饒玉春

饒玉春

饒玉春,男,博士,浙江師範大學化學與生命科學學院副教授,碩士生導師。

基本介紹

  • 中文名:饒玉春
  • 畢業院校:中國農業科學院
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:植物早衰的發生機制及其育種套用、植物對非生物脅迫的回響機制
  • 任職院校:浙江師範大學化學與生命科學學院
研究方向,人物經歷,學術成果,科研項目,學術論文,

研究方向

1.植物早衰的發生機制及其育種套用
2.植物對非生物脅迫的回響機制

人物經歷

2011年7月至今在浙江師範大學化學與生命科學學院工作

學術成果

科研項目

1.國家重大科技專項子課題(2016ZX08009003-003)
2.國家自然科學青年基金(31201183)
3.中國博士後基金(2014M561108)
4.浙江省自然科學基金(LY16C130001)
5.橫向課題(KJH2014002)
6.浙江省教育廳項目(Y201225687)
7.“重中之重”學科開放基金(2011KFJJ008)

學術論文

1.Multi-tillering dwarf1, a new allele of brittle culm12, affects plant height and tiller in rice.Science Bulletin. 2016, doi: 10.1007/s11434-015-0981-y
2. Fine Mapping Identifies a New QTL for Brown Rice Rate in Rice (Oryza SativaL.).Rice,2016, 9:4.
3.The pleiotropicABNRMAL FLOWER AND DWARF1affects plant height, floral development and grain yield in rice.Journal of Integrative Plant Biology,2016,doi: 10.1111/jipb.12441
4.EARLY SENESCENCE 1Encodes a SCAR-like protein2 that affects water Loss in Rice.
Plant Physiology.2015, 169:1225-1239.
5.Characterization and cloning ofSMALL GRAIN4, a novel DWARF11 allele that affects brassinosteroid biosynthesis in rice.Science Bulletin,2015, 60 (10):905-915.
6.SMALL GRAIN1, which encodes a mitogen-activated protein kinase4(MKK4), influences grain size in rice.ThePlant Journal. 2014, 77(4):547-557
7.Genetic analysis of sugar-related traits in rice grain. South African Journal of Botany, 2014, 93:137-141.
8.Recent progress on molecular breeding of rice in china.Plant Cell Reports, 2014, 33:551-564.
9.Characterization and cloning of abrittle culmmutant (bc88) in rice (Oryza sativaL.).Chinese Science Bulletin,2013, 58(24):3000-3006.(cover story)
10.Map-based cloning proves,qGC6, a major QTL for gel consistency ofjaponica/indicacross,was responded byWaxyin rice(OryzasativaL.).Theoretical and Applied Genetics,2011, 123: 8529-867.
11.Characterization and fine mapping of an early senescence mutant (es-t) in Rice (Oryza sativaL.).Chinese Science Bulletin,2011, 56(23): 2437-2433.(cover story)
12.Genetic Analysis of Traits Related to Leaf Sheath in Rice (Oryza sativaL.).Rice Genomics and Genetics, 2011, 12(3):21-30.
13.Genetic analysis of leaf folder resistance in rice.Journal of Genetics & Genomics, 2010, 37 (5): 325-331.
14.Characterization and fine mapping ofnon-paniclemutant (nop) in rice.Rice Science, 2009, 16(3): 165-172.
15.水稻纖維素合酶催化亞基的編碼基因BC88的表達分析.中國水稻科學,2015,29(2):126-134.
16.稻曲病菌UvHog1基因的克隆及表達分析.中國水稻科學,2014, 28(1):9-14.
17.水稻耐冷脅迫的研究進展.分子植物育種,2013, 11(3): 443-450.
18.水稻萌發期耐cu脅迫的QTL定位.浙江師範大學學報(自然科學版),2013, 36(2): 198-204
19.微量元素鐵、錳、銅對水稻生長的影響及缺素防治.中國稻米,2012,18(4):31-35
20.水稻表觀遺傳的研究進展.浙江師範大學學報(自然科學版),2012, 35(3): 316-321
21.水稻莖桿相關性狀遺傳分析.分子植物育種,2011, 9(1): 160-168.
22.水稻早衰葉突變體es-t的遺傳分析與精細定位.科學通報,2011, 56(19): 1539-1545.
23.水稻葉鞘相關性狀的遺傳分析.分子植物育種2011, 9(3): 278-287.
24.轉基因抗蟲水稻的生態風險和治理對策.中國稻米,2010, 16(4): 11-14.
25.水稻抗倒伏研究進展.中國稻米,2009,15(6): 15-19.
26.hPGL, encoding chlorophyllide a oxygenase 1, impacts leaf senescence and indirectly affects grain yield and quality inrice.Journal of Experimental Botany, 2016, doi: doi:10.1093/jxb/erv529.
27.Cloning and functional analysis of pale-green leaf (PGL10) in rice(Oryza sativaL.).Plant Growth Regul, 2015, Doi: 10.1007/s10725-015-0075-5.
28.Genetic dissection for chlorophyii content of the top three leaves during grain filling in rice (Oryza sativaL.).Journal of Plant Growth and Regulation, 2015 doi 10.1007/s00344 -014-9474-5
29.LSCHL4from Japonica cultivar, which is allelic toNAL1, increases yield ofindicasuper rice 93-11.Molecular Plant2014,doi: 10.1093/mp/ssu055
30.Enhancement of New-Nipponbare, a New Rice Germplasm with High Seed-Setting Rate.Journal of Genetics & Genomics, 2014 doi:10.1016/j.jgg.2014.07.001
31.Dissecting yield-associated loci in super hybrid rice by resequencing recombinant inbred lines and improving parental genome sequences.Proc Natl Acad Sci U S A.2013, 110 (35):14492-14497. doi: 10.1073/pnas.1306579110. Epub 2013 Aug 12.
32.Genetic Analysis and Gene Mapping of a Rice White Stripe Leaf Mutant (st10).Plant Gene and Trait, 2011, 2(4):23-29
33.A simple method for preparation of rice genomic DNA.Rice Science, 2010, 17(4): 326-329.
34.水稻腺苷5‘-磷醯硫酸激酶編碼基因的克隆及其酶活分析.中國水稻科學,2015, 29(6): 571-577.
35.水稻磷脂醯絲氨酸合酶SUI1在菸草葉肉細胞中的定位.中國水稻科學,2015, 29(4): 343-349.
36.水稻窄葉突變體nal10的鑑定與基因精細定位.中國水稻科學,2015, 29(6): 587-594.
37.外源NO對鋁毒下水稻根系生長和抗氧化系統的影響,西北植物學報,2014,34(3):0536-0542
38.各種植物激素對水稻籽粒灌漿的影響及其機制.安徽農業科學,2013,41(1):9-11
39.雷射共聚焦顯微鏡的樣品前處理技術研究.安徽農業科學,2013,41(26):10602-10603
40.水稻白條葉突變體(st10)的遺傳分析與基因定位.分子植物育種,2011, 9(1): 136-142.
41.水稻基因組DNA簡易製備方法.中國水稻科學,2010, 24(6): 677-680.

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