Identification and characterization of the EXPA7, EXPA18 and EXT10 genes in Turbinicarpus lophophoroides (Werderm.) Buxb. & Backeb; and their expression analysis in the root under abiotic stress
Expansin and extensin are proteins involved in resistance to various abiotic stresses by processes of cell wall modification and in the formation and elongation of the hairy root. They are located in several organs of the plant included root epidermis. Turbinicarpus lophophoroides is a cactus model...
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Veröffentlicht in: | Molecular biology reports 2021-02, Vol.48 (2), p.1633-1644 |
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Sprache: | eng |
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Zusammenfassung: | Expansin and extensin are proteins involved in resistance to various abiotic stresses by processes of cell wall modification and in the formation and elongation of the hairy root. They are located in several organs of the plant included root epidermis.
Turbinicarpus lophophoroides
is a cactus model to studies these genes in adventitious and transformed roots. In this study, we identified and characterized the expansin7, expansin18 and extensin10 genes in
T. lophophoroides
. Bioinformatic analysis indicated that the expansin sequences contained the motifs: HTFYG, HFD, YRR, VPC and YW; and certain conserved cysteine (C) residues. Regarding extensin10, the sequence contains the conserved SPPPP (SP4), YYS and YV motifs. The expression analysis in adventitious and transformed roots under osmotic stress (300 mM mannitol), heat (37 °C) and cold (4 °C); shows a higher expression of
TlExpA18
in both roots, a decrease in
TlExpA7
in transformed roots and a null expression in
TlExt10
in both roots. In addition, a morphological comparison of the maturation/differentiation zone, meristem and cap between adventitious and transformed roots by SEM was performed, finding differences in the quantity and length of the hairy roots and the shape of the root cap. Overall, the study concluded that
TlExpA18
and
TlExpA7
belong to expansin family and
TlExt10
belong to extensin family. The expression characteristics of
TlExpA18
,
TlExpA7
and
TlExt10
will facilitate the investigation of its function in stress response and other physiological processes in
T. lophophoroides
. |
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ISSN: | 0301-4851 1573-4978 |
DOI: | 10.1007/s11033-021-06157-8 |