Morphological and genetic characterization of a new cytoplasmic male sterility system (oxa CMS) in stem mustard (Brassica juncea)
Key message oxa CMS is a new cytoplasmic male sterility type in Brassica juncea . oxa CMS is a cytoplasmic male sterility (CMS) line that has been widely used in the production and cultivation of stem mustard in the southwestern China. In this study, different CMS-type specific mitochondrial markers...
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Veröffentlicht in: | Theoretical and applied genetics 2018-01, Vol.131 (1), p.59-66 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Key message
oxa
CMS is a new cytoplasmic male sterility type in
Brassica juncea
.
oxa
CMS is a cytoplasmic male sterility (CMS) line that has been widely used in the production and cultivation of stem mustard in the southwestern China. In this study, different CMS-type specific mitochondrial markers were used to confirm that
oxa
CMS is distinct from the
pol
CMS,
ogu
CMS,
nap
CMS,
hau
CMS,
tour
CMS,
Moricandia arvensis
CMS,
orf220
-type CMS, etc., that have been previously reported in
Brassica
crops. Pollen grains of the
oxa
CMS line are sterile with a self-fertility rate of almost 0% and the sterility strain rate and sterility degree of
oxa
CMS is 100% due to a specific flower structure and flowering habit. Scanning electron microscopy revealed that most pollen grains in mature anthers of the
oxa
CMS line are empty, flat and deflated. Semi-thin section further showed that the abortive stage of anther development in
oxa
CMS is initiated at the late uninucleate stage. Abnormally vacuolated microspores caused male sterility in the
oxa
CMS line. This cytological study combined with marker-assisted selection showed that
oxa
CMS is a novel CMS type in stem mustard (
Brassica juncea
). Interestingly, the abortive stage of
oxa
CMS is later than those in other CMS types reported in
Brassica
crops, and there is no negative effect on the
oxa
CMS line growth period. This study demonstrated that this novel
oxa
CMS has a unique flower structure with sterile pollen grains at the late uninucleate stage. Our results may help to uncover the mechanism of
oxa
CMS in
Brassica juncea
. |
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ISSN: | 0040-5752 1432-2242 |
DOI: | 10.1007/s00122-017-2985-2 |