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Generation of Transgenic Self-Incompatible Arabidopsis thaliana Shows a Genus-Specific Preference for Self-Incompatibility Genes.

Authors :
Zhang, Tong
Zhou, Guilong
Goring, Daphne R.
Liang, Xiaomei
Macgregor, Stuart
Dai, Cheng
Wen, Jing
Yi, Bin
Shen, Jinxiong
Tu, Jinxing
Fu, Tingdong
Ma, Chaozhi
Source :
Plants (2223-7747); Dec2019, Vol. 8 Issue 12, p570, 1p
Publication Year :
2019

Abstract

Brassicaceae species employ both self-compatibility and self-incompatibility systems to regulate post-pollination events. Arabidopsis halleri is strictly self-incompatible, while the closely related Arabidopsis thaliana has transitioned to self-compatibility with the loss of functional S-locus genes during evolution. The downstream signaling protein, ARC1, is also required for the self-incompatibility response in some Arabidopsis and Brassica species, and its gene is deleted in the A. thaliana genome. In this study, we attempted to reconstitute the SCR-SRK-ARC1 signaling pathway to restore self-incompatibility in A. thaliana using genes from A. halleri and B. napus, respectively. Several of the transgenic A. thaliana lines expressing the A. halleriSCR<subscript>13</subscript>-SRK<subscript>13</subscript>-ARC1 transgenes displayed self-incompatibility, while all the transgenic A. thaliana lines expressing the B. napusSCR<subscript>1</subscript>-SRK<subscript>1</subscript>-ARC1 transgenes failed to show any self-pollen rejection. Furthermore, our results showed that the intensity of the self-incompatibility response in transgenic A. thaliana plants was not associated with the expression levels of the transgenes. Thus, this suggests that there are differences between the Arabidopsis and Brassica self-incompatibility signaling pathways, which perhaps points to the existence of other factors downstream of B. napusSRK that are absent in Arabidopsis species. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
22237747
Volume :
8
Issue :
12
Database :
Complementary Index
Journal :
Plants (2223-7747)
Publication Type :
Academic Journal
Accession number :
140431454
Full Text :
https://doi.org/10.3390/plants8120570