
一、基本信息
胡繼宏,男,1984年生,博士,教授,博士生導(dǎo)師。主要從事油菜功能基因組與分子育種研究。兼任國(guó)際學(xué)術(shù)期刊《Frontiers in Plant Science》副主編及《Journal of Genetics and Genomics》、《Horticulture Research》、《New Crops》青年編委。
二、學(xué)習(xí)工作經(jīng)歷
2008年9月–2013年6月,武漢大學(xué),遺傳學(xué)專(zhuān)業(yè),理學(xué)博士
2013年8月–2016年3月,中國(guó)科學(xué)院昆明動(dòng)物研究所,研究助理
2014年4月–2017年1月,武漢大學(xué),博士后,助理研究員
2017年1月–2022年4月,中國(guó)農(nóng)業(yè)科學(xué)院油料作物研究所,助理研究員
2022年5月–至今,西北農(nóng)林科技大學(xué)農(nóng)學(xué)院,教授,博士生導(dǎo)師
三、研究方向
油菜高產(chǎn)、抗逆的遺傳基礎(chǔ)解析、種質(zhì)創(chuàng)新與分子育種。
四、承擔(dān)教學(xué)任務(wù)情況
本科生《基因組學(xué)》、《表觀遺傳學(xué)》、《科研技能訓(xùn)練》和研究生《表觀遺傳學(xué)》等課程。
五、承擔(dān)科研項(xiàng)目情況
1. 國(guó)家自然科學(xué)基金-生物育種青年專(zhuān)項(xiàng),2025-2029,主持
2. 國(guó)家自然科學(xué)基金-面上項(xiàng)目,2024-2027,主持
3. 陜西省杰出青年科學(xué)基金,2024-2026,主持
4. 西北農(nóng)林科技大學(xué)引進(jìn)人才科研啟動(dòng)項(xiàng)目,2022-2027,主持
5. 國(guó)家自然科學(xué)基金-青年基金項(xiàng)目(C類(lèi)),2019-2022,主持
6. 陜西省重點(diǎn)研發(fā)計(jì)劃-一般項(xiàng)目,2023-2024,主持
7. 國(guó)家科技創(chuàng)新2030-農(nóng)業(yè)生物育種重大專(zhuān)項(xiàng),2022-2025,參與
8. 陜西省重點(diǎn)研發(fā)計(jì)劃-重點(diǎn)項(xiàng)目,2024-2027,參與
六、學(xué)術(shù)成果
圍繞油菜優(yōu)異種質(zhì)資源挖掘利用、功能基因組和分子育種開(kāi)展深入研究,創(chuàng)制大粒、抗倒伏、耐旱、抗菌核病等油菜種質(zhì)與優(yōu)異親本材料20余份,申請(qǐng)國(guó)家發(fā)明專(zhuān)利6項(xiàng),授權(quán)3項(xiàng),登記軟件著作權(quán)2項(xiàng)。參與選育登記油菜品種5個(gè)。在Nature Genetics、Plant Communications、Nature Plants等期刊發(fā)表科研論文30余篇。
(一) 代表性論文
1. Hu J?, Chen B?, Zhao J?, Zhang F?, Xie T?, Xu K?, Gao G, Yan G, Li H, Li, L, Ji G, An H, Li H, Huang Q, Zhang M, Wu J, Song W, Zhang X, Luo Y, Pires J, Batley J, Tian S*, Wu X*. Genomic selection and genetic architecture of agronomic traits during modern rapeseed breeding. Nature Genetics 2022, 54(5), 694-704.
2. Zhang R?, Dai C?, Gong R?, Li K, Zhang C, An Z, Xu A, Wang H, Dong J*, Huang Z*, Hu J*. The gapless genome of Brassica juncea and pan-genome platform for the three seed-quality traits improvement and environmental adaptation. Plant Communications 2025,6,101298.
3. Zhang R?, Gong R?, An Z, Li G, Dai C, Yi R, Liu Y, Dong J, Hu J*. Integrated physiological, transcriptomic and metabolomic analyses of glossy mutant under drought stress in rapeseed (Brassica napus). Industrial Crops & Products 2025, 223, 120007.
4. Liu Y?, Li D?, Qiao Y, Fan N, Gong R, Zhong H, Zhang Y, Lei L, Hu J*, Dong J*. Integration of mRNA and miRNA analysis reveals the regulation of salt stress response in rapeseed (Brassica napus L.). Plants (Basel) 2025, 14, 2418.
5. Wu Z, Zheng G, Sun Y, Dong X, Wang Y, Li H, Wei J, Cui J, Fang Y, Niu Y, Huang Z, Hu J, Liu Z*. Genome assembly and genomic architecture of a prominent cold‐resistant rapeseed germplasm. iMetaOmics 2024, 2, e32.
6. Zhang C?, Gong R?, Zhong H?, Dai C, Zhang R, Dong J, Li Y, Liu S, Hu J*. Integrated multi-locus genome-wide association studies and transcriptome analysis for seed yield and yield-related traits in Brassica napus. Frontiers in Plant Science 2023, 14, 1153000.
7. Zhang H, Chen H, Tan J, Huang S, Chen X, Dong H, Zhang R, Wang Y, Wang B, Xiao X, Hong Z, Zhang J*, Hu J*, Zhang M*. The chromosome-scale reference genome and transcriptome analysis of Solanum torvum provides insights into resistance to root-knot nematodes. Frontiers in Plant Science 2023, 14, 1210513.
8. Zhang C, Lu L, Gong R, Su X, Liu F, Zhang R*, Hu J*. Conservation and divergence of the trihelix genes in Brassica and expression profiles of BnaTH genes in Brassica napus under abiotic stresses. International Journal of Molecular Sciences 2022, 23, 15766.
9. Hu J?, Chen G?, Xu K, Wang J*. Cadmium in cereal crops: uptake and transport mechanisms and minimizing strategies. Journal of Agricultural and Food Chemistry 2022, 70(20), 5961-5974.
10. Hu J, Zhang F, Gao G, Li H, Wu X*. Auxin-related genes associated with leaf petiole angle at the seedling stage are involved in adaptation to low temperature in Brassica napus. Environmental and Experimental Botany 2021,182,104308.
11. Hu J?, Huang L?, Chen G?, Liu H?, Zhang Y, Zhang R, Zhang S, Liu J, Hu Q, Hu F*, Wang W*, Ding Y*. The elite alleles of OsSPL4 regulate grain size and increase grain yield in rice. Rice 2021, 14(1): 90.
12. Hu J?, Zeng T?, Xia Q?, Huang L?, Zhang Y?, Zhang C, Zeng Y, Liu H, Zhang S, Huang G, Wan W, Ding Y, Hu F*, Yang C*, Chen L*, Wang W*. Identification of key genes for the ultrahigh yield of rice using dynamic cross-tissue network analysis. Genomics Proteomics & Bioinformatics 2020, 18: 256-270.
13. Zhong Y?, Hu J?, Xia Q?, Zhang S, Li X, Pan X, Zhao R, Wang R, Yan W, Shangguan Z, Hu F*, Yang C*, Wang W*. Soil microbial mechanisms promoting ultrahigh rice yield. Soil Biology & Biochemistry 2020, 143: 107741.
14. Wang A?, Hu J?, Gao C, Chen G, Wang B, Lin C, Song L, Ding Y, Zhou G*. Genome-wide analysis of long non-coding RNAs unveils the regulatory roles in the heat tolerance of Chinese cabbage (Brassica rapa ssp. chinensis). Scientific Reports 2019, 9:5002.
15. Hu J?, Zeng T?, Xia Q, Qian Q, Yang C, Ding Y, Chen L*, Wang W*. Unravelling miRNA regulation in yield of rice (Oryza sativa) based on differential network model. Scientific Reports 2018, 8(1):8498.
16. Xie T*, Zhang F, Zhang H, Wang X, Hu J, Wu X. Biased gene retention during diploidization in Brassica linked to three-dimensional genome organization. Nature Plants 2019, 5: 822-832.
(二) 其他成果
1. 一種蛋白及其基因在控制粒重和/含油量中的應(yīng)用, 中國(guó)專(zhuān)利,專(zhuān)利號(hào): CN 201911932791.5,第四完成人
2. 一種蛋白及其基因在控制植物性狀中的應(yīng)用, 中國(guó)專(zhuān)利,專(zhuān)利號(hào): CN 201910744522.5, 第四完成人
3. 一種蛋白及其基因在控制植物種子性狀中的應(yīng)用,中國(guó)專(zhuān)利,專(zhuān)利號(hào): CN 201910919626.5, 第五完成人
4. 基于二代測(cè)序數(shù)據(jù)全自動(dòng)重測(cè)序分析套件系統(tǒng),2023 年,登記號(hào):2023SR1797284,證書(shū)號(hào):軟著登字第12384457 號(hào)。
5. 不同類(lèi)型油菜群體受選擇區(qū)基因提取軟件V1.0,2018年,登記號(hào):2018SR757207,證書(shū)號(hào):軟著登字第3086302 號(hào)。
七、聯(lián)系方式
通訊地址:陜西省楊凌示范區(qū)邰城路3號(hào)西北農(nóng)林科技大學(xué)農(nóng)學(xué)院
郵編:712100
E-mail: hujh05@nwafu.edu.cn; hujh2010@163.com
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