DOI: 10.1111/ppl.71125 ISSN: 0031-9317
Characterization of
GSI
and
UI
in
Solanum chilense
and Its Hybrids With
S. lyc
Pauline Moreels, Servane Bigot, Corentin Defalque, Marie Eve Renard, Juan Pablo Martinez, Stanley Lutts, Muriel Quinet ABSTRACT
Reproductive barriers in wild tomato relatives limit the introgression of valuable stress‐resistance traits into cultivated tomato, yet the molecular mechanisms governing these barriers in
Solanum chilense
remain poorly understood compared to model species like
Nicotiana alata
or
Solanum pennellii
. This study aimed to characterize the phenotypic and transcriptional architecture of gametophytic self‐incompatibility and unilateral incompatibility in
Solanum chilense
and its interspecific hybrids with
Solanum lycopersicum
. We combined phenotypic assays of pollen tube growth and fruit set with quantitative gene expression profiling of candidate pistil‐side factors across developmental stages and cross‐types, supplemented by comparative genomic mapping. We found that the pistil's species identity, rather than compatibility status, was the primary driver of transcriptional variation, indicating a dominant genotype‐specific background effect. Expression of the
PELPIII‐120K‐TTSL‐TTSR
gene cluster and
HT‐A
correlated strongly with barrier strength, while hybrids displayed a partial breakdown of incompatibility linked to altered expression balance. These results demonstrate that reproductive isolation in
Solanum chilense
relies on a complex, genotype‐specific regulatory network rather than universal factors. This insight refines our understanding of plant reproductive evolution and identifies specific molecular targets to overcome hybridization bottlenecks for crop improvement.