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            果樹品質(zhì)與抗性生物學(xué)學(xué)科組

            課題組以蘋果和桃為研究材料,運(yùn)用遺傳學(xué)、基因組學(xué)、分子生物學(xué)等手段,研究植物激素和環(huán)境信號調(diào)控果樹逆境脅迫應(yīng)答和果實(shí)重要品質(zhì)性狀形成的機(jī)制,為改進(jìn)栽培管理技術(shù)和培育優(yōu)質(zhì)高抗新品種提供理論依據(jù)和技術(shù)支撐。


            研究組長

            姓 ? 名 安建平 學(xué) ? 歷 博士
            職 ? 稱 研究員 職 ? 務(wù) 博士生導(dǎo)師, PI
            通訊地址 武漢市東湖新技術(shù)開發(fā)區(qū)九峰一路201號
            郵政編碼 430074 電子郵箱 anjianping@wbgcas.cn
            ????????
            姓 名: 安建平
            學(xué) 歷: 博士
            職 稱: 研究員
            職 務(wù): 博士生導(dǎo)師, PI
            通訊地址: 武漢市東湖新技術(shù)開發(fā)區(qū)九峰一路201號
            郵政編碼: 430074
            電子郵箱: anjianping@wbgcas.cn

            簡要履歷
            安建平,山東東營人,中國科學(xué)院武漢植物園研究員,博士生導(dǎo)師。2020年在山東農(nóng)業(yè)大學(xué)園藝科學(xué)與工程學(xué)院果樹學(xué)專業(yè)獲得博士學(xué)位,導(dǎo)師是郝玉金教授。2020年畢業(yè)后留校任教,受聘山東農(nóng)業(yè)大學(xué)校聘教授。2023年受聘中國科學(xué)院武漢植物園研究員。主要研究方向?yàn)楣麡浞肿由飳W(xué),涉及果樹逆境脅迫應(yīng)答和果實(shí)重要品質(zhì)性狀形成與調(diào)控的機(jī)理研究,相關(guān)研究成果發(fā)表在Plant Cell、New Phytologist、Plant Biotechnology Journal、Plant Physiology、Plant Journal等植物學(xué)經(jīng)典期刊。
            社會(huì)任職
            • Fruit Research、Horticulture Advances期刊青年編委/科學(xué)編輯
            • Plant Cell、New Phytologist、Plant Physiology、Plant Journal、園藝學(xué)報(bào)等期刊審稿人

            研究組科研項(xiàng)目

            • 信息正在整理中……

            研究組代表成果

            代表性論文:
            1. An JP, Zhao L, Cao YP, Ai D, Li MY, You CX, Han YP. 2024. The SMXL8-AGL9 module mediates strigolactone-gibberellin crosstalk to regulate strigolactone-induced anthocyanin biosynthesis in apple. The Plant Cell. https://doi.org/10.1093/plcell/koae191.
            2. Ai D, Zhao L, You CX, Han Y, An JP. 2024. Apple SINA11-JAZ2 module is involved in jasmonate signaling response. Journal of Integrative Plant Biology. https://doi.org/10.1111/jipb.13713.
            3. Li HL, Xu RR, Guo XL, Liu YJ, You CX, Han Y, An JP. 2024. The MdNAC72-MdABI5 module acts as an interface integrating jasmonic acid and gibberellin signals and undergoes ubiquitination-dependent degradation regulated by MdSINA2 in apple. New Phytologist. https://doi.org/10.1111/nph.19888.
            4. An JP, Xu RR, Wang XN, Zhang XW, You CX, Han Y. 2024. MdbHLH162 connects the gibberellin and jasmonic acid signals to regulate anthocyanin biosynthesis in apple. Journal of Integrative Plant Biology,?66(2):265-284.
            5. Li HL, Liu ZY, Wang XN, Han Y, You CX, An JP. 2023. E3 ubiquitin ligases SINA4 and SINA11 regulate anthocyanin biosynthesis by targeting the IAA29-ARF5-1-ERF3 module in apple. Plant, Cell & Environment,46(12):3902-3918.
            6. An JP, Liu ZY, Zhang XW, Wang DR, Zeng FC, You CX, Han Y. 2023. Brassinosteroid signaling regulator BIM1 integrates brassinolide and jasmonic acid signaling during cold tolerance in apple. Plant Physiology, 193(2):1652-1674.
            7. Zhang XW, Xu RR, Liu Y, You CX, An JP. 2023. MdVQ10 promotes wound-triggered leaf senescence in association with MdWRKY75 and undergoes antagonistic modulation of MdCML15 and MdJAZs in apple. The Plant Journal, 115(6):1599-1618.
            8. An JP, Li HL, Liu ZY, Wang DR, You CX, Han Y. 2023. The E3 ubiquitin ligase SINA1 and the protein kinase BIN2 cooperatively regulate PHR1 in apple anthocyanin biosynthesis. Journal of Integrative Plant Biology,? 65(9):2175-2193.
            9. An JP, Zhang XW, Li HL, Wang DR, You CX, Han Y. 2023. The E3 ubiquitin ligases SINA1 and SINA2 integrate with the protein kinase CIPK20 to regulate the stability of RGL2a, a positive regulator of anthocyanin biosynthesis. New Phytologist,? 239(4):1332-1352.
            10. Liu Y, Zhang XW, Liu X, Zheng PF, Su L, Wang GL, Wang XF, Li YY, You CX, An JP. 2022. Phytochrome interacting factor MdPIF7 modulates anthocyanin biosynthesis and hypocotyl growth in apple. Plant Physiology, 188(4):2342-2363.
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