長(zhǎng)期從事作物抗逆生理與分子機(jī)制研究,在作物對(duì)重金屬、干旱、澇害、鹽堿等非生物逆境的響應(yīng)及其機(jī)理研究上取得了突出成績(jī),迄今累計(jì)發(fā)表SCI收錄學(xué)術(shù)論文55篇,其中第一、共一或通訊作者20篇,Web of Science他引總計(jì)1900余次,單篇最高他引544次,h指數(shù)22;獲省部級(jí)科技(自然)獎(jiǎng)二等獎(jiǎng)3項(xiàng)、全國(guó)優(yōu)秀博士論文提名獎(jiǎng)1項(xiàng)以及中國(guó)作物科技獎(jiǎng)1項(xiàng);主持國(guó)家和省級(jí)科研項(xiàng)目6項(xiàng),其中國(guó)家自然科學(xué)基金?國(guó)際(地區(qū))合作與交流項(xiàng)目1項(xiàng)、面上項(xiàng)目2項(xiàng)、青年基金1項(xiàng);參與國(guó)家和省級(jí)科研項(xiàng)目6項(xiàng),其中國(guó)家重點(diǎn)研發(fā)計(jì)劃、國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目、國(guó)家農(nóng)業(yè)產(chǎn)業(yè)技術(shù)體系各1項(xiàng);目前任國(guó)際期刊《Functional Plant Biology》副主編。
一、研究工作領(lǐng)域
1. 作物環(huán)境脅迫生理與調(diào)控;
2. 作物重金屬吸收、轉(zhuǎn)運(yùn)與積累;
3. 禾本科作物“開(kāi)-閉”穎活動(dòng)細(xì)胞信號(hào);
二、教育經(jīng)歷(按時(shí)間倒排序)
2005/09 - 2010/12,浙江大學(xué),作物學(xué),博士,導(dǎo)師:張國(guó)平
2001/09 - 2005/06,南京農(nóng)業(yè)大學(xué),農(nóng)學(xué),學(xué)士
三、工作經(jīng)歷(按時(shí)間倒序排序)
2021/04 –至今,長(zhǎng)江大學(xué),農(nóng)學(xué)院,教授
2021/02 – 2021/03,長(zhǎng)江大學(xué),農(nóng)學(xué)院,副教授
2014/12 – 2021/01,浙江大學(xué),農(nóng)業(yè)與生物技術(shù)學(xué)院,副教授
2013/09 – 2014/12,浙江大學(xué),農(nóng)業(yè)與生物技術(shù)學(xué)院,助理研究員
2011/09 – 2013/09,澳大利亞塔斯馬尼亞大學(xué),農(nóng)學(xué)院,訪問(wèn)學(xué)者
2011/03 – 2013/09,浙江大學(xué),農(nóng)業(yè)與生物技術(shù)學(xué)院,博士后
四、主持或參與科研項(xiàng)目及人才計(jì)劃項(xiàng)目情況(按時(shí)間倒序排序)
(一)主持科研項(xiàng)目
1. 國(guó)家自然科學(xué)基金?國(guó)際(地區(qū))合作與交流項(xiàng)目,32061143044、植物根際促生菌(PGPR)誘導(dǎo)禾谷類(lèi)作物耐鹽性的機(jī)制解析、2021/01-2023/12、232.8萬(wàn)元,在研,主持。
2. 國(guó)家自然科學(xué)基金面上項(xiàng)目,31571599、大麥“開(kāi)-閉”穎過(guò)程中漿片“膨脹-收縮”的細(xì)胞滲透調(diào)、2016/01-2019/12、79.2萬(wàn)元、結(jié)題、主持。
3. 國(guó)家自然科學(xué)基金面上項(xiàng)目,31371559、細(xì)胞內(nèi)鉀離子動(dòng)態(tài)平衡調(diào)控大麥抗旱性信號(hào)轉(zhuǎn)導(dǎo)途徑的研究、2014/01-2017/12、83萬(wàn)元、結(jié)題、主持。
4. 浙江省公益性技術(shù)應(yīng)用研究計(jì)劃,2014C32035、不同超高產(chǎn)雜交水稻組合的養(yǎng)分吸收、利用特性及對(duì)根際微環(huán)境的影響,201401-2016-12、10萬(wàn)元、結(jié)題、主持。
5. 國(guó)家自然科學(xué)基金青年項(xiàng)目,31101107、水稻鉻毒害和耐性的機(jī)理研究、2012/01-2012/12、10萬(wàn)元、結(jié)題、主持。
6. 中國(guó)博士后科學(xué)基金,20110491820,鉻在水稻體內(nèi)的分布和化學(xué)形態(tài)變化規(guī)律研究,2011/06-2013/09、3萬(wàn)元、結(jié)題、主持。
(二)參與科研項(xiàng)目
1. 國(guó)家重點(diǎn)研發(fā)計(jì)劃、2018YFD0800203、都市農(nóng)區(qū)鎘砷污染防治與生態(tài)安全保障技術(shù)示范、2018/07-2020/12、176萬(wàn)元,在研,參與。
2. 浙江省“三農(nóng)六方”科技協(xié)作項(xiàng)目、2018SNLF010、完全生物降解地膜引進(jìn)試驗(yàn)示范、2018/08-2020/12、50萬(wàn)元,在研,參與。
3. 國(guó)家農(nóng)業(yè)產(chǎn)業(yè)技術(shù)體系、CARS-05-02A-01、大麥青稞產(chǎn)業(yè)技術(shù)體系、2016/01-2020/12、280萬(wàn)元,結(jié)題,參與。
4. 國(guó)家農(nóng)業(yè)部引進(jìn)國(guó)際先進(jìn)農(nóng)業(yè)科學(xué)技術(shù)計(jì)劃(948計(jì)劃)、2015-C6、南非農(nóng)業(yè)資源信息搜集與科技發(fā)展現(xiàn)狀調(diào)查研究、2015/05-2016/12、50萬(wàn)元,結(jié)題,參與。
5. 國(guó)家自然科學(xué)基金青年基金、31401369、基于組學(xué)方法研究西藏野生大麥特異種質(zhì)的耐鋁機(jī)制、2015/01-2017/12、22萬(wàn)元,結(jié)題,參與。
6. 國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目,31330055、利用異源基因組滲入系和AB-QTL分析發(fā)掘青藏高原野生大麥特異種質(zhì)、2014/01-2018/12、287萬(wàn)元、結(jié)題、參加。
五、獎(jiǎng)勵(lì)榮譽(yù)
1. 稻麥籽粒有毒重金屬的積累與調(diào)控機(jī)理研究,浙江省人民政府,自然科學(xué)獎(jiǎng)二等獎(jiǎng),張國(guó)平、鄔飛波、曾凡榮、曹方彬、陳飛,2020;
2. 稻麥籽粒有毒重金屬的積累與調(diào)控機(jī)理研究,中國(guó)作物學(xué)會(huì),科技進(jìn)步獎(jiǎng),張國(guó)平、鄔飛波、曾凡榮、曹方斌、林莉、陳飛、蔡悅,2017;
3. 稻麥籽粒重金屬低積累機(jī)理與糧食安全生產(chǎn)原理研究,教育部,高等學(xué)校科學(xué)研究?jī)?yōu)秀成果獎(jiǎng)自然科學(xué)獎(jiǎng)二等獎(jiǎng),張國(guó)平、鄔飛波、曾凡榮、陳飛、程旺大、林莉、蔡悅,2015;
4. 浙江大學(xué)“求是青年學(xué)者”,曾凡榮,2014;
5. 水稻鉻毒害和耐性的生理與分子機(jī)理研究,教育部,全國(guó)優(yōu)秀博士學(xué)位論文提名獎(jiǎng),曾凡榮,2013;
6. 作物重金屬耐性和積累基因型差異機(jī)理與調(diào)控研究,浙江省人民政府,浙江省科學(xué)技術(shù)獎(jiǎng)二等獎(jiǎng),張國(guó)平、鄔飛波、程旺大、曾凡榮、陳飛、郭天榮、邵國(guó)勝、黃有總;2009。
六、論文與著作(按時(shí)間倒序排序)
(一)代表性論文(*第一作者,#通訊作者)
1. Deng F*, Zeng FR*, Chen G, Feng X, Riaz A, Wu XJ, Gao W, Wu FB, Holford P, Chen ZH#. Metalloid hazards: from plant molecular evolution to mitigation strategies. Journal of Hazardous Materials, 2021, 409: 124495. IF=9.038. WOS引用=0. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
2. Chen XH*, Ouyang YN*, Fan YC, Qiu BY, Zhang GP, Zeng FR#. The pathway of transmembrane cadmium influx via calcium-permeable channels and its spatial characteristics along rice root. Journal of Experimental Botany 2018, 69: 5279-5291. IF=5.908. WOS引用=22. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
3. Zeng FR*, Shabala S#, Maksimovi? JD, Maksimovi? V, Bonales-Alatorre E, Shabala L, Yu M, Zhang GP, ?ivanovi? BD. Revealing mechanisms of salinity tissue tolerance in succulent halophytes: a case study for Carpobrotus rossi. Plant, Cell & Environment, 2018, 41: 2654-2667. IF= 6.362. WOS引用=8. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
4. Zeng FR*, Konnerup D, Shabala L, Zhou M, Colmer TD, Zhang GP, Shabala S#. Linking oxygen availability with membrane potential maintenance and K+ retention of barley roots: implications for waterlogging stress tolerance. Plant, Cell & Environment 2014, 37: 2325-2338. IF= 6.362.WOS引用=31. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
5. Zeng FR*, Ali S, Zhang HT, Ouyang YN, Zhang GP#. The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants. Environmental Pollution 2011, 159: 84-91. IF= 6.792.WOS引用=554. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
(二)所有發(fā)表論文(*第一作者,#通訊作者)
發(fā)表論文總數(shù) |
Web of Science 數(shù)據(jù)庫(kù)引用 |
中科院SCI期刊分區(qū) |
總他引 |
單篇最高他引 |
1區(qū) |
2區(qū) |
3區(qū) |
55篇 |
1900余次 |
544次 |
14篇 |
15篇 |
16篇 |
1. Deng F*, Zeng FR*, Chen G, Feng X, Riaz A, Wu XJ, Gao W, Wu FB, Holford P, Chen ZH#. Metalloid hazards: from plant molecular evolution to mitigation strategies. Journal of Hazardous Materials 2021, 409: 124495. IF=9.038. WOS引用=0. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
2. Zhang S*, Li Q, Nazir MM, Ali S#, Ouyang YN, Ye SZ, Zeng FR#. Calcium plays a double-edged role in modulating cadmium uptake and translocation in rice. International Journal of Molecular Science 2020, 21: 8058. IF=4.556. WOS引用=0. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
3. Cai KF*, Chen XH, Han ZG, Wu XJ, Zhang S, Li Q, Nazir MM, Zhang GP, Zeng FR#. Screening of worldwide barley collection for drought tolerance: the assessment of various physiological measures as the selection criteria. Frontiers in Plant Science 2020, 11:1159. IF=4.402. WOS引用=1. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
4. Zeng FR*, Zahoor M, Waseem M, Anayat A, Rizwan M, Ahmad A, Yasmeen T#, Ali S#, El-Sheikh MA, Alyemeni MN, Wijaya L. Influence of metal-resistant staphylococcus aureus strain K1 on the alleviation of chromium stress in wheat. Agronomy 2020, 10(9): 1354. IF=2.603. WOS引用=1. 中科院SCI期刊分區(qū):農(nóng)藝學(xué)3區(qū)。
5. Adil MF*, Sehar S, Han ZG, Lwalaba JLW, Jilani G, Zeng FR, Chen ZH, Shamsi IH#. Zinc alleviates cadmium toxicity by modulating photosynthesis, ROS homeostasis, and cation flux kinetics in rice. Environmental Pollution 2020, 265(B): 114979. IF=6.792. WOS引用=2. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
6. Han ZG*, Ahsan M, Adil MF, Chen XH, Nazir MM, Shamsi IH, Zeng FR, Zhang GP#. Identification of the gene network modules highly associated with the synthesis of phenolics compounds in barley by transcriptome and metabolome analysis. Food Chemistry 2020, 323: 126862. IF=6.306. WOS引用=1. 中科院SCI期刊分區(qū):食品科技1區(qū)。
7. Feng X*, Liu WX, Qiu CW, Zeng FR, Wang YZ, Zhang GP, Chen ZH#, Wu FB#. HvAKT2 and HvHAK1 confer drought tolerance in barley through enhanced leaf mesophyll H+ homoeostasis. Plant Biotechnology Journal 2020, 18(8): 1683-1696. IF=8.154. WOS引用=8. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
8. Liu J*, Shabala S#, Zhang J, Ma GH, Chen DD, Shabala L, Zeng FR, Chen ZH, Zhou MX, Venkataraman G, Zhao QZ#. Melatonin improves rice salinity stress tolerance by NADPH oxidase‐dependent control of the plasma membrane K+ transporters and K+ homeostasis. Plant, Cell & Environment, 2020, 43(11): 2591-2605. IF=6.362. WOS引用=10. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
9. Zarei M*, Shabala S#, Zeng FR, Chen XH, Zhang S, Azizi M, Rahemi M, Davarpanah S, Yu M, Shabala L. Comparing kinetics of xylem ion loading and its regulation in halophytes and glycophytes. Plant and Cell Physiology, 2020, 61(2): 403-415. IF=4.062. WOS引用=5. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
10. Liu J*, Shabala S#, Shabala L, Zhou MX, Meinke H, Venkataraman G, Chen ZH, Zeng FR, Zhao QZ#. Tissue-specific regulation of Na+ and K+ transporters explains genotypic differences in salinity stress tolerance in rice. Frontiers in Plant Science 2019, 10: 1361. IF=4.402. WOS引用=10. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
11. Cai KF*, Gao NZ, Wu XJ, Zhang S, Han ZG, Chen XH, Zhang GP, Zeng FR#. The ability to regulate transmembrane potassium transport in root is critical for drought tolerance in barley. International Journal of Molecular Sciences 2019, 20(17): 4111. IF=4.556. WOS引用=5. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
12. Gill MB*, Zeng FR, Shabala L, Zhang GP, Yu M, Demidchik V, Shabala S#, Zhou MX. Identification of QTL related to ROS formation under hypoxia and their association with waterlogging and salt tolerance in barley. International Journal of Molecular Sciences 2019, 20: 69910. IF=4.556. WOS引用=5. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
13. Chen G*, Wang YY, Wang XL, Yang Q, Quan XY, Zeng JB, Dai F, Zeng FR, Wu FB, Zhang GP, Chen ZH#. Leaf epidermis transcriptome reveals drought-induced hormonal signaling for stomatal regulation in wild barley. Plant Growth Regulation 2019, 87(1): 39-5410. IF=2.388. WOS引用=9. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
14. Chen XH*, Ouyang YN*, Fan YC, Qiu BY, Zhang GP, Zeng FR#. The pathway of transmembrane cadmium influx via calcium-permeable channels and its spatial characteristics along rice root. Journal of Experimental Botany 2018, 69: 5279-5291. IF=5.908. WOS引用=22. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
15. Zeng FR*, Shabala S#, Maksimovi? JD, Maksimovi? V, Bonales-Alatorre E, Shabala L, Yu M, Zhang GP, ?ivanovi? BD. Revealing mechanisms of salinity tissue tolerance in succulent halophytes: a case study for Carpobrotus rossi. Plant, Cell & Environment, 2018, 41: 2654-2667. IF=6.362. WOS引用=8. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
16. Liu WX*, Feng X, Qiu Y, Chen ZH, Zeng FR, Zhang GP, Wu FB#. Genotypic difference in the influence of aluminum and low pH on ion flux, rhizospheric pH and ATPase activity between Tibetan wild and cultivated barley. Environmental and Experimental Botany 2018, 156:16-24. IF=4.027. WOS引用=4. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
17. Gill MB*, Zeng FR, Shabala L, Bohm J, Zhang G, Zhou M, Shabala S#. The ability to regulate voltage-gated K+-permeable channels in the mature root epidermis is essential for waterlogging tolerance in barley. Journal of Experimental Botany 2018, 69: 667-680. IF=5.908. WOS引用=15. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
18. Gill MB*, Zeng FR, Shabala L, Zhang G, Fan Y, Shabala S#. Cell-based phenotyping reveals QTL for membrane potential maintenance associated with hypoxia and salinity stress tolerance in barley. Frontiers in Plant Science 2017, 8: 1941. IF=4.402. WOS引用=8. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
19. Falakboland Z*, Zhou M, Zeng FR, Kianipouya A, Shabala L, Shabala S#. Plant ionic relation and whole-plant physiological responses to waterlogging, salinity and their combination in barley. Functional Plant Biology 2017, 44: 941-953. IF=2.617. WOS引用=8. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
20. Ye ZL*, Zeng JB, Li X, Zeng FR, Zhang GP#. Physiological characterizations of three barley genotypes in response to low potassium stress. Acta Physiologiae Plantarum 2017, 39: 232. IF=1.760. WOS引用=5. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
21. Wu XJ*, Cai KF, Zhang GP, Zeng FR#. Metabolite pro?ling of barley grains subjected to water stress: to explain the genotypic difference in drought-induced impacts on malting quality. Frontiers in Plant Science 2017, 8:1547. IF=4.402. WOS引用=26. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
22. Gill MB*, Cai KF, Zhang GP, Zeng FR#. Brassinolide alleviates the drought-induced adverse effects in barley by modulation of enzymatic antioxidants and ultrastructure. Plant Growth Regulation 2017, 5: 1-9. IF=2.388. WOS引用=14. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
23. Wu XJ*, Zeng FR, Zhang GP#. PEG-simulated drought stress and spike in vitro culture are used to study the impact of water stress on barley malt quality. Plant Growth Regulation 2017, 81: 243-252. IF=2.388. WOS引用=6. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
24. Guo HP*, Feng X, Hong C, Chen H, Zeng FR, Zheng B, Jiang DA. Malate secretion from the root system is an important reason for higher resistance of Miscanthus sacchariflorus to cadmium. Physiologia Plantarum 2017, 159: 340-353. IF=4.148. WOS引用=20. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
25. Feng X*, Liu WX, Zeng FR, Chen ZH, Zhang GP, Wu FB#. K+ uptake, H+-ATPase pumping activity and Ca2+ efflux mechanism are involved in drought tolerance of barley. Environmental and Experimental Botany 2016, 129: 57-66. IF=4.027. WOS引用=18. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
26. Wu XJ*, Chen X, Zeng FR, Zhang GP#. The genotypic difference in the effect of water stress after anthesis on the malt quality parameters in barley. Journal of Cereal Science 2015, 65: 209-214. IF=2.938. WOS引用=8. 中科院SCI期刊分區(qū):食品科技2區(qū)。
27. Zeng FR*, Konnerup D, Shabala L, Zhou M, Colmer TD, Zhang GP, Shabala S#. Linking oxygen availability with membrane potential maintenance and K+ retention of barley roots: implications for waterlogging stress tolerance. Plant, Cell & Environment 2014, 37: 2325-2338. IF=6.362. WOS引用=31. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
28. Zeng FR*, Wu XJ, Qiu BY, Wu FB, Jiang LX, Zhang GP#. Physiological and proteomic alterations in rice (Oryza sativa L.) seedlings under hexavalent chromium stress. Planta 2014; 240: 291-308. IF=3.390. WOS引用=35. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
29. Bose J*, Shabala L, Pottosin I, Zeng FR, Velarde-Buendía A, Massart A, Poschenrieder C, Hariadi Yuda, Shabala S#. Kinetics of xylem loading, membrane potential maintenance, and sensitivity of K+-permeable channels to ROS: physiological traits that differentiate salinity tolerance between pea and barley. Plant, Cell & Environment 2014, 37: 587-600. IF=6.362. WOS引用=81. 中科院SCI期刊分區(qū):植物科學(xué)1區(qū)。
30. Cao FB*, Wang RF, Cheng WD, Zeng FR, Ahmed IM, Hu X, Zhang GP, Wu FB#. Genotypic and environmental variation in cadmium, chromium, lead and copper in rice and approaches for reducing the accumulation. Science of the Total Environment 2014, 496: 275-281. IF=6.551. WOS引用=61. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
31. Zeng FR*, Shabala L, Zhou MX, Zhang GP, Shabala S#. Barley responses to combined waterlogging and salinity stress: separating effects of oxygen deprivation and elemental toxicity. Frontiers in Plant Science 2013, 4: 313. IF=4.402. WOS引用=51. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
32. Qiu BY*, Zeng FR, Cai SG, Wu XD, Haider SI, Wu FB, Zhang GP#. Alleviation of chromium toxicity in rice seedlings by applying exogenous glutathione. Journal of Plant Physiology 2013, 170: 772-779. IF=3.013. WOS引用=37. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
33. Bonales-Alatorre E*, Pottosin I, Shabala L, Chen ZH, Zeng FR, Jacobsen S, Shabala S#. Differential activity of plasma and vacuolar membrane transporters contributes to genotypic differences in salinity tolerance in a halophyte species, Chenopodium quinoa. International Journal of Molecular Sciences 2013, 14: 9267-9285. IF=4.556. WOS引用=60. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
34. Maksimovi? JD*, Zhang JY, Zeng FR, ?ivanovi? BD, Shabala L, Zhou MX, Shabala S#. Linking oxidative and salinity stress tolerance in barley: can root antioxidant activity be used as a measure of stress tolerance? Plant and Soil 2013, 365: 141-155. IF=3.299. WOS引用=40. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
35. Zeng FR*, Qiu BY, Wu XJ, Niu SZ, Wu FB, Zhang GP#. Glutathione-mediated alleviation of chromium toxicity in rice plants. Biological Trace Element Research 2012, 148: 255-263. IF=2.639. WOS引用=42. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
36. Ali S*, Cai SG, Zeng FR, Qiu BY, Zhang GP#. Effect of salinity and hexavalent chromium stresses on uptake and accumulation of mineral elements in barley genotypes differing in salt tolerance. Journal of Plant Nutrition 2012, 35: 827-839. IF=1.132. WOS引用=23. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
37. Ali S*, Bai P, Zeng FR, Cai SG, Shamsi IH, Qiu BY, Wu FB, Zhang GP#. The ecotoxicological and interactive effects of chromium and aluminum on growth, oxidative damage and antioxidant enzymes on two barley genotypes differing in Al tolerance. Environmental and Experimental Botany 2011, 70: 185-191. IF=4.027. WOS引用=65. 中科院SCI期刊分區(qū):植物科學(xué)2區(qū)。
38. Ali S*, Zeng FR, Qiu BY, Cai SG, Qiu L, Wu FB, Zhang GP#. Interactive effects of aluminum and chromium stresses on the uptake of nutrients and the metals in barley. Soil Science and Plant Nutrition 2011, 57: 68-79. IF=1.432. WOS引用=12. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
39. Zeng FR*, Zhao FS, Qiu BY, Ouyang YN, Wu FB, Zhang GP#. Alleviation of chromium toxicity by silicon addition in rice plants. Agricultural Sciences in China 2011, 10: 1188-1196. WOS引用=44. 中科院SCI期刊分區(qū):未被JCR收錄,無(wú)分區(qū)。
40. Zeng FR*, Zhou WH, Qiu BY, Ali S, Wu FB, Zhang GP#. Subcellular distribution and chemical form of chromium in rice plants suffering from the different chromium stress. Journal of Plant Nutrition and Soil Science 2011, 174: 249-256. IF=2.083. WOS引用=53. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
41. Ouyang YN*, Zeng FR, Zhan L, Zhang GP#. Characterization of growth and light utilization for rice genotypes with different tiller angles. Agricultural Sciences in China 2011, 10: 1701-1709. WOS引用=1. 中科院SCI期刊分區(qū):未被JCR收錄,無(wú)分區(qū)。
42. Chen S*, Zhou WH, Zeng FR, Zhang GP#. Effect of planting method on grain quality and nutrient utilization for no-tillage rice. Communications in Soil Science and Plant Analysis 2011, 42: 1324-1335. IF=0.767. WOS引用=5. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
43. Qiu BY*, Zeng FR, Xue DW, Zhou WH, Ali S, Zhang GP#. QTL mapping for chromium-induced growth and zinc, and chromium distribution in seedlings of a rice DH population. Euphytica 2011, 181: 429-439. IF=1.614. WOS引用=5. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
44. Ali S*, Zeng FR, Qiu L, Zhang GP#. The effect of chromium and aluminum on growth, root morphology, photosynthetic parameters and transpiration of the two barley cultivars. Biologia Plantarum 2011, 55: 291-296. IF=1.601. WOS引用=38. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
45. Ali S*, Zeng FR, Cai SG, Qiu BY, Zhang GP#. The interaction of salinity and chromium in the influence of barley growth and oxidative stress. Plant Soil and Environment 2011, 57: 153-159. IF=1.324. WOS引用=32.中科院SCI期刊分區(qū):農(nóng)藝學(xué)4區(qū)。
46. Zeng FR*, Ali S, Zhang HT, Ouyang YN, Zhang GP#. The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants. Environmental Pollution 2011, 159: 84-91. IF=6.792. WOS引用=544. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
47. Zeng FR*, Qiu BY, Ali S, Zhang GP#. Genotypic differences in nutrient uptake and accumulation in rice under chromium stress. Journal of Plant Nutrition 2010, 33: 518-528. IF=1.132. WOS引用=27. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
48. Zeng FR*, Ali S, Qiu BY, Wu FB, Zhang GP#. Effects of chromium stress on the subcellular distribution and chemical form of Ca, Mg, Fe and Zn in two rice genotypes. Journal of Plant Nutrition and Soil Science 2010, 173: 135-148. IF=2.083. WOS引用=21. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
49. Xue DW, Zhou MX, Zhang XQ, Chen S, Wei K, Zeng FR, Mao Y, Wu FB, Zhang GP#. Identification of QTLs for yield and yield components of barley under different growth conditions. Journal of Zhejiang University-Science B 2010, 11: 169-176. IF=2.082. WOS引用=34. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
50. Qiu BY*, Zhou WH, Xue DW, Zeng FR, Ali S, Zhang GP#. Identification of Cr-tolerant lines in a rice (Oryza sativa) DH population. Euphytica 2010, 174: 199-207. IF=1.614. WOS引用=11. 中科院SCI期刊分區(qū):植物科學(xué)3區(qū)。
51. Jalloh MA*, Chen JH, Zeng FR, Zhang GP#. Effect of different N fertilizer forms on antioxidant capacity and grain yield of rice growing under Cd stress. Journal of Hazardous Materials 2009, 162: 1081-1085. IF=9.038. WOS引用=101. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
52. Jin XL*, Huang YZ, Zeng FR, Zhou MX, Zhang GP#. Genotypic difference in response of peroxidase and superoxide dismutase isozymes and activities to salt stress in barley. Acta Physiologiae Plantarum 2009, 21: 1103-1109. IF=1.760. WOS引用=20. 中科院SCI期刊分區(qū):植物科學(xué)4區(qū)。
53. Zeng FR*, Chen S, Miao Y, Wu FB, Zhang GP#. Changes of organic acid exudation and rhizosphere pH in the rice plants under chromium stress. Environmental Pollution 2008, 155: 284-289. IF=6.792. WOS引用=97. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
54. Zeng FR*, Mao Y, Cheng WD, Wu FB, Zhang GP#. Genotypic and environmental variation in chromium, cadmium and lead concentrations in rice. Environmental Pollution 2008, 153: 309-314. IF=6.792. WOS引用=153. 中科院SCI期刊分區(qū):環(huán)境科學(xué)1區(qū)。
55. Chen S, Zeng FR, Pao ZZ, Zhang GP#. Characterization of high-yield performance as affected by genotype and environment in rice. Journal of Zhejiang University-Science B 2008, 9: 363-370. IF=2.082. WOS引用=15. 中科院SCI期刊分區(qū):生化與分子生物學(xué)3區(qū)。
(三)著作
1. 張文英,李承道等編《作物表型研究方法》, 科學(xué)出版社,中國(guó)北京 2017,ISBN:9787030512451,參編,pp. 294-308;
2. 張國(guó)平、鄔飛波等譯 《大麥生產(chǎn)、改良與利用》,浙江大學(xué)出版社,中國(guó)杭州 2012,ISBN:9787308097888,參編,pp. 299-378。
七、品種與專(zhuān)利(按時(shí)間倒序排序)
1. 浙大10號(hào), 非主要農(nóng)作物品種登記GPD大麥(青稞)(2020)330048,張國(guó)平、鄔飛波、戴飛、曾凡榮、葉玲珍、曹方彬,2020-11-12;
2. 一種水稻漿片膨脹調(diào)控劑及其施用方法,發(fā)明專(zhuān)利 ZL 2015 1 0941899.1,歐陽(yáng)由男、曾凡榮、曹立勇、葉淑珍、王艷麗、張震、王教瑜、壽建堯、蔣玉根、秦葉波,2018-03-20;
3. 一種農(nóng)作物秸稈兩步纖維化方法及其應(yīng)用,發(fā)明專(zhuān)利 ZL 2016 1 0689345.1,歐陽(yáng)由男、曹立勇、汪向東、曾凡榮、陳再高、王艷麗、秦葉波、蔣玉根、葉淑珍,2018-01-19;
4. 一種水稻棚育秧智能灌溉防病控制器,實(shí)用新型專(zhuān)利 ZL 2017 2 0793585.6,歐陽(yáng)由男、王艷麗、曹立勇、顏文斌、秦葉波、曾凡榮、葉淑珍、楊國(guó)強(qiáng), 2018-03-02;
5. 一種水稻大棚育苗控溫防病報(bào)警器,實(shí)用新型專(zhuān)利 ZL 2017 2 0289861.5,歐陽(yáng)由男、王艷麗、顏文斌、秦葉波、曾凡榮、葉淑珍、楊國(guó)強(qiáng)、孫軍華, 2017-12-15。