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184 peer-reviewed articles • 22,004 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Leveraging a phased pangenome for haplotype design of hybrid potato
Nature, 2025, 640, 408-417
37.947Citations (PDF)
2Rational Redomestication for Future Agriculture24.417Citations (PDF)
3The genomic and epigenomic landscapes of hemizygous genes across crops with contrasting reproductive systems7.514Citations (PDF)
4Molecular breeding of tomato: Advances and challenges8.937Citations (PDF)
5Time-course dual RNA-seq analyses and gene identification during early stages of plant-Phytophthora infestans interactions
Plant Physiology, 2025, 197,
5.58Citations (PDF)
6Recessive epistasis of a synonymous mutation confers cucumber domestication through epitranscriptomic regulation
Cell, 2025, 188, 4517-4529.e15
33.620Citations (PDF)
7Ancient hybridization underlies tuberization and radiation of the potato lineage
Cell, 2025, 188, 5249-5265.e15
33.626Citations (PDF)
8Multi-omics reveals the genetic regulation and functions of long non-coding RNAs in tomato
Plant Physiology, 2025, 198,
5.53Citations (PDF)
9Transcriptomic analysis on cucumber tendril reveals GLRs play important roles in thigmotropism and thigmomorphogenesis
Horticultural Plant Journal, 2024, 10, 1177-1186
5.36Citations (PDF)
10Lectin receptor-like kinase regulates xylem immunity through “reversible phosphorylation”0.70Citations (PDF)
11N-myristoyltransferase1 regulates biomass accumulation in cucumber (Cucumis sativus L.)3.91Citations (PDF)
12Characterization and heterologous reconstitution of Taxus biosynthetic enzymes leading to baccatin III
Science, 2024, 383, 622-629
36.3192Citations (PDF)
13Association Analysis Provides Insights into Plant Mitonuclear Interactions4.713Citations (PDF)
14A commentary of “Mechanism of alkaline tolerance and application in crop improvement”: Top 10 Chinese Scientific Advances of 2023, China
Fundamental Research, 2024, 4, 697-698
3.80Citations (PDF)
15The genomic route to tomato breeding: Past, present, and future
Plant Physiology, 2024, 195, 2500-2514
5.550Citations (PDF)
16Harnessing landrace diversity empowers wheat breeding
Nature, 2024, 632, 823-831
37.9143Citations (PDF)
17Mapping the molecular landscape of Lotus japonicus nodule organogenesis through spatiotemporal transcriptomics13.726Citations (PDF)
18Integrative multi-omics analysis reveals genetic and heterotic contributions to male fertility and yield in potato13.722Citations (PDF)
19Born from national strategy, fighting for national missions—Chinese Academy of Tropical Agricultural Sciences0.30Citations (PDF)
20Building pangenome graphs
Nature Methods, 2024, 21, 2008-2012
24.6149Citations (PDF)
21Unlocking epigenetic breeding potential in tomato and potato
ABIOTECH, 2024, 5, 507-518
4.011Citations (PDF)
22Analyzes of pan-genome and resequencing atlas unveil the genetic basis of jujube domestication13.716Citations (PDF)
23Releasing a sugar brake generates sweeter tomato without yield penalty
Nature, 2024, 635, 647-656
37.9103Citations (PDF)
24Revisiting ancient polyploidy in leptosporangiate ferns
New Phytologist, 2023, 237, 1405-1417
8.123Citations (PDF)
25Engineering a universal and efficient platform for terpenoid synthesis in yeast7.599Citations (PDF)
26A natural promoter variation of SlBBX31 confers enhanced cold tolerance during tomato domestication
Plant Biotechnology Journal, 2023, 21, 1033-1043
8.863Citations (PDF)
27Super-pangenome analyses highlight genomic diversity and structural variation across wild and cultivated tomato species
Nature Genetics, 2023, 55, 852-860
25.2282Citations (PDF)
28A modified Agrobacterium-mediated transformation for two oomycete pathogens
PLoS Pathogens, 2023, 19, e1011346
4.49Citations (PDF)
29Phylogenomic discovery of deleterious mutations facilitates hybrid potato breeding
Cell, 2023, 186, 2313-2328.e15
33.6124Citations (PDF)
30Solanum americanum genome-assisted discovery of immune receptors that detect potato late blight pathogen effectors
Nature Genetics, 2023, 55, 1579-1588
25.265Citations (PDF)
31Comprehensive dissection of meiotic DNA double-strand breaks and crossovers in cucumber
Plant Physiology, 2023, 193, 1913-1932
5.55Citations (PDF)
32A natural mutation in the promoter of Ms-cd1 causes dominant male sterility in Brassica oleracea13.727Citations (PDF)
33In vivo maternal haploid induction in tomato
Plant Biotechnology Journal, 2022, 20, 250-252
8.889Citations (PDF)
34Removal of lycopene substrate inhibition enables high carotenoid productivity in Yarrowia lipolytica13.7217Citations (PDF)
35Targeted creation of new mutants with compact plant architecture using CRISPR/Cas9 genome editing by an optimized genetic transformation procedure in cucurbit plants7.397Citations (PDF)
36Graph-based pan-genome reveals structural and sequence variations related to agronomic traits and domestication in cucumber13.7166Citations (PDF)
37The multi‐omics basis of potato heterosis8.947Citations (PDF)
38The integrated genomics of crop domestication and breeding
Cell, 2022, 185, 2828-2839
33.6176Citations (PDF)
39Genome evolution and diversity of wild and cultivated potatoes
Nature, 2022, 606, 535-541
37.9336Citations (PDF)
40Graph pangenome captures missing heritability and empowers tomato breeding
Nature, 2022, 606, 527-534
37.9454Citations (PDF)
41Genome architecture and tetrasomic inheritance of autotetraploid potato
Molecular Plant, 2022, 15, 1211-1226
18.9108Citations (PDF)
42Genotype-Specific Recruitment of Rhizosphere Bacteria From Sandy Loam Soil for Growth Promotion of Cucumis sativus var. hardwickii3.913Citations (PDF)
43Root-secreted bitter triterpene modulates the rhizosphere microbiota to improve plant fitness
Nature Plants, 2022, 8, 887-896
11.4190Citations (PDF)
44Functional diversity and metabolic engineering of plant-specialized metabolites
2022, 1, 109-121
11Citations (PDF)
45Construction of homozygous diploid potato through maternal haploid induction
ABIOTECH, 2022, 3, 163-168
4.038Citations (PDF)
46The genome of homosporous maidenhair fern sheds light on the euphyllophyte evolution and defences
Nature Plants, 2022, 8, 1024-1037
11.480Citations (PDF)
47Vegetable biology and breeding in the genomics era
Science China Life Sciences, 2022, 66, 226-250
6.730Citations (PDF)
48Architecture design of cucurbit crops for enhanced productivity by a natural allele
Nature Plants, 2022, 8, 1394-1407
11.442Citations (PDF)
49Natural variations in SlSOS1 contribute to the loss of salt tolerance during tomato domestication8.891Citations (PDF)
50Whole‐Genome Sequence of Synthesized Allopolyploids in Cucumis Reveals Insights into the Genome Evolution of Allopolyploidization
Advanced Science, 2021, 8,
12.637Citations (PDF)
51Genomic analyses provide insights into peach local adaptation and responses to climate change
Genome Research, 2021, 31, 592-606
4.657Citations (PDF)
52Chromosome-scale genome assembly ofCucumis hystrix—a wild species interspecifically cross-compatible with cultivated cucumber7.332Citations (PDF)
53Domestication of Crop Metabolomes: Desired and Unintended Consequences
Trends in Plant Science, 2021, 26, 650-661
11.6118Citations (PDF)
54A nonS-locus F-box gene breaks self-incompatibility in diploid potatoes13.779Citations (PDF)
55Genome design of hybrid potato
Cell, 2021, 184, 3873-3883.e12
33.6213Citations (PDF)
56Polyploidization and domestication
Scientia Sinica Vitae, 2021, 51, 1457-1466
0.33Citations (PDF)
57The Taxus genome provides insights into paclitaxel biosynthesis
Nature Plants, 2021, 7, 1026-1036
11.4231Citations (PDF)
58Enhanced chemoselectivity of a plant cytochrome P450 through protein engineering of surface and catalytic residues
ABIOTECH, 2021, 2, 215-225
4.09Citations (PDF)
59Gain-of-function of the 1-aminocyclopropane-1-carboxylate synthase geneACS1Ginduces female flower development in cucumber gynoecy
Plant Cell, 2021, 33, 306-321
7.656Citations (PDF)
60Targeting pathway expression to subcellular organelles improves astaxanthin synthesis in Yarrowia lipolytica
Metabolic Engineering, 2021, 68, 152-161
6.8138Citations (PDF)
61Deletion of a cyclin-dependent protein kinase inhibitor, CsSMR1, leads to dwarf and determinate growth in cucumber (Cucumis sativus L.)3.623Citations (PDF)
62Genome-wide Target Mapping Shows Histone Deacetylase Complex1 Regulates Cell Proliferation in Cucumber Fruit
Plant Physiology, 2020, 182, 167-184
5.574Citations (PDF)
63A high‐throughput BAC end analysis protocol (BAC‐anchor) for profiling genome assembly and physical mapping
Plant Biotechnology Journal, 2020, 18, 364-372
8.87Citations (PDF)
64FLOWERING LOCUS T Improves Cucumber Adaptation to Higher Latitudes
Plant Physiology, 2020, 182, 908-918
5.540Citations (PDF)
65Engineering Plant Cytochrome P450s for Enhanced Synthesis of Natural Products: Past Achievements and Future Perspectives
Plant Communications, 2020, 1, 100012
9.645Citations (PDF)
66The genomic architecture of the sex‐determining region and sex‐related metabolic variation in Ginkgobiloba
Plant Journal, 2020, 104, 1399-1409
6.145Citations (PDF)
67Haplotype-resolved genome analyses of a heterozygous diploid potato
Nature Genetics, 2020, 52, 1018-1023
25.2234Citations (PDF)
68Regulation of plant architecture by a new histone acetyltransferase targeting gene bodies
Nature Plants, 2020, 6, 809-822
11.457Citations (PDF)
69Genetic dissection of climacteric fruit ripening in a melon population segregating for ripening behavior7.342Citations (PDF)
70Loss of salt tolerance during tomato domestication conferred by variation in a Na + /K + transporter
EMBO Journal, 2020, 39,
7.3215Citations (PDF)
71The mutation of a PECTATE LYASE-LIKE gene is responsible for the Yellow Margin phenotype in potato
Theoretical and Applied Genetics, 2020, 133, 1123-1131
3.611Citations (PDF)
72Resequencing of 414 cultivated and wild watermelon accessions identifies selection for fruit quality traits
Nature Genetics, 2019, 51, 1616-1623
25.2328Citations (PDF)
73A comprehensive genome variation map of melon identifies multiple domestication events and loci influencing agronomic traits
Nature Genetics, 2019, 51, 1607-1615
25.2249Citations (PDF)
74The wax gourd genomes offer insights into the genetic diversity and ancestral cucurbit karyotype13.7154Citations (PDF)
75A chromosome-scale genome assembly of cucumber (Cucumis sativus L.)
GigaScience, 2019, 8,
3.2228Citations (PDF)
76The tomato pan-genome uncovers new genes and a rare allele regulating fruit flavor
Nature Genetics, 2019, 51, 1044-1051
25.2680Citations (PDF)
77Next-Gen Approaches to Flavor-Related Metabolism24.461Citations (PDF)
78Genetic Regulation of Ethylene Dosage for Cucumber Fruit Elongation
Plant Cell, 2019, 31, 1063-1076
7.6133Citations (PDF)
79Meta-analysis of genome-wide association studies provides insights into genetic control of tomato flavor13.7136Citations (PDF)
80The genetic basis of inbreeding depression in potato
Nature Genetics, 2019, 51, 374-378
25.2167Citations (PDF)
81Multi‐omics data‐driven investigations of metabolic diversity of plant triterpenoids
Plant Journal, 2019, 97, 101-111
6.160Citations (PDF)
82Cucurbit Genomics Database (CuGenDB): a central portal for comparative and functional genomics of cucurbit crops
Nucleic Acids Research, 2019, 47, D1128-D1136
15.5228Citations (PDF)
83Acquisition of deleterious mutations during potato polyploidization8.936Citations (PDF)
84Rewiring of the Fruit Metabolome in Tomato Breeding
Cell, 2018, 172, 249-261.e12
33.6890Citations (PDF)
85An Overlooked Paleotetraploidization in Cucurbitaceae4.7115Citations (PDF)
86Genome analysis of Taraxacum kok-saghyz Rodin provides new insights into rubber biosynthesis
National Science Review, 2018, 5, 78-87
9.8135Citations (PDF)
87The chicken gut metagenome and the modulatory effects of plant-derived benzylisoquinoline alkaloids
Microbiome, 2018, 6,
11.5288Citations (PDF)
88Genetic analysis and identification of a candidate gene associated with in vitro regeneration ability of cucumber
Theoretical and Applied Genetics, 2018, 131, 2663-2675
3.617Citations (PDF)
89A High-Density EST-SSR-Based Genetic Map and QTL Analysis of Dwarf Trait in Cucurbita pepo L.4.427Citations (PDF)
90Resequencing of 243 diploid cotton accessions based on an updated A genome identifies the genetic basis of key agronomic traits
Nature Genetics, 2018, 50, 796-802
25.2499Citations (PDF)
91Generation of self-compatible diploid potato by knockout of S-RNase
Nature Plants, 2018, 4, 651-654
11.4222Citations (PDF)
92Developmentally Regulated Glucosylation of Bitter Triterpenoid in Cucumber by the UDP-Glucosyltransferase UGT73AM3
Molecular Plant, 2017, 10, 1000-1003
18.925Citations (PDF)
93The Genome of Medicinal Plant Macleaya cordata Provides New Insights into Benzylisoquinoline Alkaloids Metabolism
Molecular Plant, 2017, 10, 975-989
18.9147Citations (PDF)
94Draft genome of spinach and transcriptome diversity of 120 Spinacia accessions13.7198Citations (PDF)
95Mutation in a novel gene SMALL AND CORDATE LEAF 1 affects leaf morphology in cucumber8.913Citations (PDF)
96Changing Ploidy as a Strategy: The Irish Potato Famine Pathogen Shifts Ploidy in Relation to Its Sexuality3.372Citations (PDF)
97The high‐quality genome of Brassica napus cultivar ‘ZS11’ reveals the introgression history in semi‐winter morphotype
Plant Journal, 2017, 92, 452-468
6.1284Citations (PDF)
98Engineering Non-transgenic Gynoecious Cucumber Using an Improved Transformation Protocol and Optimized CRISPR/Cas9 System
Molecular Plant, 2017, 10, 1575-1578
18.9228Citations (PDF)
99Successful detection of foreign inserts in transgenic rice TT51‐1 (BT63) by RNA‐sequencing combined with PCR3.70Citations (PDF)
100CsAP3: A Cucumber Homolog to Arabidopsis APETALA3 with Novel Characteristics4.047Citations (PDF)
101An ACC Oxidase Gene Essential for Cucumber Carpel Development
Molecular Plant, 2016, 9, 1315-1327
18.9146Citations (PDF)
102Integrative Analyses of Nontargeted Volatile Profiling and Transcriptome Data Provide Molecular Insight into VOC Diversity in Cucumber Plants (Cucumis sativus)
Plant Physiology, 2016, 172, 603-618
5.5135Citations (PDF)
103CsWRKY46 , a WRKY transcription factor from cucumber, confers cold resistance in transgenic-plant by regulating a set of cold-stress responsive genes in an ABA-dependent manner5.4198Citations (PDF)
104Convergence and divergence of bitterness biosynthesis and regulation in Cucurbitaceae
Nature Plants, 2016, 2,
11.4245Citations (PDF)
105SSR Analysis of Genetic Diversity Among 192 Diploid Potato Cultivars
Horticultural Plant Journal, 2016, 2, 163-171
5.320Citations (PDF)
106Genomic survey sequencing for development and validation of single-locus SSR markers in peanut (Arachis hypogaea L.)
BMC Genomics, 2016, 17,
3.339Citations (PDF)
107An exon skipping in a SEPALLATA‐Like gene is associated with perturbed floral and fruits development in cucumber8.928Citations (PDF)
108Linkage and regional association analysis reveal two new tightly-linked major-QTLs for pod number and seed number per pod in rapeseed (Brassica napus L.)3.488Citations (PDF)
109Genome-Wide Mapping of Structural Variations Reveals a Copy Number Variant That Determines Reproductive Morphology in Cucumber
Plant Cell, 2015, 27, 1595-1604
7.6157Citations (PDF)
110A Sequencing-Based Linkage Map of Cucumber
Molecular Plant, 2015, 8, 961-963
18.934Citations (PDF)
111An ACCUMULATION AND REPLICATION OF CHLOROPLASTS 5 gene mutation confers light green peel in cucumber8.971Citations (PDF)
112A Rare SNP Identified a TCP Transcription Factor Essential for Tendril Development in Cucumber
Molecular Plant, 2015, 8, 1795-1808
18.976Citations (PDF)
113A CsYcf54 variant conferring light green coloration in cucumber
Euphytica, 2015, 208, 509-517
1.563Citations (PDF)
114Domestication selected for deceleration of the circadian clock in cultivated tomato
Nature Genetics, 2015, 48, 89-93
25.2202Citations (PDF)
115A major quantitative trait locus conferring subgynoecy in cucumber3.624Citations (PDF)
116Deep RNA-Seq to Unlock the Gene Bank of Floral Development in Sinapis arvensis
PLoS ONE, 2014, 9, e105775
2.38Citations (PDF)
117Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
PLoS Genetics, 2014, 10, e1004078
3.2262Citations (PDF)
118Biosynthesis, regulation, and domestication of bitterness in cucumber
Science, 2014, 346, 1084-1088
36.3494Citations (PDF)
119Genome sequencing of the high oil crop sesame provides insight into oil biosynthesis
Genome Biology, 2014, 15,
8.1295Citations (PDF)
120Selection and evaluation of novel reference genes for quantitative reverse transcription PCR (qRT-PCR) based on genome and transcriptome data in Brassica napus L.
Gene, 2014, 538, 113-122
2.3134Citations (PDF)
121Transcriptome Comparison of Global Distinctive Features Between Pollination and Parthenocarpic Fruit Set Reveals Transcriptional Phytohormone Cross-Talk in Cucumber (Cucumis sativus L.)
Plant and Cell Physiology, 2014, 55, 1325-1342
3.476Citations (PDF)
122Genome-Wide Microsatellite Characterization and Marker Development in the Sequenced Brassica Crop Species
DNA Research, 2014, 21, 53-68
2.880Citations (PDF)
123Genomic analyses provide insights into the history of tomato breeding
Nature Genetics, 2014, 46, 1220-1226
25.2977Citations (PDF)
124QTL-seq identifies an early flowering QTL located near Flowering Locus T in cucumber
Theoretical and Applied Genetics, 2014, 127, 1491-1499
3.6309Citations (PDF)
125Construction of a SNP-based genetic linkage map in cultivated peanut based on large scale marker development using next-generation double-digest restriction-site-associated DNA sequencing (ddRADseq)
BMC Genomics, 2014, 15,
3.3161Citations (PDF)
126Genome-Wide Microsatellite Characterization and Marker Development in the Sequenced Brassica Crop Species
DNA Research, 2014, 21, 229-229
2.81Citations (PDF)
127The Brassica oleracea genome reveals the asymmetrical evolution of polyploid genomes13.71,055Citations (PDF)
128A high-resolution cucumber cytogenetic map integrated with the genome assembly
BMC Genomics, 2013, 14,
3.334Citations (PDF)
129A 1,681-locus consensus genetic map of cultivated cucumber including 67 NB-LRR resistance gene homolog and ten gene loci
BMC Plant Biology, 2013, 13,
4.360Citations (PDF)
130Fine mapping of the Ph-3 gene conferring resistance to late blight (Phytophthora infestans) in tomato
Theoretical and Applied Genetics, 2013, 126, 2643-2653
3.661Citations (PDF)
131A genomic variation map provides insights into the genetic basis of cucumber domestication and diversity
Nature Genetics, 2013, 45, 1510-1515
25.2555Citations (PDF)
132Identification of genome-wide single nucleotide polymorphisms in allopolyploid crop Brassica napus
BMC Genomics, 2013, 14, 717
3.374Citations (PDF)
133Bolbase: a comprehensive genomics database for Brassica oleracea
BMC Genomics, 2013, 14,
3.3104Citations (PDF)
134The potato R10 resistance specificity to late blight is conferred by both a single dominant R gene and quantitative trait loci
Plant Breeding, 2013, 132, 407-412
1.57Citations (PDF)
135Construction of Reference Chromosome-Scale Pseudomolecules for Potato: Integrating the Potato Genome with Genetic and Physical Maps
G3: Genes, Genomes, Genetics, 2013, 3, 2031-2047
1.9267Citations (PDF)
136Localization of a New Gene for Bitterness in Cucumber
Journal of Heredity, 2013, 104, 134-139
2.341Citations (PDF)
137Shifts in the evolutionary rate and intensity of purifying selection between two Brassica genomes revealed by analyses of orthologous transposons and relics of a whole genome triplication
Plant Journal, 2013, 76, 211-222
6.139Citations (PDF)
138Evolutionary Dynamics of Microsatellite Distribution in Plants: Insight from the Comparison of Sequenced Brassica, Arabidopsis and Other Angiosperm Species
PLoS ONE, 2013, 8, e59988
2.338Citations (PDF)
139Integration of High-Resolution Physical and Genetic Map Reveals Differential Recombination Frequency between Chromosomes and the Genome Assembling Quality in Cucumber
PLoS ONE, 2013, 8, e62676
2.326Citations (PDF)
140Construction and analysis of a high-density genetic linkage map in cabbage (Brassica oleracea L. var. capitata)
BMC Genomics, 2012, 13,
3.395Citations (PDF)
141An improved allele-specific PCR primer design method for SNP marker analysis and its application
Plant Methods, 2012, 8,
4.0219Citations (PDF)
142Development and application of single nucleotide polymorphism markers in the polyploid Brassica napus by 454 sequencing of expressed sequence tags
Plant Breeding, 2012, 131, 293-299
1.523Citations (PDF)
143The draft genome of watermelon (Citrullus lanatus) and resequencing of 20 diverse accessions
Nature Genetics, 2012, 45, 51-58
25.2829Citations (PDF)
144Discovery of Pod Shatter-Resistant Associated SNPs by Deep Sequencing of a Representative Library Followed by Bulk Segregant Analysis in Rapeseed
PLoS ONE, 2012, 7, e34253
2.332Citations (PDF)
145Genetic Diversity and Population Structure of Cucumber (Cucumis sativus L.)
PLoS ONE, 2012, 7, e46919
2.3152Citations (PDF)
146Design of New Genome- and Gene-Sourced Primers and Identification of QTL for Seed Oil Content in a Specially High-Oil Brassica napus Cultivar
PLoS ONE, 2012, 7, e47037
2.364Citations (PDF)
147Comparison of the distribution of the repetitive DNA sequences in three variants of Cucumis sativus reveals their phylogenetic relationships4.930Citations (PDF)
148Genome sequence and analysis of the tuber crop potato
Nature, 2011, 475, 189-195
37.92,124Citations (PDF)
149An integrated molecular cytogenetic map of Cucumis sativus L. chromosome 2
BMC Genetics, 2011, 12, 18
2.825Citations (PDF)
150The genome of the mesopolyploid crop species Brassica rapa
Nature Genetics, 2011, 43, 1035-1039
25.22,069Citations (PDF)
151A linkage map of cultivated cucumber (Cucumis sativus L.) with 248 microsatellite marker loci and seven genes for horticulturally important traits
Euphytica, 2011, 182, 167-176
1.599Citations (PDF)
152Genome-wide analysis of WRKY gene family in Cucumis sativus
BMC Genomics, 2011, 12,
3.3270Citations (PDF)
153RNA-Seq improves annotation of protein-coding genes in the cucumber genome
BMC Genomics, 2011, 12,
3.3266Citations (PDF)
154Cloning and Characterization ofR3b; Members of theR3Superfamily of Late Blight Resistance Genes Show Sequence and Functional Divergence3.3123Citations (PDF)
155Transcriptome sequencing and comparative analysis of cucumber flowers with different sex types
BMC Genomics, 2010, 11,
3.3164Citations (PDF)
156Genome-wide characterization of simple sequence repeats in cucumber (Cucumis sativus L.)
BMC Genomics, 2010, 11,
3.3341Citations (PDF)
157Inducible Positive Mutant Screening System to Unveil the Signaling Pathway of Late Blight Resistance8.99Citations (PDF)
158LATEST ADVANCES IN WATERMELON GENOMICS
Acta Horticulturae, 2010, , 599-606
0.31Citations (PDF)
159Fine genetic mapping localizes cucumber scab resistance gene Ccu into an R gene cluster3.645Citations (PDF)
160A Snapshot of the Emerging Tomato Genome Sequence
Plant Genome, 2009, 2,
3.374Citations (PDF)
161Molecular Isolation of the M Gene Suggests That a Conserved-Residue Conversion Induces the Formation of Bisexual Flowers in Cucumber Plants
Genetics, 2009, 182, 1381-1385
4.2160Citations (PDF)
162Centromere repositioning in cucurbit species: Implication of the genomic impact from centromere activation and inactivation7.596Citations (PDF)
163Sequencing the Potato Genome: Outline and First Results to Come from the Elucidation of the Sequence of the World’s Third Most Important Food Crop1.498Citations (PDF)
164The genome of the cucumber, Cucumis sativus L.
Nature Genetics, 2009, 41, 1275-1281
25.21,451Citations (PDF)
165An Integrated Genetic and Cytogenetic Map of the Cucumber Genome
PLoS ONE, 2009, 4, e5795
2.3245Citations (PDF)
166Broadening the avenue of intersubgenomic heterosis in oilseed Brassica3.685Citations (PDF)
167ALLELIC DIVERSITY OF THE POPULATION OF PHYTOPHTHORA INFESTANS IN CHINA
Acta Horticulturae, 2009, , 123-128
0.30Citations (PDF)
168Genetic association of ETHYLENE-INSENSITIVE3-like sequence with the sex-determining M locus in cucumber (Cucumis sativus L.)3.641Citations (PDF)
169Comparative genomics enabled the isolation of the R3a late blight resistance gene in potato
Plant Journal, 2005, 42, 251-261
6.1373Citations (PDF)
170An ancestral oomycete locus contains late blight avirulence gene Avr3a, encoding a protein that is recognized in the host cytoplasm7.5439Citations (PDF)
171An Accurate In Vitro Assay for High-Throughput Disease Testing of Phytophthora infestans in Potato
Plant Disease, 2005, 89, 1263-1267
2.332Citations (PDF)
172QTL analysis of fertility restoration in cytoplasmic male sterile pepper
Theoretical and Applied Genetics, 2004, 109, 1058-1063
3.676Citations (PDF)
173The R3 Resistance to Phytophthora infestans in Potato is Conferred by Two Closely Linked R Genes with Distinct Specificities3.3125Citations (PDF)
174Title is missing!
Euphytica, 2001, 117, 163-167
1.536Citations (PDF)
175Title is missing!
Euphytica, 2000, 112, 267-273
1.516Citations (PDF)
176Title is missing!
Euphytica, 2000, 113, 155-161
1.566Citations (PDF)
177Harnessing omics to decode the mechanisms of symbiotic nitrogen fixation
ABIOTECH, 0, 6, 602-617
4.04Citations (PDF)
178Genome analyses and breeding of polyploid crops
Nature Plants, 0, 11, 1714-1728
11.416Citations (PDF)
179Inducible Sesquiterpene Synthase and a Phenylpropanoid Phytoalexin of Eggplants (<i>Solanum melongena</i>) Synergistically Promote Nonhost Resistance against <i>Phytophthora infestans</i>6.00Citations (PDF)
180<i>SlDTX29</i> Suppresses <i>SlCAT1</i> Expression and Attenuates Tomato Resistance Against Late Blight6.50Citations (PDF)
181Plug-in strategy for resistance engineering inspired by potato NLRome
Nature, 0, 649, 396-405
37.913Citations (PDF)
182Generating self-incompatible hybrid potatoes through haploid breeding
Nature Plants, 0, 12, 496-502
11.42Citations (PDF)
183Unveiling rapid plant diversification: Exploring the “Fast-Subspeciation Kingdom” of Brassica rapa
ABIOTECH, 0, 7, 100049
4.00Citations (PDF)
184Advances in genomics-driven genetic decoding and genomic design breeding in tomato7.30Citations (PDF)