Yuan Longping
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Chinese biologist
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Biology
Why Is Yuan Longping Influential?
(Suggest an Edit or Addition)According to Wikipedia, Yuan Longping was a Chinese agronomist and inventor. He was a member of the Chinese Academy of Engineering known for developing the first hybrid rice varieties in the 1970s, part of the Green Revolution in agriculture. For his contributions, Yuan is known as the "Father of Hybrid Rice".
Yuan Longping's Published Works
Published Works
- A Draft Sequence of the Rice Genome (Oryza sativa L. ssp. indica) (2002) (3468)
- A Draft Sequence of the Rice Genome (Oryza sativa L. ssp. japonica) (2002) (1101)
- The Genomes of Oryza sativa: A History of Duplications (2005) (900)
- Genes from wild rice improve yield (1996) (367)
- QTL detection for rice grain quality traits using an interspecific backcross population derived from cultivated Asian (O. sativa L.) and African (O. glaberrima S.) rice. (2004) (225)
- Rice zinc finger protein DST enhances grain production through controlling Gn1a/OsCKX2 expression (2013) (222)
- Days to heading 7, a major quantitative locus determining photoperiod sensitivity and regional adaptation in rice (2014) (212)
- A transcriptomic analysis of superhybrid rice LYP9 and its parents (2009) (183)
- Through the genetic bottleneck: O. rufipogon as a source of trait-enhancing alleles for O. sativa (2007) (177)
- Development of Hybrid Rice to Ensure Food Security (2014) (139)
- A microarray analysis of the rice transcriptome and its comparison to Arabidopsis. (2005) (128)
- Integrated analysis of phenome, genome, and transcriptome of hybrid rice uncovered multiple heterosis-related loci for yield increase (2016) (110)
- OsGRF4 controls grain shape, panicle length and seed shattering in rice (2016) (109)
- Progress in super-hybrid rice breeding (2017) (100)
- Hybrid rice technology development: Ensuring China's food security (2009) (96)
- Hybrid rice achievements, development and prospect in China (2015) (90)
- STV11 encodes a sulphotransferase and confers durable resistance to rice stripe virus (2014) (88)
- An R2R3 MYB transcription factor confers brown planthopper resistance by regulating the phenylalanine ammonia-lyase pathway in rice (2019) (85)
- Hybrid rice: genetics, breeding, and seed production. (2010) (79)
- Natural variation in the HAN1 gene confers chilling tolerance in rice and allowed adaptation to a temperate climate (2019) (72)
- A draft sequence of the rice (Oryza sativa ssp.indica) genome (2001) (52)
- Elucidation of miRNAs-Mediated Responses to Low Nitrogen Stress by Deep Sequencing of Two Soybean Genotypes (2013) (51)
- Higher yields of hybrid rice do not depend on nitrogen fertilization under moderate to high soil fertility conditions (2017) (42)
- Comparison of Some Photosynthetic Characters Between Two Hybrid Rice Combinations Differing in Yield Potential (2002) (42)
- Recent Progress in Breeding Super Hybrid Rice in China (2003) (40)
- Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species (2020) (37)
- Genetic analysis for rice grain quality traits in the YVB stable variant line using RAD-seq (2016) (36)
- Resequencing of 1,143 indica rice accessions reveals important genetic variations and different heterosis patterns (2020) (32)
- Enhancing disease resistances of Super Hybrid Rice with four antifungal genes (2007) (29)
- An anther development F-box (ADF) protein regulated by tapetum degeneration retardation (TDR) controls rice anther development (2014) (27)
- Deep re-sequencing of a widely used maintainer line of hybrid rice for discovery of DNA polymorphisms and evaluation of genetic diversity (2014) (23)
- A novel strategy for creating a new system of third‐generation hybrid rice technology using a cytoplasmic sterility gene and a genic male‐sterile gene (2020) (22)
- Analysis of Genetic and Molecular Identity Among Field Isolates of the Rice Blast Fungus with an International Differential System, Rep-PCR, and DNA Sequencing. (2013) (21)
- Strategy and utilization of a herbicide resistance gene in two-line hybrid rice (2007) (17)
- The Genomes of Oryza sativa (2005) (17)
- Test of agronomic characteristics and amplified fragment length polymorphism analysis of new rice germplasm developed from transformation of genomic DNA of distant relatives (2004) (14)
- Salivary Protein 1 of Brown Planthopper Is Required for Survival and Induces Immunity Response in Plants (2020) (14)
- Relationship between grain yield and leaf photosynthetic rate in super hybrid rice. (2007) (14)
- Development of Super Hybrid Rice for Food Security in China (2015) (13)
- Utilization of weedy rice for development of japonica hybrid rice (Oryza sativa L.). (2011) (13)
- A method for mechanized hybrid rice seed production using female sterile rice (2019) (10)
- Construction of rice site-specific chloroplast transformation vector and transient expression of EGFP gene in Dunaliella salina. (2011) (10)
- DNA Polymorphism Among Yewei B, V20B, and Oryza minuta J. S. Presl. ex C. B. Presl (2005) (9)
- Technology of Hybrid Rice Production (1995) (9)
- OsPDCD5 negatively regulates plant architecture and grain yield in rice (2021) (8)
- Heterotic performance of the main yield traits in different types of Indica hybrid rice (2020) (7)
- Relationship between the extent of genetic differentiation in parental lines and heterosis of indica-japonica hybrid rice (1998) (7)
- Balancing selection and wild gene pool contribute to resistance in global rice germplasm against planthopper. (2021) (6)
- Molecular mapping of four blast resistance genes using recombinant inbred lines of 93-11 and nipponbare (2013) (5)
- Identification of trait-improving QTL alleles from a wild rice relative, Oryza rufi-pagan (1998) (5)
- Lipidomic analyses reveal enhanced lipolysis in planthoppers feeding on resistant host plants (2020) (5)
- Rice MutLγ, the MLH1–MLH3 heterodimer, participates in the formation of type I crossovers and regulation of embryo sac fertility (2021) (5)
- Confirming and Identifying New Loci for Rice Blast Disease Resistance using Magnaporthe oryzae Field Isolates in the US (2015) (4)
- Deep re-sequencing of a widely used maintainer line of hybrid rice for discovery of DNA polymorphisms and evaluation of genetic diversity (2014) (3)
- Molecular strategies to use nuclear male sterility in plant hybrid breeding (2011) (2)
- SSR Analysis of the Variants from Rice Maintainer Lines Transferred Exogenous DNA (2004) (2)
- Low fertilizer inputs do not adversely affect yield or performance of Indica hybrid rice (1)
- The Utilization of Rice Blast Resistance Genes in Hybrid Rice Breeding in China (2019) (1)
- Production of green fluorescent protein in transgenic rice seeds. (2013) (1)
- Develop Thermo-sensitive Genic Male Sterile (TGMS) Rice Line by Means of Population Improvement (2004) (1)
- Molecular mapping of four blast resistance genes using recombinant inbred lines of 93-11 and nipponbare (2013) (0)
- New Journal Launch: Crop Breeding, Genetics and Genomics (2019) (0)
- Genetic analysis for rice grain quality traits in the YVB stable variant line using RAD-seq (2015) (0)
- An anther development F-box (ADF) protein regulated by tapetum degeneration retardation (TDR) controls rice anther development (2014) (0)
- Morphological Characterization and Fine Mapping of Zebra Leaf Mutant zebra1349 in Rice (Oryza sativa L.) (2016) (0)
- Mapping of the Resistant Gene to Rice Blast in the Dual Purpose Genic Male Sterile Rice, LongS (2012) (0)
- Strategic Vision for Hybrid Rice (2019) (0)
- Dissecting the genetic basis of heterosis in elite super-hybrid rice (2023) (0)
- Dissecting the genetic basis of the heterosis of Y900, an elite super-hybrid rice (2022) (0)
- A method for mechanized hybrid rice seed production using female sterile rice (2019) (0)
- OsGRF 4 controls grain shape , panicle length and seed 4 shattering in rice 5 (2016) (0)
- Higher yields of hybrid rice do not depend on nitrogen fertilization under moderate to high soil fertility conditions (2017) (0)
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What Schools Are Affiliated With Yuan Longping?
Yuan Longping is affiliated with the following schools: