科学研究:
研究方向:
“果树生理生态(根系生理、根系环境调控、节水灌溉等)”、“果树分子生物学”、“果品安全”。
代表性科研项目:
1、主持国家科技支撑计划“苹果优质高效生产关键技术研究与示范”(2014-2018)。
2、主持国家自然科学基金“土壤H2S调控苹果根系死亡与更新的分子生理机制”(2018-2021)。
3、主持国家自然科学基金“生物黑炭调控苹果根区土壤硝酸盐代谢的生物学机制”(2014-2017)。
4、主持国家自然科学基金“液泡加工酶调控苹果根系细胞死亡及根类分化的分子机理”(2012-2015)。
5、主持国家自然科学基金“苹果和葡萄根系对镉胁迫的分子识别”(2007-2009)。
6、主持国家自然科学基金“苹果根系两种含氮信使分子的生成及其与精氨酸代谢的关系”(2006-2008)。
7、主持国家自然科学基金“苹果新根分化的细胞程序性死亡机制及其调控”(2003-2005)。
8、主持国家自然科学基金“生长素调控苹果根系吸收钙离子的信息传递途径”(2002-2004)。
9、负责完成国家自然科学基金“苹果根系钙吸收特性及根际微域调控机理的研究”(1997-2000)。
主要科研成果:
主持完成的“多胺与苹果生长发育的关系”获山东省教委科技进步(理论成果)奖;作为主要成员完成的“苹果幼树土壤空间与根系功能研究”和“苹果幼树内源激素发生规律与生长调节剂选配”分别获山东省科技进步二等奖、“观光果树产业基本理论与关键技术研究与应用”获教育部科技进步二等奖、“生物因子对土壤缓冲性及苹果生长发育的影响”获临沂市政府科技进步一等奖。
代表性专利:
1、杨洪强,等. 2010. 活化天然磷肥及其制备方法. 授权号 ZL 200810016790.7,授权公告日2010.9.8
2、杨洪强,等. 2010. 一种果园渗灌灌水器. 授权号ZL 200920253254.9,授权公告日2010.7.7
3、杨洪强,等. 2011. 一种防堵塞的果园渗灌方法. 授权号ZL 200910229886.6,授权公告日2011.5.18
4、杨洪强,等. 2011. 多砧多抗果树苗木的培育方法. 授权号ZL 200910229887.0,授权公告日2011.4.20
5、杨洪强,等. 2011.一种钙肥及其泡腾片剂制作方法.授权号 ZL 200810138043.0,授权公告日2011.4.20
6、杨洪强,等. 2011. 叶面肥泡腾片剂及其制备方法.授权号ZL200810016791.1,授权公告日2011.5.18
7、杨洪强,等. 2012. 果树多孔营养砖. 授权号ZL 200910229888.5,授权公告日2012.3.28
8、杨致瑗,杨洪强,等. 2013. 果园深层土壤冻融松耕通气方法. 授权号ZL2011100682860.3,授权公告日2013.1.30
9、杨洪强,等. 2017.果园土壤通气施肥方法.授权号ZL.201510116238.5 ,授权公告日2017.03.01
10. 杨洪强,等. 2017. 果树枝条土壤利用方法.授权号ZL201510117635.4,授权公告日2017.04.05
11. 杨洪强,等. 2017. 狭缝型三联体肥料控释袋. 授权号ZL2016210537135. 授权公告日:2017.03.29
12. 杨洪强,等. 2017. 立体己字形开角曲枝夹. 授权号ZL.2016211136175. 授权公告日 2017.05.31
13、杨洪强,等.2018 一种袋型保水控释肥及其制备方法. 授权号ZL201610819583.X,授权公告日2018.8.07
14、杨洪强,等. 2018. 袋型苹果专用控释肥及其制备方法. 授权号ZL201610821178.1。授权公告日2018.8.07
论文专著:
独立编著国内第一本《有机园艺》,主编《苹果根系研究》、《绿色无公害果品生产全编》等专著10余部,副主编《现代果树生物学》,参编《山东果树》、《苹果学》等专著8部。在“科学通报”等国内外刊物上发表论文200余篇。
代表性图书:
1、杨洪强,独著《有机园艺》,中国农业出版社,2005。
2、杨洪强,独著《生态果园必读》,中国农业出版社,2010。
3、杨洪强,束怀瑞,主编《苹果根系研究》,科学出版社,2007。
4、杨洪强,主编《有机农业生产原理与技术》,中国农业出版社,2014。
5、杨洪强,主编《有机水果生产技术》,中国轻工业出版社,2013。
6、杨洪强,主编《苹果安全生产技术指南》,中国农业出版社,2012。
7、杨洪强,主编《无公害农业》,气象出版社,2009。
8、杨洪强,主编《无公害苹果标准化生产手册》,中国农业出版社,2008。
9、杨洪强,主编《绿色无公害果品生产全编》,中国农业出版社,2003。
10、杨洪强,主编《有机果品生产与管理》,中国标准出版社,2015。
11、杨洪强,主编《果树优质高效生产新技术》,中国农业科学技术出版社,2018。
12、范伟国,杨洪强,编著《细说苹果园土肥水管理》,中国农业出版社,2009。
13、张伟,杨洪强,编著《草莓标准化全面细解》,中国农业出版社,2010。
14、杨洪强,副主编《现代果树生物学》, 科学出版社,2008。
15、杨洪强,参编《山东果树》,中国农业出版社,1999。
16、杨洪强,参编《苹果学》,中国农业出版社,1998。
17、杨洪强,参编《果树分子生物学》,上海科学技术出版社,2012。
代表性期刊论文: 代表性期刊论文:
1、MhMAPK4 from Malus hupehensis Rehd. decreases cell death in tobacco roots by controlling Cd2+ uptake. Weiwei Zhang, Jianfei Song, Songqing Yue, Kaixuan Duan, Hongqiang Yang*. Ecotoxicology and Environmental Safety, 168:230-240, doi.org/10.1016/j.ecoenv.2018.09.126
2、Effect of carbonized apple wood on nitrogen-transforming microorganisms and nitrogen oxides in soil of apple tree root zone. H Cao, F Feng, M Xun, P Huang, YG Li, T Ji, GQ Wei, WW Zhang and HQ Yang*. European Journal of Soil Science,2018,69(3):545-554
3、Effect of Acid Treatment on Root Architecture in Seedlings of Malus hupehensis var. pingyiensis. Zhao Zhang, Weiguo Fan, Hongqiang Yang, Jinxu Chen, Jinwei Dong, Kejie Han, Pengfei Li, Li Wang. Agricultural Sciences, 2017, 8, 1082-1088
4、A rapid and simple protocol for isolation of functional RNA from different tissues of multiple fruit trees. Ran K, Hongqiang Yang, Sun X, Su Q., Shen W, Zhang W, Jiang Q. and Jie Y. Acta Horticulturea. 2016,1110: 163-170
5、MhNCED3, a gene encoding 9-cis-epoxycarotenoid dioxygenase in Malus hupehensis Rehd., enhances plant tolerance to Cl- stress by reducing Cl- accumulation. Wei-wei Zhang, Hong-qiang Yang*, Shu-zhen You, Shu-lei Fan, Kun Ran. Plant Physiology and Biochemistry, 2015, 89:85-91
6、Response of vacuolar processing enzyme in Malus hupehensis and MhVPEc overexpressing Arabidopsis to high temperature stress. Qian Su,Kun Ran,Xiu-Jin Men,Wei-Wei Zhang,Shu-Lei Fan,Li-Juan Yan,Hong-Qiang Yang. Acta Physiol Plant,2015, 37(4): 1-11
7、MhNCED3 in Malus hupehensis Rehd. induces NO generation under osmotic stress by regulating ABA accumulation. Wei-wei Zhang, Hong-qiang Yang*, Shu-zhen You, Kun Ran. Plant Physiology and Biochemistry, 2015,96:254-260
8、Isolation, Characterization, and Structure Analysis of a Vacuolar Processing Enzyme Gene (MhVPEγ) from Malus hupehensis (Pamp) Rehd. Ran Kun,Yang Hongqiang, Sun Xiaoli,Li Qiang ,Jiang Qianqian ,Zhang Weiwei,Shen Wei. Applied Biochemistry and Biotechnology,2014,173(2):579–595
9、Cloning, characterization and functional analysis of the role MhNCED3, a gene encoding 9-cis-epoxycarotenoid dioxygenase in Malus hupehensis Rehd plays in plant tolerance to osmotic and Cd2+ stresses. Weiwei Zhang, Hongqiang Yang, Shuzhen You, Yuting Xu ,Kun Ran,Shulei Fan. Plant Soil, 2014, 381(1):143–160
10、Using protein granularity to extract the protein sequence features. Zhi-Xin Liu, Song-lei Liu, Hong-Qiang Yang*, Li-Hua Bao, Journal of Theoretical Biology, 2013, 331: 48–53
11、The cultivar differences of root physiology in response to CdCl2 stress in 'zana' and 'autumn royal' grape. Shao Xiao-jie, Yang Hong-qiang and Ran Kun. Acta Hort. (ISHS) , 2012, 931:273-278
12、Effects of salicylic acid on growth and activities of antioxidant enzymes in Malus hupehensis Rehd. seedlings under cadmium stress. Kun Ran, Hongqiang Yang and Xiaoli Sun. Acta Hort. (ISHS), 2012, 932:295-302
13、Relationship between polyamines metabolism and cell death in roots of Malus hupehensis Rehd. under cadmium stress. JIANG Qian-qian, YANG Hong-qiang*, SUN Xiao-li, LI Qiang, RAN Kun, ZHANG Xin-rong. Journal of Integrative Agriculture, 2012, 11(7):424-429
14、Effect of soil type on root architecture and nutrient uptake by roots of young apple rootstocks. Fan W,Yang HQ. Acta Horticulturae,2011, 903(2):885-890
15、Regulation of calcium uptake and translocation in plants. Yang HQ,Jie Y,Shao X. Acta Horticulturae,2011, 903:1011-1016
16、Improving orchard water use efficiency by root treatment. Yang H,Jie Y. Acta Horticulturae,2011, 903:1203-1207
17、Nitric oxide effect on root architecture developmentin Malus seedlings. H.J. Gao, H.Q. Yang. PLANT SOIL ENVIRON., 2011, 57 (9): 418–422
18、Two enzymatic sources of nitric oxide in different organs of apple plant. GAO H.J., YANG H.Q., WANG J.Y. and WANG J.X. Biologia Plantarum. 2010, 54 (4): 789-792
19、Nitric oxide alleviates lipid peroxidation induced by osmotic stress during senescence of detached leaves of Malus hupehensis Rehd. GAO HUA-JUN, ZHAO FENG, YANG JUAN-XIA and YANG HONG-QIANG. Journal of Horticultural Science & Biotechnology, 2010, 85 (4) 367–373
20、Characterization of a novel stress-response member of the MAPK family in Malus hupehensis Rehd. Duan K-X, Yang H-Q*, Ran K , You S-Z, Zhao H-Z, Jiang Q-Q. Plant Molecular Biology Reporter, 2009, 27: 69-78
21、Arginine metabolism in roots and leaves of apple (Malus domestica Borkh.): The tissue-specific formation of both nitric oxide and polyamines. Gao H-J, Yang H-Q*, Wang J-X. Scientia Horticulturae, 2009,119 (2):147-152
22、Sodium nitroprusside promotes multiplication and regeneration of Malus hupehensis in vitro plantlets. Han X-J, Yang H-Q*, Duan K-X, Zhang X-R, Zhao H-Z, You S-Z, Jiang Q-Q. Plant Cell, Tissue and Organ Culture. 2009, 96: 29-34
23、Biology and physiology of Malus hupehensis for the apogamic plant resource. Yang H-Q, Kaixuan Duan, Wei Zhang. 2008. Acta Hort. (ISHS) 769:441-447 30 June 2008
24、The regulation of bioregulator to calcium absorption and its kinetics in apple rootstock roots. Yang H-Q, Jie Y-L, Li J, Shu H-R. 2008. Acta Hort. (ISHS) 774:259-264 31 October 2008
25、Exogenous polyamines alleviate the lipid peroxidation induced by cadmium chloride stress in Malus hupehensis Rehd. Zhao H-Z, Yang H-Q*. Scientia Horticulturae, 2008, 116(4): 442-447
26、The regulation of root pruning and soil water content affects apple leaf water use efficiency. Jie Y-L, Yang H-Q*, Zhang L-Z, Luo X-S. Acta Hort. (ISHS) , 2008, 767:345-350 31 March 2008
27、Promotion of proline accumulation in apple leaves by bioregulators. Yuling Jie, Yang H-Q*, Zhao H-Z, Zhang, Li D-Q. Acta Horticulturae, 2008, 774: 237-242 31 October 2008
28、The diurnal change of leaf water use efficiency in six fruit trees. Yuling Jie, Yang H-Q*, Zhang L-Z, Luo X-S. Acta Horticulturae, 2008, 767: 379-386
29、Bioregulator effects on the root architecture of Malus hupehensis under different phosphate conditions. Fan W-G, Yang H-Q*. Acta Hort. (ISHS)m 2008, 774:195-202
30、 Effects of phosphate uptake on root architecture of apple seedlings in water culture.Fan W-G, Yang H-Q*. Acta Horticulturae. 2008, 767:423-428
31、Root architecture of apple trees under different soil conditions. Fan W-G, Yang H-Q*. Acta Hort. 2008, 767:417-422
32、Effects of earthworm and microbe on soil nutrients and heavy metals. SHEN Wei-bao,YANG Hong-qiang. Agricultural Sciences in China. 2008, 7(5):599-605
33、Nutrient Deficiency Affects Root Architecture of Young Seedlings of Malus hupehensis (Pamp) Rehd. Under Artificial Medium Cultivation. Fan Weiguo, Yang Hongqiang. Agricultural Sciences in China, 2007, 6(3):296-303