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Integration of semi- assays and multi-omics data reveals the effect of galloylated catechins on self-pollen tube inhibition in . | LitMetric

Integration of semi- assays and multi-omics data reveals the effect of galloylated catechins on self-pollen tube inhibition in .

Hortic Res

Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees of the Ministry of Education and Key Laboratory of Non-Wood Forest Products of the Forestry Ministry, Central South University of Forestry and Technology, Changsha, Hunan 410004, China.

Published: January 2023

oil extracted from the seeds of Abel. is a popular and high-quality edible oil, but its yield is limited by seed setting, which is mainly caused by self-incompatibility (SI). One of the obvious biological features of SI plants is the inhibition of self-pollen tubes; however, the underlying mechanism of this inhibition in is poorly understood. In this study, we constructed a semi- pollen tube growth test (SIV-PGT) system that can screen for substances that inhibit self-pollen tubes without interference from the genetic background. Combined with multi-omics analysis, the results revealed the important role of galloylated catechins in self-pollen tube inhibition, and a possible molecular regulatory network mediated by () and () was proposed. In summary, galloylation of catechins and high levels of galloylated catechins are specifically involved in pollen tube inhibition under self-pollination rather than cross-pollination, which provides a new understanding of SI in . These results will contribute to sexual reproduction research on and provide theoretical support for improving oil yield in production.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9832949PMC
http://dx.doi.org/10.1093/hr/uhac248DOI Listing

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