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Three-dimensional imaging reveals that positions of cyst nematode feeding sites relative to xylem vessels differ between susceptible and resistant wheat

Authors :
Matthew R. Tucker
Kara A. Levin
Christopher F. Strock
Diane E. Mather
Jonathan P. Lynch
Source :
Plant Cell Reports. 40:393-403
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

Resistance conferred by the Cre8 locus of wheat prevents cereal cyst nematode feeding sites from reaching and invading root metaxylem vessels. Cyst nematodes develop syncytial feeding sites within plant roots. The success of these sites is affected by host plant resistance. In wheat (Triticum aestivum L.), ‘Cre’ loci affect resistance against the cereal cyst nematode (CCN) Heterodera avenae. To investigate how one of these loci (Cre8, on chromosome 6B) confers resistance, CCN-infected root tissue from susceptible (−Cre8) and resistant (+Cre8) wheat plants was examined using confocal microscopy and laser ablation tomography. Confocal analysis of transverse sections showed that feeding sites in the roots of −Cre8 plants were always adjacent to metaxylem vessels, contained many intricate ‘web-like’ cell walls, and sometimes ‘invaded’ metaxylem vessels. In contrast, feeding sites in the roots of +Cre8 plants were usually not directly adjacent to metaxylem vessels, had few inner cell walls and did not ‘invade’ metaxylem vessels. Models based on data from laser ablation tomography confirmed these observations. Confocal analysis of longitudinal sections revealed that CCN-induced xylem modification that had previously been reported for susceptible (−Cre8) wheat plants is less extreme in resistant (+Cre8) plants. Application of a lignin-specific stain revealed that secondary thickening around xylem vessels in CCN-infected roots was greater in +Cre8 plants than in −Cre8 plants. Collectively, these results indicate that Cre8 resistance in wheat acts by preventing cyst nematode feeding sites from reaching and invading root metaxylem vessels.

Details

ISSN :
1432203X and 07217714
Volume :
40
Database :
OpenAIRE
Journal :
Plant Cell Reports
Accession number :
edsair.doi...........1d3766f7582a4a73ce2aa89113433050
Full Text :
https://doi.org/10.1007/s00299-020-02641-w