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杨中宝
教授 博士生导师 硕士生导师
性别:男
毕业院校:德国汉诺威大学
学历:研究生(博士)毕业
学位:博士
所在单位:生命科学学院
入职时间: 2012-04
所属院系: 生命科学学院
学科:细胞生物学
植物学
办公地点:青岛校区生命科学学院N2座233房间
电子邮箱:
4ff60536091e69c531c991011367c1a9559d7e4ca08520bbc2178f869dc13d7bbbae69e11bd2d6585bd2ecec1eec79a45d4ad34b85e65e60bf27d8bbc50cecccfa6ad47510810ecdff971d2fc1bb48a1bf5d127948f804cfa36bd0a9b65ff531806d3f93275ec7679d6bf54a10a22b7bdf382176b0d26c5d9a95158a7d41f0c5
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[1] Cao H# , Cui R# , Guo H , Xia Q , Zhang J , Liu W and Yang ZB*. Ca2+-dependent cytoplasmic and nuclear phosphorylation of STOP1 by CPK21 and CPK23 confers ALMT1-dependent aluminum resistance. Nature Communications, 16, 5225, 2025.
[2] Cao H# , Zhang M# , Zhu X# , Bai Z , Ma Y , Huang CF and Yang ZB*. The RAE1-STOP1-GL2-RHD6 module regulates the ALMT1-dependent aluminum resistance in Arabidopsis.. Nature Communications, 15, 6294, 2024.
[3] Wang P# , Cao H# , Quan S , Wang Y , Li M , Wei P , Zhang M , Wang H , Ma H , Li X and Yang ZB*. Nitrate improves aluminium resistance through SLAH‐mediated citrate exudation from roots. Plant Cell & Environment, 46, 3518-3541, 2023.
[4] Wang P# , Wang N# , Horst WJ and Yang ZB*. From stress to responses: aluminium-induced signalling in the root apex. Journal of Experimental Botany, 74, 1358-1371, 2023.
[5] Zhu X# , Wang P# , Bai Z# , Herde M , Ma Y , Li N , Liu S , Huang CF , Cui R , Ma H , Zhang M , Wang H , Wei T , Quan T , Zhang W , Liu C , Zhang T and Yang ZB*. Calmodulin-like protein CML24 interacts with CAMTA2 and WRKY46 to regulate ALMT1-dependent Al resistance in Arabidopsis thaliana. New Phytologist, 2471–2487, 2022.
[6] Li C , Liu G , Geng X , He C , Quan T , Hayashi KI , De Smet I , Robert HS , Ding Z and Yang ZB*. Local regulation of auxin transport in root-apex transition zone mediates aluminium-induced Arabidopsis root-growth inhibition. The Plant Journal, 108, 55-66, 2021.
[7] Chen W , Yuan D , Shan M , Yang ZB and Liu C. Single and combined effects of amino polystyrene and perfluorooctane sulfonate on hydrogen-producing thermophilic bacteria and the interaction mechanisms. Science of the Total Environment, 703, 135015, 2020.
[8] Zhang Y , Zhang J , Guo J , Zhou F , Singh S , Xu X , Xie Q , Yang Z and Huang CF. F-box protein RAE1 regulates the stability of the aluminum-resistance transcription factor STOP1 in Arabidopsis. Proc Natl Acad Sci USA, 116, 319-327, 2019.
[9] Yang ZB , Liu G , Liu J , Zhang B , Meng W , Müller B , Hayashi K , Zhang X , Zhao Z , Smet ID and Ding Z. Synergistic action of auxin and cytokinin mediates aluminum-induced root growth inhibition in Arabidopsis. EMBO Reports, 18, 1213-1230, 2017.
[10] Geng X , Walter J , Golz J , Lee JE , Ding Z and Yang ZB*. LEUNIG_HOMOLOG transcriptional co-repressor mediates aluminium sensitivity through PECTIN METHYLESTERASE46-modulated root cell wall pectin methylesterification in Arabidopsis. The Plant Journal, 90, 491-504, 2017.
[11] Yang ZB , He C , Ma Y , Herde M and Ding Z. Jasmonic Acid Enhances Al-Induced Root Growth Inhibition. Plant Physiology, 173, 1420-1433, 2017.
[12] Zhang M , Ma Y , Horst WJ and Yang ZB*. Spatial–temporal analysis of polyethylene glycol-reduced aluminium accumulation and xyloglucan endotransglucosylase action in root tips of common bean (Phaseolus vulgaris). Annals of Botany, 118, 1-9, 2016.
[13] Yang ZB , Geng X , He C , Zhang F , Wang R , Horst WJ and Ding Z. TAA1-regulated local auxin biosynthesis in the root-apex transition zone mediates the aluminum-induced inhibition of root growth in Arabidopsis. The Plant Cell, 26, 2889-2904, 2014.
[14] Yang ZB , Eticha D , Führs H , Heintz D , Ayoub D , Van Dorsselaer A , Schlingmann B , Rao IM , Braun HP and Horst WJ. Proteomic and phosphoproteomic analysis of polyethylene glycol-induced osmotic stress in root tips of common bean (Phaseolus vulgaris L.). Journal of Experimental Botany, 64, 5569-5586, 2013.
[15] Yang ZB , Rao IM and Horst WJ. Interaction of aluminium and drought stress on root growth and crop yield on acid soils. Plant and soil, 372, 3, 2013.
[16] Yang ZB , Eticha D , Albacete A , Rao IM , Roitsch T and Horst WJ. Physiological and molecular analysis of the interaction between aluminium toxicity and drought stress in common bean (Phaseolus vulgaris). Journal of Experimental Botany, 63, 3109-3125, 2012.
[17] Yang ZB , Eticha D , Rao IM , Rotter B and Horst WJ*. Physiological and molecular analysis of polyethylene glycol-induced reduction of aluminium accumulation in the root tips of common bean (Phaseolus vulgaris). New Phytologist, 192, 99-113, 2011.
[18] Yang ZB , Eticha D , Rao IM and Horst WJ*. Alteration of cell-wall porosity is involved in osmotic stress-induced enhancement of aluminium resistance in common bean (Phaseolus vulgaris L.). Journal of Experimental Botany, 61, 3245-3258, 2010.
[19] Eticha D , Zahn M , Bremer M , Yang Z , Rangel AF , Rao IM and Horst WJ*. Transcriptomic analysis reveals differential gene expression in response to aluminium in common bean (Phaseolus vulgaris) genotypes. Annals of Botany, 105, 1119-1128, 2010.
[20] Yang ZB , You JF , Xu MY and Yang ZM*. Interaction between aluminum toxicity and manganese toxicity in soybean (Glycine max). Plant and Soil, 319, 277-289, 2009.
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