相關(guān)
主持項(xiàng)目:
2021-2024 國家自然科學(xué)基金面上項(xiàng)目基于全基因組數(shù)據(jù)的燕麥細(xì)胞學(xué)圖譜構(gòu)建
2019-2021 四川省科技廳國際合作項(xiàng)目燕麥優(yōu)異基因資源的引進(jìn)及其飼草育種應(yīng)用研究
2018-2022國家燕麥產(chǎn)業(yè)技術(shù)研發(fā)中心 栽培燕麥亞基因組進(jìn)化及其裸粒起源機(jī)制研究
2016-2019國家自然科學(xué)基金面上項(xiàng)目 六倍體栽培裸燕麥的起源與馴化
2014-2015四川省教育廳基金項(xiàng)目燕麥屬物種β-葡聚糖含量測(cè)定及其相關(guān)功能基因的克隆
2012-2014國家自然科學(xué)基金青年項(xiàng)目燕麥屬的分子系統(tǒng)學(xué)和栽培燕麥的起源研究
2010-2013農(nóng)業(yè)部作物種質(zhì)資源保護(hù)項(xiàng)目燕麥種質(zhì)資源收集、繁種與農(nóng)藝性狀鑒定研究
2010-2011四川省教育廳青年基金項(xiàng)目燕麥抗寒基因克隆和進(jìn)化分析
2009-2020國家燕麥產(chǎn)業(yè)技術(shù)體系子項(xiàng)目燕麥種質(zhì)資源利用與創(chuàng)新
代表性成果
Genetic diversity and genome-wide association analysis in Chinese hulless oat germplasm. Theoretical and Applied Genetics.2020. doi.org/10.1007/s00122-020-03674-1(SCI)
Chromosomal location of the crown rust resistance gene Pc98 in cultivated oat (Avena sativaL.). Theoretical and Applied Genetics.2020. 133: 1109-1122(SCI)
Mapping of the oat crown rust resistance gene Pc39 relative to single nucleotide polymorphism markers. Plant Disease,2020.PDIS-09-19-2002(SCI)
燕麥種質(zhì)資源及西南區(qū)燕麥育種和栽培管理. 北京: 中國農(nóng)業(yè)大學(xué)出版社,2019: 1-179
基于高通量GBS-SNP標(biāo)記的栽培燕麥六倍體起源研究. 作物學(xué)報(bào),2019. 45(10): 1604-1612(CSCD)
Phylogenetic relationships in the genusAvenabased on the nuclear Pgk1 gene. PLoS ONE, 13(11): e0200047. https://doi.org/10.1371/journal.pone.2018. 0200047(SCI)
Genetic mapping and a new PCR-based marker linked to a dwarfing gene in oat (Avena sativaL.). Genome,2018. 61: 497-503(SCI)
High-density marker profiling confirms ancestral genomes ofAvenaspecies and identifies D-genome chromosomes of hexaploid oat. Theoretical and Applied Genetics.2016.129:2133-2149. DOI 10.1007/s00122-016-2762-7 (SCI)
一種鑒定燕麥屬物種A、C基因組的方法, 中華人民共和國國家知識(shí)產(chǎn)權(quán)局, ZL201310597359.7.
Genome size variation in the genusAvena. Genome.2016. 59:209-220(SCI)
播期、播種量與施肥量對(duì)裸燕麥籽粒產(chǎn)量及農(nóng)藝性狀的影響. 草業(yè)科學(xué),2015.32(3): 433-441.(CSCD)
Phylogenetic analysis of the genusAvenabased on chloroplast intergenic spacerpsbA-trnH and single-copy nuclear geneAcc1. Genome.2014. 57: 267-277(SCI)
Evaluation of diversity and the relationship of Avena species based on agronomic characters. International Journal of Agriculture & Biology.2014. 16:14-22(SCI)
Genetic diversity of seed storage proteins in diploid, tetraploid and hexaploidAvenaspecies. Israel Journal of Ecology and Evolution.2014. 60: 47-54(SCI)
中國燕麥學(xué). 北京: 中國農(nóng)業(yè)出版社,2013: 1-265.彭遠(yuǎn)英參編.
燕麥屬不同倍性種質(zhì)資源抗旱性狀評(píng)價(jià)及篩選. 生態(tài)學(xué)報(bào),2011.31(9): 2478-2491(CSCD)
Phylogenetic inferences inAvenabased on analysis ofFL intron2sequences. Theoretical and Applied Genetics.2010.121: 985-1000.(SCI)
Phylogenetic investigation of Avena diploid species and the maternal genome donor ofAvenapolyploids.Taxon.2010. 59(5): 1472-1482. (SCI)
The evolution pattern of rDNA ITS in Avena and phylogenetic relationship of the Avena species (Poaceae: Aveneae).Hereditas,2010. 147:183-204(SCI)
Relationship amongAvenaspecies as revealed by consensus chloroplast simple sequence repeat (ccSSR) markers. Genetic Resources and Crop Evolution,2009.56(4): 465-480(SCI)
Molecular diversity of 5S rRNA gene and genomic relationships in genusAvena(Poaceae: Aveneae). Genome,2008.51: 137-153(SCI)