Yongfeng Zhou🍇🍷周永锋@[email protected]
@yongfeng_zhou
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Professor at AGIS, CAAS. #Population_genetics, #Viticulture, #Grapes, #Perennial_crops #Domestication, #Structural_variation, #Genomic_breeding
Shenzhen, China
Joined February 2015
We build a pangenome reference to study genetic basis of agronomic traits and to establish GS models for grapevine breeding https://t.co/qxF0DXg32G
@NaturePortfolio @NatureGenet @IVES_publisher @VitisGen @Hortres @ASHS_Hort @ASPB @PlantEditors @GlobalPlantGPC @GrapeResearch
nature.com
Nature Genetics - By constructing a graph-based grapevine pangenome reference (Grapepan v.1.0) and incorporating structural variations and phenotypic maps, the study investigates the genetic basis...
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🌱 Postdoc position in Plant Genomics/Bioinformatics! Love genome plasticity, computational methods, and solving big questions in plant biology? Join our Institute for Crop Biology at HHU Düsseldorf. More info on https://t.co/dKXZtNjtgY Apply by Nov. 30 | 3-year position
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My group at Caltech is recruiting: two postdocs (mechanical design of endovascular neural interfaces; cell-type-specific neural interfaces) + multiple Ph.D. positions. If you build at the interface of electronics, chemistry & neuroscience, let’s talk. 🔗 https://t.co/d8iXkD7Ybq
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Integrative Genomics for Mango Genetics and Breeding
academic.oup.com
Abstract. Mango is the second most important tropical fruit crop. Due to ever-changing environmental conditions, world mango production is facing challenge
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A timeless model for writing a research summary. 1/2
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Pangenomics and single-cell transcriptomics uncover the genetic basis of continuous bearing trait in grapevine
academic.oup.com
Abstract. Grapevine (Vitis vinifera) is economically important for fresh consumption, winemaking and drying. The circadian systems of flowering and fruit d
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🌎👩🔬 For 15+ years biology has accumulated petabytes (million gigabytes) of🧬DNA sequencing data🧬 from the far reaches of our planet.🦠🍄🌵 Logan now democratizes efficient access to the world’s most comprehensive genetics dataset. Free and open. https://t.co/dDBtAjfdYL
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https://t.co/xZFmGkoqNx
@IVES_publisher @VitisGen @Hortres @ASHS_Hort
@ASPB @PlantEditors @GlobalPlantGPC @GrapeResearch
onlinelibrary.wiley.com
Analysis of the grapevine pan-mitochondrial genome reveals extensive structural variation, and shows that nuclear-mitochondrial segments promote cytonuclear interaction during grapevine domesticati...
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https://t.co/YwO9S4H25U The haplotype-resolved telomere-to-telomere genome and OMICS analyses reveal genetic responses to tapping in rubber tree
nature.com
Nature Communications - Authors report the assembly of the haplotype-resolved and telomere-to-telomere genome of a key rubber tree variety and uncover major structural variations. It is also...
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A trans-long-chain prenyl diphosphate synthase promotes ubiquinone 10 biosynthesis in grape
academic.oup.com
VvPDS is an authentic trans-long-chain prenyl diphosphate synthase and is involved in ubiquinone 10 biosynthesis.
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Your abstract is costing you citations. Here's the formula top researchers use to fix that. The 7 components you MUST include: (only if you want to publish in Nature though)
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PEARL: Integrative multi-omics classification and omics feature discovery via deep graph learning https://t.co/MZeD9JrBVC
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Genome complexity, not ploidy, dictates long-read variant-calling accuracy https://t.co/ACq7aCayIU
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🧬WIMI is thrilled to share Dr. Zhou Yongfeng’s team at the Chinese Academy of Agricultural Sciences “The dynamics of wild Vitis species in response to climate change facilitate the breeding of grapevine and its rootstocks with climate resilience” 📚Published in @Hortres
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Major Facilitator Superfamily (MFS) transporters balance sugar metabolism in peach
academic.oup.com
Major Facilitator Superfamily (MFS) transporters play vital roles in peach sugar metabolism, and key MFS genes and their regulatory mechanisms affect sucro
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