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别之龙

2023-06-02 01:12| 来源: 网络整理| 查看: 265

别之龙  博士,教授,博士生导师

1970年3月出生。1996年博士毕业于西南农业大学,1999年10月-2001年9月在日本千叶大学园艺学部从事博士后研究。2008年荣获中国农业工程学会第五届青年科技奖,获得湖北省自然科学基金青年杰出人才计划资助;2009年入选武汉市学科带头人计划。主持完成的“西瓜甜瓜健康种苗集约化生产技术研发与示范推广”2015年获得湖北省科技进步二等奖,“主要瓜类作物工厂化嫁接育苗研究与示范”2010年获得湖北省科技进步二等奖,2011年被评为湖北省农业领域产学研合作优秀专家。2014年担任第1届国际园艺学会蔬菜嫁接研讨会召集人,被评为第六届全国优秀科技工作者,享受国务院政府特殊津贴专家,入选武汉市黄鹤英才(农业)计划。主持建设的“设施园艺学”课程2008年被评为国家精品课程,2012年被列为国家精品资源共享课程。主持完成的湖北省教学改革项目“园艺专业实践教学的改革与创新”2009年获得湖北省教学成果二等奖,主编的“工厂化育苗原理与技术”2011年被评为全国高等农业院校优秀教材。

通讯地址:武汉市南湖狮子山华中农业大学园艺林学学院邮编430070

Tel:027-87286908 Email: [email protected]

学术兼职:

现为国际园艺学会会员,中国农业工程学会理事,国家西甜瓜产业技术体系岗位科学家兼执行专家组成员,中国农业工程学会设施园艺工程专业委员会委员,中国园艺学会设施分会常务理事,湖北省园艺学会常务理事,全国设施农业科学与工程本科系列教材编写指导委员会委员。《Scientia Horticulturae》咨询编委,《长江蔬菜》副主编,《中国蔬菜》、《中国瓜菜》编委。

主要研究方向:

蔬菜和西甜瓜设施栽培与生长发育调控、工厂化育苗、蔬菜逆境生理与分子生物学

科研与论文情况:

先后主持和参加国家自然科学基金、国家973、863、国家科技支撑计划、国家现代农业产业技术体系、国家公益性行业(农业)科研专项、教育部科学技术重点项目、湖北省杰出青年人才基金、湖北省自然科学基金、湖北省科技攻关、武汉市学科带头人计划、武汉市科技攻关、武汉市晨光计划、中以国际科技合作项目、中德农业国际合作项目等30余项国家和省部级科研课题。在国内外刊物发表论文200余篇,其中在Journal of Experimental Botany, BMC Genomics, Frontiers in Plant Science, Food Chemistry, Planta, PLoS ONE, Physiologia Plantarum, Environmental and Experimental Botany, Plant and Soil, Journal of Plant Physiology, International Journal of Molecular Sciences,Plant Growth Regulation,Scientia Horticulturae, Biologia Plantarum, Soil Science and Plant Nutrition, Acta Physiologiae Plantarum, Photosynthetica, Allelopathy Journal等刊物上发表SCI论文50余篇,代表性SCI论文如下(带*者表示为通讯作者):

1. Niu ML, Huang Y, Sun ST, Sun JY, Cao HS, Shabala S, Bie ZL*. Root respiratory burst oxidase homologue-dependent H2O2production confers salt tolerance on a grafted cucumber by controlling Na+exclusion and stomatal closure. Journal of Experimental Botany, 2018, 69 (14): 3465-3476.

2. Cheng JT#, Wen SY#, Xiao S, Lu BY, Ma MR, Bie ZL*. Overexpression of the tonoplast sugar transporter CmTST2 in melon fruit increases sugar accumulation. Journal of Experimental Botany, 2018, 69 (3): 511-523.

3. Niu ML#, Xie JJ#, Chen C#, Cao HS, Sun JY, Kong QS, Shabala S, Shabala L, Huang Y*, Bie ZL*. An early ABA-induced stomatal closure, Na+sequestration in leaf vein and K+retention in mesophyll confer salt tissue tolerance inCucurbitaspecies. Journal of Experimental Botany, 2018, doi:10.1093/jxb/ery251.

4. Nawaz MA, Chen C, Shireen F, Zheng ZH, Sohail H, Afzal M, Ali MA, Bie ZL*, Huang Y*. Genome-wide expression profiling of leaves and roots of watermelon in response to low nitrogen. BMC Genomics, 2018, 19: 456.

5. Nawaz MA, Chen C, Shireen F, Zheng ZH, Jiao YY, Sohail H, Afzal M, Imtiaz M, Ali MA, Huang Y*, Bie ZL*. Improving vanadium stress tolerance of watermelon by grafting onto bottle gourd and pumpkin rootstock. Plant Growth Regulation, 2018, 85 (1): 41-56.

6. Shireen F, Nawaz MA, Chen C, Zhang QK, Zheng ZH, Sohail H, Sun JY, Cao HS, Huang Y, Bie ZL*. Boron: functions and approaches to enhance its availability in plants for sustainable agriculture. International Journal of Molecular Sciences, 2018, 19 (7): 1856.

7. Nawaz MA, Jiao YY, Chen C, Shireen F, Zheng ZH, Imtiaz M, Bie ZL*, Huang Y*. Melatonin pretreatment improves vanadium stress tolerance of watermelon seedlings by reducing vanadium concentration in the leaves and regulating melatonin biosynthesis and antioxidant-related gene expression. Journal of Plant Physiology,2018,220:115-127.

8. Lv HF, Cao HS, Nawaz MA, Sohail H, Huang Y, Cheng F, Kong QS, Bie ZL*. Wheat intercropping enhances the resistance of watermelon to fusarium wilt. Frontiers in Plant Science, 2018, 25, 9: 696.

9. Cao HS, Wang L, Nawaz MA, Niu ML, Sun JY, Xie JJ, Kong QS, Huang Y, Cheng F, Bie ZL*. Ectopic Expression of Pumpkin NAC Transcription Factor CmNAC1 Improves Multiple Abiotic Stress Tolerance in Arabidopsis. Frontiers in Plant Science, 2017, 08:2052.

10.Huang Y, Li WH, Zhao L, Shen T, Sun JY, Chen HW, Kong QS, Nawaz MA, Bie ZL*. Melon fruit sugar and amino acid contents are affected by fruit setting method under protected cultivation. Scientia Horticulturae, 2017, 214:288–294.

11. Kong QS*, Yuan JX, Gao LY, Liu P, Huang Y, Zhao LQ, LV HF, Bie ZL*. Transcriptional regulation of lycopene metabolism mediated by rootstock during the ripening of grafted watermelons. Food Chemistry, 2017, 214: 406-411.

12.Cheng F, Lu JY, Gao M, Shi K, Kong QS, Huang Y, Bie ZL*. Redox Signaling and CBF-Responsive Pathway Are Involved in Salicylic Acid-Improved Photosynthesis and Growth under Chilling Stress in Watermelon. Frontiers in Plant Science, 2016, 7:1519.

13.Huang Y, Jiao YY, Nawaz MA, Chen C, Liu L, Lu Z, Kong QS, Chen F. Bie ZL* . Improving magnesium uptake, photosynthesis and antioxidant enzyme activities of watermelon by grafting onto pumpkin rootstock under low magnesium. Plant and Soil, 2016,409 (1-2): 229-246.

14.Lei B, Huang Y, Sun JY, Xie JJ, Niu ML, Liu ZX, Fan ML, Bie ZL*. Scanning ion-selective electrode technique and x-ray microanalysis provides direct evidence of contrasting Na+transport ability from root to shoot in salt-sensitive cucumber and salt-tolerant pumpkin under NaCl stress. Physiologia Plantarum, 2014,152 (4): 738-748.

15.Fan ML, Huang Y, Zhong YQ, Kong QS, Xie JJ, Niu MN, Xu Y*, Bie ZL*. Comparative transcriptome profiling of potassium starvation responsiveness in two contrasting watermelon genotypes. Planta, 2014, 239:397-410.

16.Fan ML, Bie ZL*, Xie HY, Zhang F, Zhao S, Zhang HY (2013). Genotypic variation for potassium efficiency in wild and domesticated watermelons under ample and limited potassium supply. Journal of Plant Nutrition and Soil Science, 2013, 176: 466-473.

17.Huang Y, Bie ZL*, Liu PY, Niu ML, Zhen A, Liu ZX, Lei B, Gu DJ, Lu C, Wang BT. Reciprocal grafting between cucumber and pumpkin demonstrates the roles of the rootstock in the determination of cucumber salt tolerance and sodium accumulation. Scientia Horticulturae, 2013, 149: 47-54.

18.Liu ZX, Bie ZL*, Huang Y, Zhen A, Lei B, Zhang HY. Grafting onto Cucurbita moschata rootstock alleviates salt stress in cucumber plants by delaying photoinhibition. Photosynthetica, 2012, 50: 152-160.

19.Huang Y, Bie ZL*, He SP, Hua B, Zhen A, Liu ZX. Improving cucumber tolerance to major nutrients induced salinity by grafting onto Cucurbita ficifolia. Environmental and Experimental Botany, 2010, 69: 32-38.

20.Tang M, Bie ZL*, Wu MZ, Yi HP, Feng JX. Changes in organic acids and acid metabolism enzymes in melon fruit during development. Scientia Horticulturae, 2010, 123: 360-365.

信息更新于2018年9月



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