Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Hydrolyzable tannins (HTs), predominant polyphenols in oaks, are widely used in grape wine aging, feed additives, and human healthcare. However, the limited availability of a high-quality reference genome of oaks greatly hampered the recognition of the mechanism of HT biosynthesis. Here, high-quality reference genomes of three Asian oak species (Quercus variabilis, Quercus aliena, and Quercus dentata) that have different HT contents were generated. Multi-omics studies were carried out to identify key genes regulating HT biosynthesis. In vitro enzyme activity assay was also conducted. Dual-luciferase and yeast one-hybrid assays were used to reveal the transcriptional regulation. Our results revealed that β-glucogallin was a biochemical marker for HT production in the cupules of the three Asian oaks. UGT84A13 was confirmed as the key enzyme for β-glucogallin biosynthesis. The differential expression of UGT84A13, rather than enzyme activity, was the main reason for different β-glucogallin and HT accumulation. Notably, sequence variations in UGT84A13 promoters led to different trans-activating activities of WRKY32/59, explaining the different expression patterns of UGT84A13 among the three species. Our findings provide three high-quality new reference genomes for oak trees and give new insights into different transcriptional regulation for understanding β-glucogallin and HT biosynthesis in closely related oak species.

Download full-text PDF

Source
http://dx.doi.org/10.1111/nph.19711DOI Listing

Publication Analysis

Top Keywords

oak species
12
high-quality reference
12
reference genomes
8
three asian
8
enzyme activity
8
transcriptional regulation
8
β-glucogallin biosynthesis
8
biosynthesis
5
β-glucogallin
5
genomic basis
4

Similar Publications

Somatic embryogenesis (SE) is an in vitro mass propagation system widely employed in plant breeding programs. However, its efficiency in many forest species remains limited due to their recalcitrance. SE relies on the induction of somatic cell reprogramming into embryogenic pathways, a process influenced by transcriptomic changes regulated, among other factors, by epigenetic modifications such as DNA methylation, histone methylation, and histone acetylation.

View Article and Find Full Text PDF

A foliar disease of invasive black swallow-wort () caused by .

Plant Dis

September 2025

USDA-ARS Foreign Disease-Weed Science Research Unit, 1301 Ditto Ave., Fort Detrick, Maryland, United States, 21702;

Black swallow-wort () is an aggressive invasive vine infesting pastures and fields in the northeastern United States. An unknown fungal pathogen was recovered from foliar lesions occurring on black swallow-wort at two locations in Rhode Island in 2022 and was identified as based on morphological and molecular descriptions of eight isolates. The potential weed biological control value of a single isolate, FDWSRU 22-216, was evaluated through colonized agar block and conidial spray inoculations of black swallow-wort.

View Article and Find Full Text PDF

As a result of long-term field work in subtropical Texas, USA, three novel genera and three new species are introduced in Pezizomycotina to accommodate new or previously described taxa lacking DNA sequence data. In the Dothideomycetes, , gen. nov.

View Article and Find Full Text PDF

Introduction: Compared to the large number of chloroplast genome resources in , only six mitogenomes (belonging to three sections) have been reported. To date, no mitogenome has been reported for section , a representative species whose chloroplast genome has been characterized, is an endangered tree endemic to the montane cloud forests of southern China.

Methods: In this study, we assembled and annotated the mitogenome of section () for the first time using the HiFi reads.

View Article and Find Full Text PDF

(), a New Species from Oak ( spp.) Growing in Algeria.

Mycobiology

August 2025

Laboratoire de Biologie des Systèmes Microbiens (LBSM), Ecole Normale Supérieure de Kouba Echeikh Mohamed Elbachir Elibrahimi, Algiers, Algeria.

is a cosmopolitan and diverse genus of filamentous fungi, commonly isolated from soil and plant material, with several species recognized as opportunistic pathogens in both plants and humans. In this study, a novel species, sp. nov.

View Article and Find Full Text PDF