y.
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2016, 105 : 45 - 54
  • [38] Addressing the UN sustainable development goals of woody plants through genetic engineering
    Urrea-Lopez, Rafael
    Gatica-Arias, Andres
    PLANT CELL TISSUE AND ORGAN CULTURE, 2024, 158 (03)
  • [39] Similarities and differences in the balances between leaf, xylem and phloem structures in Fraxinus ornus along an environmental gradient
    Kiorapostolou, Natasa
    Petit, Giai
    TREE PHYSIOLOGY, 2019, 39 (02) : 234 - 242
  • [40] BIOGENIC AND ANTHROPOGENIC MAGNETIC NANOPARTICLES IN THE PHLOEM SIEVE TUBES OF PLANTS
    Gorobets, Yurii
    Gorobets, Svitlana
    Gorobets, Oksana
    Magerman, Alyona
    Sharai, Irina
    JOURNAL OF MICROBIOLOGY BIOTECHNOLOGY AND FOOD SCIENCES, 2023, 12 (06):