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張椿雨
作者:審核:編輯:發布時間:2020-06-16

                             

基本信息


姓名: 張椿雨 出生年月: 1973.2

性别: 碩/博導: 博導

民族: 開設課程: 植物生物技術

職稱: 教授 研究方向: 油菜抗病遺傳育種、油菜品質代謝與育種

學位: 理學博士


聯系方式

辦公電話:027-87287563

電子郵件:zhchy@mail.hzau.edu.cn


個人簡介
張椿雨,77779193永利官网教授,博士生導師,入選教育部新世紀優秀人才支持計劃,國家油菜産業體系遺傳改良功能室主任、資源收集和評價崗位科學家,主要從事油菜抗病遺傳改良研究。運用基因組學研究方法,前瞻性地選育了我國唯一兩個油菜抗根腫病新品種‘華油雜62R’和‘華雙5R’,目前正在大面積示範推廣中。成功組織召開了2017年國際根腫病學術研讨會、全國性抗根腫病新品種選育與綜合防治現場會等活動,獲批發明專利1項,申報國内專利1項;研究發現了限制維生素E合成的關鍵“負調控因子”,為油菜維生素E的遺傳改良研究奠定了理論基礎,獲批發明專利1項;在國際上首次發現諸葛菜所特有的雙羟基脂肪酸并命名為“武漢脂肪酸”,諸葛菜籽油具有優異的耐高溫潤滑油功能,研究成果申報美國專利1項。以通訊作者(含共同通訊)或第一作者在Nature Plants、Plant Physiology、Plant Biotechnology Journal和Plant Journal等國際主流學術期刊發表系列研究論文。先後主持多個國家自然科學基金、科技支撐計劃課題、農業部行業專項等項目。擔任中國油料作物學報編委。


主持科研項目(課題)情況

1. 國家自然科學基金面上項目,31871659,《抗根腫病基因PbBa8.1的克隆及其編碼蛋白介導的抗病機制初探》,2019年1月-2022年12月,60萬,在研,主持。

2.國家自然科學基金面上項目,31671723,《油菜重要候選基因BnaA9CHLSYN對籽粒 維生素E合成産生關鍵性作用的分子機制研究》,2017年1月-2020年12月,64萬元,在研,主持。

3. 國家自然科學基金面上項目,31370286,《蓖麻GGR 酶在 維生素E高效合成途徑中的作用研究》,2014年1月-2017年12月,78萬元,已結題,主持。

4. 國家自然科學基金面上項目,31071453,《以拟南芥為受體構建适用油菜功能基因組學研究的“FOX-Hunting”突變體庫的可行性解析》,2011年1月-2013年12月,32萬元,已結題,主持。


發表的論文

2011年

1. Yang W, Rebecca E. C, Sarah C. Hunter, Zhang C, Han J, Trissa B., Edgar B. C. (2011). Vitamin E biosynthesis: functional characterization of the monocot homogentisate geranylgeranyl transferase. The Plant Journal, 65(2):206-217.


2012年

1. Wang X, Zhang X, Li L, Steffi Fritsche, Jessica Endrigkeit, Zhang W, Long Y, Christian Jung, Meng J. (2012). Unravelling the genetic basis of seed tocopherol content and composition in rapeseed (Brassica napus L.). PLoS ONE. 7(11): e50038.


2013年

1. Chen J, Jing J, Zhan Z, Zhang T, Zhang C, Piao Z. (2013). Identification of Novel QTLs for Isolate-Specific Partial Resistance to Plasmodiophora brassicae in Brassica rapa. PLoS ONE. 8(12):e85307. (并列通訊作者).

2. Gan L., Zhang C., Wang X., Wang H., Long Y., Yin Y., Li D., Tian J., Li Z., Lin Z., Yu L., Li M. (2013). The proteomic and comparative genomic analysis of two Brassica napus lines differing in oil content.The proteomic and comparative genomic analysis of two Brassica napus lines differing in oil content. Journal of Proteome Research. (并列第一作者,http://pubs.acs.org/doi/abs/10.1021/pr4005635).

3. Zhang C, Umidjon Iskandarov, Elliott T. Klotz, Robyn L. Stevens, Rebecca E. Cahoon, Tara J. Nazarenus, Suzette L. Pereira, and Edgar B. C. (2013). A thraustochytrid diacylglycerol acyltransferase 2 with broad substrate specificity strongly increases oleic acid content in engineered Arabidopsis thaliana seeds. journal of experimental botany. (并列第一作者, http://jxb.oxfordjournals.org/content/early/2013/06/20/jxb.ert156.full.).

4. Zhang C, Rebecca E. C., Sarah C. Hunter, Chen M, Han J, Edgar B. C. (2013) Genetic and Biochemical Basis for Alternative Routes of Tocotrienol Biosynthesis for Enhanced Vitamin E Antioxidant Production. The Plant Journal. 73(4):628-639.


2014年

1. Zhang, W., Liu, T., Ren, G., Hörtensteiner, S., Zhou, Y., Cahoon, E.B. and Zhang, C. (2014). Chlorophyll degradation: the tocopherol biosynthesis related phytol hydrolase in Arabidopsis seeds is still missing. Plant Physiology. 166(1):70-9. (通訊作者).


2015年

1. Chen J, Pang W, Chen B, Zhang C, Piao Z. (2015). Transcriptome Analysis of Brassica  rapa Near-Isogenic Lines Carrying Clubroot-Resistant and –Susceptible Alleles in Response to Plasmodiophora brassicae during Early Infection. Frontiers in Plant Science. 6:1183. (并列通訊作者).

2.  Zhang, C., Zhang, W., Ren, G., Li, D., Cahoon, R., E., Chen, M., Zhou, Y., Yu, B. and Cahoon, E. (2015). Chlorophyll Synthase Under Epigenetic Surveillance is Critical for Vitamin E Tocopherol Synthesis and Altered Expression Impacts Tocopherol Levels in Arabidopsis. Plant Physiology. 168(4):1503-11.

3. 戰宗祥,江瑩芬,朱紫媛,張春沙,楊慶勇,李 倩,侯照科, 龔建芳,程雨貴,吳江生,傅廷棟,周永明,樸鐘雲,張椿雨.(2015).與位點PbBa8.1緊密連鎖分子标記的開發及甘藍型油菜根腫病抗性育種. 中國油料作物學報. v.37;No.154(06):35-40. (并列通訊作者).


2017年

1. Luo, Z., Wang, M., Long, Y., Huang, Y., Shi, L., Zhang, C., Liu, X., Bruce, D. L. Fitt, Xiang, J., Analiese S. Mason., Rod J. Snowdon, Liu, P., Meng, J., Zou, J. (2017). Incorporating pleiotropic quantitative trait loci in dissection of complex traits: seed yield in rapeseed as an example. Theoretical and Applied Genetics. 130(8):1-17.

2. Wan, H., Cui, Y., Ding Y., Mei, J., Dong, H., Zhang., Wu, S., Liang, Y., Zhang, C., Li, J., Xiong, Q., Qian, W. (2017). Time-Series Analyses of Transcriptomes and Proteomes Reveal Molecular Networks Underlying Oil Accumulation in Canola. Frontiers in Plant Science. 07. (DOI: 10.3389/fpls.2016.02007).

3. Zhan Z, Nwafor CC, Hou Z, Gong J, Zhu B, Jiang Y, Zhou Y, Wu J, Piao Z, Tong Y, Liu C, Zhang C. (2017). Cytological and morphological analysis of hybrids between Brassicoraphanus, and Brassica napus for introgression of clubroot resistant trait into Brassica napus L. PLoS One. 12(5):e0177470. (通訊作者).


2018年

1. 馬坡,李曉楠,龐文星,戰宗祥,張椿雨,樸鐘雲. (2018). 雲薹根腫菌SSR标記的開發及遺傳多樣性研究. 中國油料作物學報. 040(006):872-878.

2. 淮東欣,張園園,張椿雨, Edgar B.CAHOON,周永明. (2018). 甘藍型油菜脂肪酸碳鍊延長酶BnaA.FAE1與BnaC.FAE1的底物特異性分析. 中國油料作物學報. 40(05):20-28.

3. 江瑩芬,戰宗祥,樸鐘雲,張椿雨. (2018). 油菜抗根腫病資源創新與利用的研究進展與展望. 作物學報. 044(011):1592-1599. (并列通訊作者).

4. Nadil S, Sumera A, Xu J, Hou Z, Akram S, Shahbaz K, Gong J, Shang Z, Zhang C. (2018). The response of transgenic brassica species to salt stress: a review. Biotechnology Letters. 40, 1159–1165. (通訊作者).

5. Li X, Teitgen A. M., Asghar S, Juan L, Lucas B, Rebecca E. C., Zhang W, Li Z, Chapman K. D., Berman Diana, Zhang C, Minto R. E., Cahoon, R. E.. (2018). Discontinuous fatty acid elongation yields hydroxylated seed oil with improved function. Nature Plants. 4, 711–720. (并列通訊作者).

6. Ling J, Li R, Nwafor C. C., Cheng J, Li M, Xu Q, Wu J, Gan L, Yang Q, Liu C, Chen M, Zhou Y, Edgar B. C., Zhang, C. (2018). Development of IFOX-hunting as a functional genomics tool and demonstration of its use to identify early senescence-related genes in the polyploid brassica napus. Plant Biotechnology Journal. 16(2):591-602. (通訊作者).


2019年

1. 彭琦,張椿雨,費維新,陳松,陳鋒,張維,張潔夫. (2019). 江蘇省主栽油菜品種根腫病抗性鑒定及分子标記檢測. 江蘇農業科學. 047(012):149-151.

2. Xu J, Nwafor C. C. , Shah N, Zhou Y, Zhang C. (2019). Identification of genetic variation in brassica napus seeds for tocopherol content and composition using near﹊nfrared spectroscopy technique. Plant Breeding(10). Doi: 10.1111/pbr.12708. (通訊作者).

3. Shah N, Sun J, Yu S. Zhao Y, Wang Z, Huang F, Dun B, Gong J, Liu Y, Li Y, Li Q, Yuan L, Amanullah B, Li G, Li S, Zhang C. (2019). Genetic variation analysis of field isolates of clubroot and their responses to Brassica napus lines containing resistant genes CRb and PbBa8.1 and their combination in homozygous and heterozygous state. Molecular Breeding Doi: 10.1007/s11032-019-1075-3. (并列通訊作者).

4. Romsdahl T, Shirani A, Minto R. E., Zhang C, Berman D. (2019). Nature-guided synthesis of advanced bio-lubricants. Scientific Reports. 9(1): 11711

5. Mei J, Guo Z, Wang J, Feng F, Ma G, Zhang C, Qian W, Chen G. (2019). Understanding the Resistance Mechanism in Brassica napus to Clubroot Caused by Plasmodiophora brassicae. Phytopathology. 109(5):810‐818.

6. Zhao Q, Wu J, Cai G, Yang Q, Muhammad Shalid, Fan C, Zhang C, Zhou Y. (2019). A novel quantitative trait locus on chromosome A9 controlling oleic acid content in Brassica napus. Plant Biotechnol Journal. 17(12):2313‐2324.

7. Luo T, Xia W, Gong S, Mason A., Li Z, Liu R, Dou, Y, Tang W, Fan H, Zhang C, Xiao Y. (2019). Identifying Vitamin E Biosynthesis Genes in Elaeis guineensis by Genome-Wide Association Study. Journal of Agricultural & Food Chemistry. 68(2): 678-685.


2020年

1. 郭清雲,汪波,蒯婕,張椿雨,李根澤,康惠仙,傅廷棟,周廣生. (2019). 油菜感抗品種混播對根腫病防控效果的影響. 作物學報. 46(5): 725-733.

2. Shah, N, Li Q, Xu Q, Liu J, Huang F, Zhan Z, Qin P, Zhou X, Yu W, Zhu L, Zhang C. (2020) CRb and PbBa8.1 Synergically Increases Resistant Genes Expression upon Infection of Plasmodiophora brassicae in Brassica napus. Genes. 37(4): 403-413. (并列通訊作者).

3. Liu S, Huang H, Yi X, Zhang Y, Yang Q, Zhang C, Fan C, Zhou. (2020) Dissection of genetic architecture for glucosinolate accumulations in leaves and seeds of Brassica napus by genome‐wide association study. Plant Biotechnology Journal. 18(6): 1472–1484.

4. Anji R. K., Tara J. N., Hanh N., Yang J, Malleswari G., Samantha S., Jamie M. S., Monica A. S., Rebecca E. C., Ozan N., Zhang C., Tom E. C., Edgar B. C. (2020) Metabolic engineering of soybean seeds for enhanced vitamin E tocochromanol content and effects on oil antioxidant properties in polyunsaturated fatty acid-rich germplasm. Metabolic Engineering. 57: 63-73.

5. Zhan Z, Jiang Y, Shah N, Hou Z, Zhou Y, Dun B, Li S, Zhu L, Li Z, Piao Z, Zhang C. (2020). Association of Clubroot Resistance Locus PbBa8.1 With a Linkage Drag of High Erucic Acid Content in the Seed of the European Turnip. Frontiers in plant science. https://doi.org/10.3389/fpls.2020.00810. (并列通訊作者).


授權發明專利
1. 一種甘藍型油菜抗根腫病基因的分子标記及其在抗根腫病育種的應用。授權号:ZL 2015 1 0502589.X (發明專利,第一發明人)。

2. 一種利用近紅外光譜快速測定甘藍型油菜種子種生育酚含量的方法。授權号:ZL 2017 1 0330613.5 (發明專利,第一發明人)。        


油菜新品種選育(國内首批抗根腫病新品種)

1. 華油雜62R,登記号:GDP油菜(2018)420213:登記部門:農業農村(第一完成人)。

2. 華雙5R, 登記号:GDP油菜(2018)420220:登記部門:農業農村部(第一完成人)。


會議組織及會議特邀報告情況

1. 2018年8月在加拿大阿爾伯塔的2018 國際根腫病研讨會議上作特邀報告,報告題目:Revealing of Clubroot Resistant Genes with de novo Genome Sequencing and its Application in CR Breeding for Brassica napus。

2. 2018年11月在全國油料作物學會上作大會報告,報告題目:油菜抗根腫病基因挖掘與利用研究。

3. 作為大會主席,主辦了2017國際根腫病會議 , 2017. 4. 24-28(武漢)。

4. 在ISPL-2016, 第22屆國際脂類代謝大會(03-08 July 2016, Goettingen, Germany) 大會上作大會報告,報告題目:Functional Genomics Platform for Canola Novel Gene Discovery: Development of Gain-of-Function Mutation Pool with iFOX-Hunting System in Arabidopsis。

5. 2017年7月4日在第8屆歐洲植物脂類研讨會(瑞典)大會上作大會報告,報告題目:Genome-wide association analysis identify new genomic loci associated with tocopherol content in canola。



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