Yi‐He Yu

ORCID: 0000-0001-7240-7975
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About
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Research Areas
  • Horticultural and Viticultural Research
  • Plant Gene Expression Analysis
  • Fermentation and Sensory Analysis
  • Plant Pathogens and Fungal Diseases
  • Plant biochemistry and biosynthesis
  • Plant-Microbe Interactions and Immunity
  • Photosynthetic Processes and Mechanisms
  • Plant Stress Responses and Tolerance
  • Plant Molecular Biology Research
  • Plant Physiology and Cultivation Studies
  • Postharvest Quality and Shelf Life Management
  • Heat shock proteins research
  • Plant Reproductive Biology
  • Phytoplasmas and Hemiptera pathogens
  • Food Quality and Safety Studies
  • Plant Virus Research Studies
  • Insect and Pesticide Research
  • Meat and Animal Product Quality
  • Plant nutrient uptake and metabolism
  • Ubiquitin and proteasome pathways
  • Cocoa and Sweet Potato Agronomy
  • Plant and Fungal Interactions Research
  • Nuts composition and effects
  • Polysaccharides and Plant Cell Walls
  • Plant tissue culture and regeneration

Henan University of Science and Technology
2016-2025

University of Science and Technology Beijing
2024

University at Buffalo, State University of New York
2021

Ruhr University Bochum
2021

Kansas State University
2021

University of Kansas Medical Center
2021

Southern University of Science and Technology
2021

Freie Universität Berlin
2021

Enamine (Ukraine)
2021

Institute of Organic Chemistry
2021

Ubiquitin-mediated regulation responds rapidly to specific stimuli; this rapidity is particularly important for defense responses pathogen attack. Here, we investigated the role of E3 ubiquitin ligase Erysiphe necator-induced RING finger protein 1 (EIRP1) in response Chinese wild grapevine Vitis pseudoreticulata. The regulatory function EIRP1 was using molecular, genetic and biochemical approaches. encodes a C3HC4-type Really Interesting New Gene (RING) that harbors activity. This activity...

10.1111/nph.12418 article EN New Phytologist 2013-07-31

Abstract Background Studies have shown that HSP20 (heat-shock protein 20) genes play important roles in regulating plant growth, development, and stress response. However, the grape gene family has not been well studied. Results A total of 48 VvHSP20 were identified from genome, which divided into 11 subfamilies (CI, CII, CIII, CV, CVI, CVII, MI, MII, ER, CP PX/Po) based on a phylogenetic analysis subcellular localization. Further structural showed most (93.8%) had no intron or only one...

10.1186/s12870-019-2031-4 article EN cc-by BMC Plant Biology 2019-10-17

Deciphering the genetic control of grape berry traits is crucial for optimizing yield, fruit quality, and consumer acceptability. In this study, an association panel 179 genotypes comprising a mixture ancient cultivars, landraces, modern varieties collected worldwide were genotyped with genotyping-by-sequencing using genome-wide approach based on 32,311 single-nucleotide polymorphism (SNP) markers. Genome-wide efficient mixed-model was selected as optimal statistical model results known loci...

10.1038/s41438-018-0089-z article EN cc-by Horticulture Research 2018-12-31

High temperature influence flower bud differentiation in Physalis grisea, resulting the production of deformed fruits and affects fruit yield quality. However, molecular mechanisms underlying response P. grisea to heat stress (HS) remain unclear. In this study, HS treatment dynamic transcriptome analysis identified PgCDF2-PgHSFA1/PgHSFB3 transcriptional regulatory module as playing a key role HS. Gene Ontology (GO) enrichment analysis, regulation prediction, weighted correlation network...

10.1111/tpj.70008 article EN The Plant Journal 2025-03-01

Resveratrol is a naturally occurring plant stilbene that exhibits wide range of valuable biological and pharmacological properties. Although the beneficial effects trans-resveratrol to human health protection against fungal pathogens abiotic stresses are well-established, yet little known about molecular mechanisms regulating biosynthesis in defense progress.Here, we cloned identified Chinese wild grape (Vitis davidii) R2R3-MYB transcription factor VdMYB1, which activates responses invading...

10.1186/s12870-019-1993-6 article EN cc-by BMC Plant Biology 2019-11-07

Background and Aims Reactive oxygen species are involved in fruit ripening. Here, we investigated the role of hydrogen peroxide (H2O2) promoting grape (Vitis vinifera L.) berry Methods Results Solutions 100, 300 500 mmol/L H2O2 were sprayed on Kyoho bunches 25 days post anthesis (dpa). All treatments promoted early ripening berries, although treatment was most effective; at this concentration, berries ripened 20 earlier than Control. Ripening-related physiological indexes, such as diameter...

10.1111/ajgw.12399 article EN Australian Journal of Grape and Wine Research 2019-05-30

The gene encoding stilbene synthase (STS) plays a central role in many biochemical and physiological actions, its metabolite resveratrol possesses broad-spectrum resistance to pathogens, as well diverse pharmacological properties, notably an anticancer effect. Here, we report the expression analysis of STS promoter function from powdery mildew (PM)-resistant Chinese wild Vitis pseudoreticulata, compare it with two PM-susceptible cultivated grapevines, vinifera cvs. Carignane Thompson...

10.1093/jxb/erq447 article EN Journal of Experimental Botany 2011-04-18

Early ripening is an important desirable attribute for fruit crops. 'Kyoho' a popular table grape cultivar in many Asian countries. 'Fengzao' bud mutant of and ripens nearly 30 days earlier than 'Kyoho'. To identify genes controlling early development 'Fengzao', RNA-Seq profiles the two cultivars were compared at 8 different berry developmental stages both peel flesh tissues.RNA-Seq profiling between 'Fenzhao' obtained using Illumina HiSeq system analyzed various statistical methods....

10.1186/s12864-016-3051-1 article EN cc-by BMC Genomics 2016-10-12

Melatonin is a ubiquitous molecule and exists across kingdoms. Studies on melatonin in plants have mainly focused its physiological influence growth development, biosynthesis. A number of studies been conducted the content exogenous treatment grapevine (Vitis vinifera L.). However, key genes or enzymes biosynthetic pathway remain unclear.In this study, we cloned identified gene encoding serotonin N-acetyltransferase (SNAT) (VvSNAT2). The VvSNAT2 protein was from collection 30 members...

10.1186/s12864-019-6085-3 article EN cc-by BMC Genomics 2019-11-20

Abstract Background In a previous study, the early ripening of Kyoho grape following H 2 O treatment was explored at physiological level, but mechanism by which promotes molecular level is unclear. To reveal mechanism, RNA-sequencing analysis conducted on different developmental stages berry treated with . Results comparison and control groups, 406 genes were up-regulated 683 down-regulated. Time course sequencing (TCseq) showed that expression patterns most similar between control, except...

10.1186/s12864-020-07180-y article EN cc-by BMC Genomics 2020-11-11

Under the general trend of global warming, high temperature stress (HTS) is an increasingly grievous challenge to normal growth and development crops. Exposure (42°C) during stages Physalis grisea can result in breakdown antimicrobials, sterility pollen, diminished yields. In this study, trithorax-like factor PgWDR5b was functionally analysed response P. grisea. expression enhanced through treatments with HTS abscisic acid (ABA), promoted level downstream ABA synthesis genes after HTS,...

10.1093/jxb/eraf097 article EN Journal of Experimental Botany 2025-03-06

Abstract The plant U-box E3 ubiquitin ligase-mediated ubiquitin/26S proteasome degradation system plays a key role in growth and development. Previously identified as member of the grape PUB gene family, PUB38 was shown to participate berry-ripening progress. Here, we demonstrate that ligase VlPUB38 mediates abscisic acid (ABA) synthesis via 26S its involvement regulating fruit-ripening processes. Strawberry-overexpressing lines displayed obvious inhibition mature phenotype, this rescued by...

10.1093/pcp/pcaa118 article EN Plant and Cell Physiology 2020-09-11
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