陈立松

福建农林大学副院长

陈立松

陈立松,1965年7月出生,博士,园艺学和植物学教授,博士研究生导师。现为福建农林大学资源与环境学院副院长;福建农林大学园艺植物生理生化与分子生物学研究所所长;“新世纪百千万人才工程”国家级人选;国家自然科学基金评审专家;“国家现代农业(柑橘)产业技术体系”十二五(2011-2015)岗位科学家。教育情况1983年9月-1986年7月:湖南省安江农业学校果树专业学生。

陈立松,1965年7月出生,博士,园艺学和植物学教授,博士研究生导师。现为福建农林大学资源与环境学院副院长;福建农林大学园艺植物生理生化与分子生物学研究所所长;“新世纪百千万人才工程”国家级人选;国家自然科学基金评审专家;“国家现代农业(柑橘)产业技术体系”十二五(2011-2015)岗位科学家。

教育经历

教育情况1983年9月-1986年7月:湖南省安江农业学校果树专业学生。

1988年9月-1991年7月:华中农业大学园艺系果树专业硕士研究生。

1994年9月-1997年12月:福建农业大学园艺系果树专业在职博士生。

博士后研究和访问学者

1998年3月-2000年3月: 日本佐贺大学(Saga University)博士后研究(JSPS)

2002年6月-2004年1月:美国Cornell University访问学者

2006年5月-2006年11月: 美国Cornell University访问学者

工作经历

1991年7月-现在:福建农业(林)大学任教;1994年6月晋升为讲师,1999年7月晋升为副教授,2002年7月晋升为教授(2004年为博士研究生导师)。

科研成果

主持完成了三项国家自然科学基金“柑橘主要砧木耐铝性鉴定及耐铝的生理生化机制”(编号:30270930);“枇杷有机酸代谢研究”(编号:30571292);“高铝低磷互作对柑橘根系有机酸分泌的影响”(编号:30771487)和多项省部级课题。目前主持一项国家自然科学基金。近年来,陈立松教授一直从事柑橘、荔枝等果树的生理生化及分子生物学的研究,先后在Journal of Experimental Botany、植物生理学报等国内外重要杂志上发表论文40多篇,其中有30余篇被SCI收录,2篇被ISTP收录。2001年、2005年和2006年分获福建省科技进步三等奖一项(均为第一完成人)。

获奖情况

2000年入选福建省“百千万人才工程”人选。

2001“水分胁迫下荔枝的生理生化变化”获福建省科技进步奖(三等奖排名第一)。

2002年获福建青年科技奖

2005“不同类型CAM植物和菠萝叶片不同组织生理生化研究”获福建省科学技术奖(三等奖排名第一)。

2006“龙眼葡萄缺素(Mg、N、Fe)胁迫生理研究”获福建省科学技术奖(三等奖排名第一)。

2006年入选“新世纪百千万人才工程”国家级人选。

2006年“中国农村专业技术协会第三届理事会专家委员会委员”。“国家自然科学基金委员会第十三届生命科学部专家评审组成员”编号:(2010)0494号

2010年享受“国务院政府特殊津贴”编号:2010-013-013

“国家现代农业(柑橘)产业技术体系”十二五(2011-2015)岗位科学家

福建农林大学园艺植物生理生化与分子生物学研究所所长(2005年4月-现在)。

中国农村专业技术协会第三届理事会专家委员会委员(2006年12月-现在)。

福建果树》编委(2006年元月-现在)。

《HortScience》、《Irrigation Science》、《Journal of Horticultural Science and Biotechnology》、《Journal of the Science of Food and Agriculture》、《Journal of the Serbian Chemical Society》、《Journal of Plant Physiology》、《Molecular Biology Reports》、《Photosynthetica》、《Plant Physiology and Biochemistry》、《Plant Biology》、《Plant Science》、《Scientia Horticulturae》、《中国农业科学》、《园艺学报》、《植物生理与分子生物学学报》和《植物生理学通讯》等杂志的审稿专家。

出版著作

李建国主编. 2008. 荔枝学中国农业出版社,906千字,ISBN:878-7-109-12668-8

张上隆,陈昆松主编, 2007.果实品质形成与调控的分子生理,中国农业出版社,325千字,ISBN:978-7-109-11771-6

刘星辉陈立松李延邱栋梁编, 2004. 亚热带果树逆境生理研究进展,中国农业科学技术出版社,500千字,ISBN:7-80167-763-3/S·589

陈立松,刘星辉编著, 2003.果树逆境生理中国农业出版社,319千字,ISBN:7-109-08028-5

代表性论文

Guo P, Qi YP, Cai YT,Yang TY, Yang LT, Huamg ZR, Chen LS*. 2018. Aluminum effects on photosynthesis, reactive oxygen species and methylglyoxal detoxification in two Citrus species differing in aluminum tolerance. Tree Physiology, DOI: 10.1093/treephys/tpy035

Guo P, Qi YP, Huang WL, Yang LT, Huang ZR, Lai NW, Chen LS*. 2018. Aluminum-responsive genes revealed by RNA-Seq and related physiological responses in leaves of two Citrusspecies with contrasting aluminum-tolerance. Ecotoxicology and Environmental Safety,158: 213-222.

Guo P, Li Q, Qi YP, Yang LT, Ye X, Chen HH, Chen LS*. 2017. Sulfur-mediated-alleviation of aluminum-toxicity in Citrus grandis seedlings.International Journal of Molecular Sciences, 18: 2570.

You X, Yang LT, Qi YP, Guo P, Lai NW, Ye X, Li Q, Chen LS*. 2017. Long-term manganese-toxicity-induced alterations of physiology and leaf protein profiles in two Citrus species differing in manganese-tolerance.Journal of Plant Physiology,218:249-257.

Zhou CP, Li CP, Liang WW, Guo P, Yang LT, Chen LS*. 2017.Identification of manganese-toxicity-responsive genes in roots of twoCitrusspecies differing in manganese-tolerance using cDNA-AFLP. Trees - Structure and Function, 31(3):813-831.

Li CP, Qi YP, Zhang J, Yang LT, Wang DH, Ye X, Lai NW, Tan LL, Lin D, Chen LS*. 2017. Magnesium-deficiency-induced alterations of gas exchange, major metabolites and key enzymes differ among roots, lower and upper leaves of Citrus sinensisseedlings. Tree Physiology37(11):1564-1581.

Liang WW, Huang JH, Li CP, Yang LT, Ye X, Lin D, Chen LS*. 2017.MicroRNA-mediated responses to long-term magnesium-deficiency in Citrus sinensisroots revealed by Illumina sequencing.BMC Genomics, 18:657.

Guo P, Qi YP, Yang LT, Lai NW, Ye X, Yang Y, Chen LS*. 2017.Root adaptive responses to aluminum-treatment revealed by RNA-Seq in two Citrusspecies with different aluminum-tolerance.Frontiers in Plant Science, 8:330.

Huang JH, Wen SX, Zhang YF, Zhong QZ, Yang L, Chen LS*. 2017. Abnormal megagametogenesis results in seedlessness of a polyembryonic 'Meiguicheng' orange (Citrus sinensis) mutant created with gamma-rays. Scientia Horticulturae, 217:73-83.

Long A, Zhang J, Yang LT, Ye X, Lai NW, Tan LL, Lin D, Chen LS*. 2017. Effects of low pH on photosynthesis, related physiological parameters and nutrient profile ofCitrus. Frontiers in Plant Science, 8: 185.

Sang W, Huang Z, Yang L, Guo P, Ye X, Chen LS*. 2017. Effects of high toxic boron concentration on protein profiles in roots of two Citrusspecies differing in boron-tolerance revealed by a 2-DE based MS approach. Frontiers in Plant Science, 8: 180.

Yang LT, Lu YB, Zhang Y, Guo P, Chen LS*. 2016.Proteomic profile of Citrus grandisroots under long-term boron-deficiency revealed by iTRAQ.Trees - Structure and Function,30: 1057-1071.

Li H, Yang LT, Qi YP, Gu P, Lu YB, Chen LS*. 2016.Aluminum-toxicity-induced alterations of leaf proteome in two citrus species differing in aluminum-tolerance.International Journal of Molecular Sciences, 17:1180.

Guo P, Qi YP, Yang LT, Ye X, Huang JH,Chen LS*. 2016.Long-term boron-excess-induced alterations of gene profiles in roots of twoCitrusspecies differing in boron-tolerance revealed by cDNA-AFLP. Frontiers in Plant Science, 7:898.

Jin XL, Ma CL*, Yang LT, Chen LS*. 2016.Alterations of physiology and gene expression due to long-term magnesium-deficiency differ between leaves and roots of Citrus reticulata. Journal of Plant Physiology, 198:103-115.

Huang JH, Qi YP, Wen SX, Guo P, Chen XM, Chen LS*. 2016. Illumina microRNA profiles reveal the involvement of miR397a in Citrusadaptation to long-term boron toxicity via modulating secondary cell-wall biosynthesis. Scientific Reports, 6: 22900.

Ma CL, Qi YP, Liang WW, Yang LT, Lu YB, Guo P, Ye X, Chen LS*. 2016. MicroRNA regulatory mechanisms on Citrus sinensis leaves to magnesium-deficiency. Frontiers in Plant Science, 7:201.

Lu YB, Qi YP, Yang LT, Guo P, Li Y, Chen LS*. 2015.Boron-deficiency-responsive microRNAs and their targets inCitrus sinensisleaves. BMC Plant Biology15: 271

Jiang HX, Yang LT, Qi YP, Lu YB, Huang ZR, Chen LS*. 2015.Root iTRAQ protein profile analysis of two citrus species differing in aluminum-tolerance in response to long-term aluminum-toxicity. BMC Genomics, 16:949

Wang LQ, Yang LT, Guo P, Zhou XX, Ye X, Chen EJ, Chen LS*. 2015. Leaf cDNA-AFLP analysis reveals novel mechanisms for boron-induced alleviation of aluminum-toxicity in Citrus grandisseedlings.Ecotoxicology and Environmental Safety, 120: 349-359

Li Y, Han MQ, Lin F, Ten Y, Lin J, Zhu DH, Guo P, Weng YB, Chen LS*. 2015.Soil chemical properties, ‘Guanximiyou’ pummelo leaf mineral nutrient status and fruit quality in the southern region of Fujian province, China. Journal of Soil Science and Plant Nutrition, 15(3): 615-628

Lu YB, Qi YP, Lee J, Guo P, Ye X, Jia M, Li M, Chen LS*. 2015.Long-term boron-deficiency-responsive genes revealed by cDNA-AFLP differ between Citrus sinensisroots and leaves.Frontiers in Plant Science,6: 585

Sang W, Huang ZR, Qi YP, Yang LT, Guo P, Chen LS*. 2015.An investigation of boron-toxicity in leaves of two citrus species differing in boron-tolerance using comparative proteomics. Journal of Proteomics,123: 128-146

Liao XY, Yang LT, Lu YB, Chen LS*. 2015. Roles of rootstocks and scions in aluminum-tolerance of Citrus. Acta Physiologiae Plantarum, 37: 1743

Zhou XX, Yang LT, Qi YP, Guo P, Chen LS*. 2015. Mechanisms on boron-induced alleviation of aluminum-toxicity in Citrus grandis seedlings at a transcriptional level revealed by cDNA-AFLP analysis. PLoS One, 10(3):e0115485.

Peng HY, Qi YP, Lee J, Yang LT, Guo P, Jiang HX, Chen LS*. 2015. Proteomic analysis of Citrus sinensisroots and leaves in response to long-term magnesium-deficiency. BMC Genomics, 16:253

Guo P, Qi YP, Yang LT, Ye X, Jiang HX, Huang JH, Chen LS*. 2014.cDNA-AFLP analysis reveals the adaptive responses of citrus to long-term boron-toxicity. BMC Plant Biology, 14: 284

Lu YB, Yang LT, Qi YP, Li Y, Li Z, Chen YB, Huang ZR, Chen LS*. 2014.Identification of boron-deficiency-responsive microRNAs in Citrus sinensisroots by Illumina sequencing. BMC Plant Biology, 14:123

Huang JH, Cai ZJ, Wen SX, Guo P, Ye X, Lin GZ, Chen LS*. 2014. Effects of boron toxicity on root and leaf anatomy in two Citrusspecies differing in boron tolerance. Trees - Structure and Function, 28: 1653-1666

You X, Yang LT, Lu YB, Li H, Zhang SQ, Chen LS*. 2014. Proteomic changes of Citrus roots in response to long-term manganese toxicity. Trees - Structure and Function, 28: 1383-1399

Lu YB, Yang LT, Li Y, Xu J, Liao TT, Chen YB, Chen LS*. 2014.Effects of boron deficiency on major metabolites, key enzymes and gas exchange in leaves and roots of Citrus sinensisseedlings. Tree Physiology, 34 (6): 608-618

Wang XY, Wang P, Qi YP, Zhou CP, Yang LT, Liao XY, Wang LQ, Zhu DH, Chen LS*. 2014. Effects of granulation on organic acid metabolism and its relation to mineral elements in Citrus grandisjuice sacs. Food Chemistry, 145:894-990

Yang LT, Qi YP, Lu YB, Guo P, Sang W, Feng H, Zhang HX, Chen LS*.2013. iTRAQ protein profile analysis of Citrus sinensisroots in response to long-term boron-deficiency. Journal of Proteomics, 93: 179-206

Zhou CP, Qi YP, You X, Yang LT, Guo P, Ye X, Zhou XX, Ke FJ, Chen LS*. 2013.Leaf cDNA-AFLP analysis of two citrus species differing in manganese tolerance in response to long-term manganese-toxicity. BMC Genomics, 14:621

Yang LT, Qi YP, Jiang HX, Chen LS*. 2013. Roles of organic acid anion secretion in aluminium tolerance of higher plants. BioMed Research International, 2013: 173682

Chen LS*, Yang LT, Lin ZH, Tang N. 2013.Roles of organic acid metabolism in plant tolerance to phosphorus-deficiency. Progress in Botany,74:213-237 (Invited Review)

Yang LT, Yang GH, You X, Zhou CP, Lu YB, Chen LS*.2013. Magnesium deficiency-induced changes in organic acid metabolism of Citrus sinensisroots and leaves. Biologia Plantarum, 57 (3): 481-486

Lin ZH, Qi YP, Chen RB, Zhang FZ, Chen LS*. 2012. Effects of phosphorus supply on the quality of green tea.Food Chemistry, 130 (4): 908-914

Yang LT, Jiang HX, Qi YP, Chen LS*. 2012. Differential expression of genes involved in alternative glycolytic pathways, phosphorus scavenging and recycling in response to aluminum and phosphorus interactions in citrus roots. Molecular Biology Reports,39(5): 6353-6366

Yang GH, Yang LT, Jiang HX, Wang P, Chen LS*. 2012. Physiological impacts of magnesium-deficiency in Citrus seedlings: photosynthesis, antioxidant system and carbohydrates. Trees - Structure and Function, 26(4): 1237-1250

Lin ZH, Chen LS*, Chen RB, Zhang FZ. 2012.Antioxidant system of tea (Camellia sinensis) leaves in response to phosphorus supply. Acta Physiologiae Plantarum, 34:2443-2448

Tang N, Li Y, Chen LS*. 2012. Magnesium deficiency-induced impairment of photosynthesis in leaves of fruiting Citrus reticulatatrees accompanied by up-regulation of antioxidant metabolism to avoid photo-oxidative damage. Journal of Plant Nutrition and Soil Science, 175: 784-793

Yang LT, Chen LS*, Peng HY, Guo P, Wang P, Ma CL. 2012.Organic acid metabolism in Citrus grandisleaves and roots is differently affected by nitric oxide and aluminum interactions. Scientia Horticulturae, 133(1):40-46.

Chen LS*, Han S, Qi YP, Yang LT. 2012.Boron stresses and tolerance in citrus. African Journal of Biotechnology,11(22):5961-5969

Yang LT, Qi YP, Chen LS*, Sang W, Lin XJ, Wu YL, Yang CJ. 2012. Nitric oxide protects sour pummelo (Citrus grandis) seedlings against aluminum-induced inhibition of growth and photosynthesis. Environmental and Experimental Botany,83:1-13

Tang N, Jiang HX, Yang LT, Li Q, Yang GH, Chen LS*. 2011. Boron-aluminum interactions affect organic acid metabolism more in leaves than in roots of Citrus grandis seedlings. Biologia Plantarum,55: 681-688.

Yang LT, Xie CY, Jiang HX, Chen LS*. 2011.Expression of six malate-related genes in pulp during the fruit development of two loquat (Eriobotrya japonica) cultivars differing in fruit acidity. African Journal of Biotechnology, 10: 2414-2422

Lin ZH, Chen LS*, Chen R-B, Zhang FZ, Jiang HX, Tang N, Smith BR. 2011.Root release and metabolism of organic acids in tea plants in response to phosphorus supply. Journal of Plant Physiology, 168: 644-652

Yang LT, Jiang HX, Tang N, Chen LS*. 2011.Mechanisms of aluminum-tolerance in two species of citrus: Secretion of organic acid anions and immobilization of aluminum by phosphorus in roots. Plant Science, 180: 521–530

Chen LS*, Qi YP, Jiang HX, Yang LT, Yang GH. 2010. Photosynthesis and photoprotective systems of plants in response to aluminum toxicity. African Journal of Biotechnology, 9(54): 9237-9247

Lin ZH, Chen LS*, Chen RB, Zhang FZ, Yang LT, Tang N. 2010. Expression of genes for two phosphofructokinases, tonoplast ATPase subunit A, and pyrophosphatase of tea roots in response to phosphorus-deficiency.The Journal of Horticultural Science & Biotechnology 85 (5): 449-453

Chen LS*, Cheng L. 2010. The acceptor side of photosystem II is damaged more severely than the donor side of photosystem II in 'Honeycrisp' apple leaves with zonal chlorosis. Acta Physiologiae Plantarum,32:253-261

Li Q, Chen LS*, Jiang HX, Tang N, Yang LT, Lin ZH, Li Y, Yang GH. 2010.Effects of manganese-excess on CO2 assimilation, ribulose-1,5-bisphosphate carboxylase/oxygenase, carbohydrates and photosynthetic electron transport of leaves, and antioxidant systems of leaves and roots in Citrus grandis seedlings. BMC Plant Biology, 10: 42

Chen FX, Liu XH, Chen LS*. 2010. Ethychlozate reduces acidity of loquat (Eriobotrya japonica) fruit. Scientia Horticulturae, 124: 331-337

Chen LS*,Tang N, Jiang HX, Yang LT, Li Q, Smith RB. 2009. Changes in organic acid metabolism differ between roots and leaves of Citrus grandisin response to phosphorus and aluminum interactions. Journal of Plant Physiology, 166: 2023-2034

Jiang HX, Tang N, Zheng JG, Li Y, Chen LS*. 2009.Phosphorus alleviates aluminum-induced inhibition of growth and photosynthesis in Citrus grandis seedlings. Physiologia Plantarum137: 298-311

Chen LS,Li P, Cheng L. 2009. Comparison of thermotolerance of sun-exposed peel and shaded peel of ‘Fuji’ apple. Environmental and Experimental Botany, 66:110-116

Jiang H-X, Tang N, Zheng J-G, Chen L-S*. 2009. Antagonistic actions of boron against inhibitory effects of aluminum toxicity on growth, COassimilation, ribulose-1,5-bisphosphate carboxylase/oxygenase, and photosynthetic electron transport probed by the JIP-test, of Citrus grandisseedlings. BMC Plant Biology9:102

Lin ZH, Chen LS*,Chen RB, Zhang FZ, Jiang HX, Tang N. 2009.COassimilation, ribulose-1,5-bisphosphate carboxylase/oxygenase, carbohydrates and photosynthetic electron transport probed by the JIP-test, of tea leaves in response to phosphorus supply. BMC Plant Biology,9: 43

Chen LS*, Cheng L. 2009. Photosystem 2 is more tolerant to high temperature in apple (Malus domesticaBorkh.) leaves than in fruit peel. Photosynthetica47: 112-120

Chen FX, Liu XH,Chen LS*. 2009. Developmental changes in pulp organic acid concentration and activities of acid-metabolising enzymes during the fruit development of two loquat (Eriobotrya japonicaLindl.) cultivars differing in fruit acidity. Food Chemistry114: 657-664

Han S, Tang N, Jiang HX, Yang LT, Li Y,Chen LS*. 2009. COassimilation, photosystem II photochemistry, carbohydrate metabolism and antioxidant system of citrus leaves in response to boron stress. Plant Science176: 143-153

Jiang HX, Chen LS*, Zheng JG, Han S, Tang N, Smith BR.2008.Aluminum-induced effects on Photosystem II photochemistry in Citrus leaves assessed by the chlorophyll a fluorescence transient. Tree Physiology 28(12):1863–1871

Chen LS,Li P, Cheng L. 2008.Effects of high temperature coupled with high light on the balance between photooxidation and photoprotection in the sun-exposed peel of apple.Planta228(5):745–756

Han S, Chen LS*,Jiang HX, Smith BR, Yang LT, Xie CY. 2008.Boron deficiency decreases growth and photosynthesis, and increases starch and hexoses in leaves of citrus seedlings Journal of Plant Physiology165 (13): 1331-1341

Chen LS, Cheng L. 2007.The sun-exposed peel of apple fruit has a higher photosynthetic capacity than the shaded peel.Functional Plant Biology, 34(11): 1038-1048

Chen LS*,Qi YP. 2007. Dithiothreitol decreases in vitroactivity of ADP-glucose pyrophosphorylase from leaves of apple (Malus domesticaBorkh.) and many other plant species. Phytochemical Analysis18: 300-305

Chen LS*,Qi YP, Smith BR, Liu XH. 2005. Aluminum-induced decrease in COassimilation in citrus seedlings is unaccompanied by decreased activities of key enzymes involved in COassimilation. Tree Physiology,25(3): 317-324.

Chen LS*,Qi YP, Liu XH. 2005.Effects of aluminum on light energy utilization and photoprotective systems in citrus leaves. Annals of Botany, 96 (1):35-41

Chen LS*, Nose A. 2004.Day-night changes of energy-rich compounds in Crassulacean acid metabolism (CAM) species utilizing hexose and starch. Annals of Botany,94:449-455

Chen LS,Cheng L.2004.COassimilation, carbohydrate metabolism, xanthophyll cycle and the antioxidant system of ‘Honeycrisp’ apple (Malus domesticaBorkh.) leaves with zonal chlorosis. Journal of the American Society for Horticultural Science, 129: 729-737

Chen LS,Brandon RS, Cheng L. 2004. COassimilation, photosynthetic enzymes, and carbohydrates of 'Concord' grape leaves in response to iron supply. Journal of the American Society for Horticultural Science, 129: 738-744

Chen LS,Cheng L. 2004.Photosynthetic enzymes and carbohydrate metabolism of apple leaves in response to nitrogen limitation. Journal of Horticultural Science and Biotechnology, 79: 923-930

Chen LS, Cheng L. 2003.Carbon assimilation and carbohydrate metabolism of ‘Concord’ grape leaves in responses to nitrogen supply Journal of the American Society for Horticultural Science, 128: 754-760

Chen LS, Cheng L.2003. Both xanthophyll cycle-dependent thermal dissipation and the antioxidant system are up-regulated in grape (Vitis labruscaL. cv. Concord) leaves in responses to N limitation. Journal of Experimental Botany54:2165-2175

Chen LS,Nose A.2002. A Comparative study on diurnal changes in metabolite levels in the leaves of three crassulacean acid metabolism (CAM) species, Ananas comosus, Kalanchoë daigremontianaand K. pinnata. Journal of Experimental Botany,53: 341-350

Chen LS, Nose A.2001.An improved method for extraction and measurement of the inorganic pyrophosphate in leaves of crassulacean acid metabolism (CAM) plants. Plant Production Science. 4(1): 15-19

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