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[調(diào)劑信息]
福建農(nóng)林大學(xué)植保學(xué)院鄭文輝團(tuán)隊調(diào)劑招生
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| 學(xué)校: | 福建農(nóng)林大學(xué) |
| 專業(yè): | 農(nóng)學(xué) |
| 年級: | 2024 |
| 招生人數(shù): | 6 |
| 招生狀態(tài): | 正在招生中 |
| 聯(lián)系方式: | ********* (為保護(hù)個人隱私,聯(lián)系方式僅限APP查看) |
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招生指標(biāo): 調(diào)劑招生6名 招生專業(yè): 090401植物病理學(xué)、095132資源利用與植物保護(hù) 團(tuán)隊簡介: 福建農(nóng)林大學(xué)植物真菌致災(zāi)及防控研究團(tuán)隊由鄭文輝教授領(lǐng)銜,依托閩臺作物有害生物綜合防治國家重點(diǎn)實驗室、植物與微生物相互作用福建省高校重點(diǎn)實驗室、福建農(nóng)林大學(xué)植物保護(hù)學(xué)院、功能基因組學(xué)研究中心組建而成。團(tuán)隊現(xiàn)有教授1人,副教授1人,講師2人。團(tuán)隊聚焦于囊泡轉(zhuǎn)運(yùn)在病原真菌-植物宿主互作中的機(jī)理研究(致病和免疫),協(xié)同研發(fā)以囊泡為載體的精準(zhǔn)靶向藥物,為病害的綠色防控提供新途徑。 團(tuán)隊研究方向:植物病理學(xué) 主要研究植物病原真菌(如稻瘟病菌、鐮刀菌)侵染寄主(如水稻、小麥等)的分子機(jī)制及寄主的分子免疫機(jī)制;利用活細(xì)胞顯微成像技術(shù)研究囊泡在細(xì)胞內(nèi)的動態(tài)轉(zhuǎn)運(yùn)機(jī)制, 包括內(nèi)吞、分泌、反向轉(zhuǎn)運(yùn), 循環(huán)分選等;研究囊泡轉(zhuǎn)運(yùn)和細(xì)胞自噬、效應(yīng)子分泌的交互機(jī)理, 解析囊泡分揀轉(zhuǎn)運(yùn)機(jī)器參與病原真菌發(fā)育及致病的作用機(jī)理。 團(tuán)隊負(fù)責(zé)人簡介: 鄭文輝,教授,博士生導(dǎo)師;獲得“國家優(yōu)秀青年科學(xué)基金(2021)”、“福建省杰出青年基金”;入選福建省“閩江學(xué)者”特聘教授、福建省高層次人才(B類)、福建省引才“百人計劃”、福建農(nóng)林大學(xué)“金山學(xué)者”高層次人才(第一層次)。主要研究囊泡轉(zhuǎn)運(yùn)系統(tǒng)調(diào)控植物病原真菌侵染作物的分子機(jī)制;解析了稻瘟病菌、鐮刀菌中多個囊泡轉(zhuǎn)運(yùn)路徑的分選轉(zhuǎn)運(yùn)機(jī)器和相關(guān)蛋白在病原真菌致病中的功能及作用機(jī)理,以通訊作者或第一作者在New Phytol、PLoS Genet、mBio、Mol Plant Pathol等學(xué)術(shù)期刊發(fā)表論文30余篇。兼任農(nóng)業(yè)部閩臺作物有害生物綜合治理重點(diǎn)實驗副主任,中國植物保護(hù)學(xué)會青年委員會委員,Phytopathology Research雜志副主編,《中國農(nóng)業(yè)科學(xué)》雜志青年編委會委員,Stress biology、Frontiers in Fungal Biology等雜志編輯/客座編輯。 學(xué)習(xí)和工作經(jīng)歷: 2003-2007,江西師范大學(xué),學(xué)士 2007-2014,福建農(nóng)林大學(xué),碩士、博士(其中2013-2014,在美國德克薩斯農(nóng)工大學(xué)及新加坡國立大學(xué),訪學(xué)) 2015-2019,福建農(nóng)林大學(xué),博士后、特聘副教授 2019-2021,新加坡淡馬錫生命科學(xué)研究院,博士后研究員(Research Fellow) 2021年7月1日-至今, 福建農(nóng)林大學(xué),教授,真菌致災(zāi)與防控研究團(tuán)隊負(fù)責(zé)人 主持基金項目: 國家重點(diǎn)研發(fā)計劃課題(2023) 國家自然科學(xué)基金面上項目(2022) 國家優(yōu)秀青年科學(xué)基金(2021) 福建省杰出青年基金(2021) 國家自然科學(xué)基金面上項目(2017) 國家自然科學(xué)基金青年項目(2016) 中國博士后基金(一等,2016) 部分代表性論文 1. Xin Chen, Poonguzhali Selvaraj, Lili Lin, Wenqin Fang, Congxian Wu, Piao Yang, Jin Zhang, Yakubu Saddeeq Abubakar, Fan Yang, Guodong Lu, Wende Liu, Zonghua Wang, Naweed I. Naqvi*, Wenhui Zheng*, Rab7/Retromer-based endolysosomal trafficking is essential for proper host invasion in rice blast, New Phytologist, 2023, 239(4):1384-1403 2. Yakubu Saddeeq Abubakar, Idris Zubair Sadiq, Aarti Aarti, Zonghua Wang*, Wenhui Zheng*, Interplay of transport vesicles during plant‑fungal pathogen interaction, Stress Biology, 2023, 22;3(1):35 3. Huawei Zheng, Lingping Li, Zhi Yu, Yanping Yuan, Qiaojia Zheng, Qiurong Xie, Guangpu Li, Yakubu Saddeeq Abubakar, Jie Zhou, Zonghua Wang, Wenhui Zheng*, FgSpa2 recruits FgMsb3, a Rab8 GAP, to the polarisome to regulate polarized trafficking, growth and pathogenicity in Fusarium graminearum, New Phytologist, 2021, 229 (3):1665-1683 4. Yi Lou, Jing Zhang, Guanghui Wang, Wenqin Fang, Shumin Wang, Yakubu Saddeeq Abubakar, Jie Zhou, Zonghua Wang*, Wenhui Zheng*, Genome-Wide Characterization of PX Domain-Containing Proteins Involved in Membrane Trafficking-Dependent Growth and Pathogenicity of Fusarium graminearum, mBio, 2021; 12(6): e0232421. doi: 10.1128/mBio.02324-21 5. Congxian Wu, Yahong Lin, Huawei Zheng, Yakubu Saddeeq Abubakar, Minghui Peng, Jingjing Li, Zhi Yu, Zonghua Wang, Naweed I Naqvi, Guangpu Li, Jie Zhou*, Wenhui Zheng*, The Retromer CSC subcomplex is recruited by MoYpt7 and sequentially sorted by MoVps17 for effective conidiation and pathogenicity of the rice blast fungus, Molecular Plant Pathology, 2021; 22 (2): 284-298 6. Xin Chen, Yakubu Saddeeq Abubakar, Chengdong Yang, Xiaxia Wang, Pengfei Miao, Mei Lin, Yuetong Wen, Qiuqiu Wu, Haoming Zhong, Yuping Fan, Meiru Zhang, Zonghua Wang, Jie Zhou*, Wenhui Zheng*, Trehalose Phosphate Synthase Complex-Mediated Regulation of Trehalose 6-Phosphate Homeostasis Is Critical for Development and Pathogenesis in Magnaporthe oryzae, mSystems, 2021; 6 (5): e0046221. doi: 10.1128/mSystems.00462-21. 7. Yakubu Saddeeq Abubakar, Han Qiu, Wenqin Fang, Huawei Zheng, Guodong Lu, Jie Zhou, Zonghua Wang*, Wenhui Zheng*, FgRab5 and FgRab7 are essential for endosomes biogenesis and non-redundantly recruit the retromer complex to the endosomes in Fusarium graminearum, Stress Biology, 2021, 1:17 8. Yingzi Yun*, Pusheng Guo, Jing Zhang, Haixia You, Pingting Guo, Huobin Deng, Yixin Hao, Limei Zhang, Xueyu Wang, Yakubu Saddeeq Abubakar, Jie Zhou, Guodong Lu, Zonghua Wang, Wenhui Zheng*, Flippases play specific but distinct roles in the development, pathogenicity and secondary metabolism of Fusarium graminearum, Molecular Plant Pathology, 2020; 21 (10): 1307-1321. 9. Muhammad Adnan, Wenqin Fang, Peng Sun, Yangling Zheng, Yakubu Saddeeq Abubakar, Jing Zhang, Yi Lou, Wenhui Zheng*, Guo‑dong Lu*, R‑SNARE FgSec22 is essential for growth, pathogenicity and DON production of Fusarium graminearum. Current Genetics, 2020, 66(2):421-435 10. Jing Zhang, Yingzi Yun, Yi Lou, Yakubu Saddeeq Abubakar, Pusheng Guo, Shumin Wang, Chunling Li, Yuan Feng, Muhammad Adnan, Jie Zhou, Guo-dong Lu*, Wenhui Zheng*, FgAP-2 complex is essential for pathogenicity and polarised growth and regulates the apical localisation of membrane lipid flippases in Fusarium graminearum. Cellular Microbiology, 2019; 21:e13041 11. Muhammad Adnan, Waqar Islam, Jing Zhang, Wenhui Zheng*, Guo-Dong Lu*, Diverse Role of SNARE Protein Sec22 in Vesicle Trafficking, Membrane Fusion, and Autophagy. Cells. 2019;8: 337 12. Ziqiang Chen(#), Wenhui Zheng(#), Longhai Chen(#), Chenglu Li, Zaijie Chen, Huibing Xu, Yijuan Han, Tingmin Liang, Lan Kong, Xu Zhao, Feng Wang, Zonghua Wang, Songbiao Chen, Green Fluorescent Protein- and Discosoma sp. Red Fluorescent Protein-Tagged Organelle Marker Lines for Protein Subcellular Localization in Rice. Frontiers in plant science, 2019, 10, 1421 13. Han Qiu, Xu Zhao, Wenqin Fang, Huiming Wu, Yakubu Saddeeq Abubakar, Guo-dong Lu, Zonghua Wang, Wenhui Zheng*, Spatiotemporal nature of Fusarium graminearum-wheat coleoptile interactions. Phytopathology Research, 2019, 1, 26 14. Huawei Zheng, Pengfei Miao, Xiaolian Lin, Lingping Li, Congxian Wu, Yakubu Saddeeq Abubakar, Justice Norvienyeku, Guangpu Li, Jie Zhou, Zonghua Wang*, Wenhui Zheng*, Small GTPase Rab7-mediated FgAtg9 trafficking is essential for autophagy-dependent development and pathogenicity in Fusarium graminearum, PLoS Genetics, 2018, 14(7): e1007546 15. Wenhui Zheng*, Yahong Lin, Wenqin Fang, Xu Zhao, Yi Lou, Guanghui Wang, Huawei Zheng, Qifu Liang, Yakubu Saddeeq Abubakar, Stefan Olsson, Jie Zhou, Zonghua Wang*, The endosomal recycling of FgSnc1 by FgSnx41-FgSnx4 heterodimer is essential for polarized growth and pathogenicity in Fusarium graminearum, New Phytologist, 2018, 219: 654-671 16. Guanghui Wang, Peng Sun, Ziwen Gong, Lianfeng Gu, Yi Lou, Lianhu Zhang, Li Su, Baohua Wang, Jie Zhou, Jin-Rong Xu, Zonghua Wang*, Wenhui Zheng*, Srk1 kinase, a SR protein-specific kinase, is important for sexual reproduction, plant infection and pre-mRNA processing in Fusarium graminearum, Environmental Microbiology, 2018, 20(9): 3261-3277 17. Piao Yang, Yunyun Chen, Huiming Wu, Wenqin Fang, Qifu Liang, Yangling Zheng, Stefan Olsson, Dongmei Zhang, Jie Zhou, Zonghua Wang*, Wenhui Zheng*, The 5-oxoprolinase is required for conidiation, sexual reproduction, virulence and deoxynivalenol production of Fusarium graminearum. Current Genetics, 2018, 64:285–301 18. Huawei Zheng, Zhongkun Guo, Yang Xi, Mingyue Yuan, Yahong Lin, Congxian Wu, Yakubu Saddeeq Abubakar, Xianying Dou, Guangpu Li, Zonghua Wang*, Wenhui Zheng*, Jie Zhou*, Sorting nexin (MoVps17) is required for fungal development and plant infection by regulating endosome dynamics in the rice blast fungus, Environmental Microbiology, 2017, 19(10), 4301–4317 19. Yakubu Saddeeq Abubakar, Wenhui Zheng*, Stefan Olsson, Jie Zhou*, Updated Insight into the Physiological and Pathological Roles of the Retromer Complex, International Journal of Molecular Science, 2017, 18(8), 1601. 20. Zheng, Wenhui(#) , Zheng, Huawei(#) , Zhao, Xu(#) , Zhang, Ying, Xie, Qiurong, Lin, Xiaolian, Chen, Ahai, Yu, Wenying, Lu, Guodong, Shim, Won-Bo, Zhou, Jie, Wang, Zonghua, Retrograde trafficking from the endosome to the trans-Golgi network mediated by the retromer is required for fungal development and pathogenicity in Fusarium graminearum, New Phytologist, 2016, 210(4):1327–1343 21. Xie, Qiurong(#) , Chen, Ahai (#), Zheng, Wenhui(#) , Xu, Huaijian, Shang, Wenjie, Zheng, Huawei, Zhang, Dongmei, Zhou, Jie, Lu, Guodong, Li, Guangpu, Wang, Zonghua, Endosomal sorting complexes required for transport-0 is essential for fungal development and pathogenicity in Fusarium graminearum, Environmental Microbiology, 2016,18(11):3742–3757 22. Ahai Chen , Qiurong Xie, Yahong Lin, Huaijian Xu, Wenjie Shang, Jun Zhang, Dongmei Zhang, Wenhui Zheng*, Guangpu Li*, Zonghua Wang*, Septins are involved in nuclear division, morphogenesis and pathogenicity in Fusarium graminearum, Fungal Genetics and Biology, 2016,94:79–87 23. Xu Zhao(#), Wenhui Zheng(#), Zhenhui Zhong, Xiaoting Chen, Airong Wang, Zonghua Wang, Genome-wide analysis of RNA-interference pathway in Brassica napus, and the expression profile of BnAGOs in response to Sclerotinia sclerotiorum infection. European journal of plant pathology. 2016, 146: 565 24. Zheng, Wenhui(#) , Zhou, Jie(#) , He, Yunlong, Xie, Qiurong, Chen, Ahai, Zheng, Huawei, Shi, Lei, Zhao, Xu, Zhang, Chengkang, Huang, Qingping, Fang, Kunhai, Lu, Guodong, Ebbole, Daniel J, Li, Guangpu, Naqvi, Naweed I,Wang, Zonghua, Retromer Is Essential for Autophagy-Dependent Plant Infection by the Rice Blast Fungus, PLoS Genetics, 2015, 11(12):e1005704 25. Zheng, Huawei(#), Zheng, Wenhui(#) , Wu, Congxian, Yang, Jie, Xi, Yang, Xie, Qiurong, Zhao, Xu, Deng, Xiaolong, Lu, Guodong, Li, Guangpu, Ebbole, Daniel, Zhou, Jie, Wang, Zonghua, Rab GTPases are essential for membrane trafficking-dependent growth and pathogenicity in Fusarium graminearum, Environmental Microbiology, 2015, 17(11):4580–4599 26. Zheng, Wenhui, Zhao, Xu, Xie, Qiurong, Huang, Qingping, Zhang, Chengkang, Zhai, Huanchen, Xu, Liping, Lu, Guodong, Shim, Won-Bo, Wang, Zonghua, A conserved homeobox transcription factor Htf1 is required for phialide development and conidiogenesis in Fusarium species, PLoS One, 2012, 7(9):e45432 27. Zheng, Yan(#), Zheng, Wenhui(#), Lin, Fucheng, Zhang, Ying, Yi, Yunping, Wang, Baohua, Lu, Guodong, Wang, Zonghua, Wu, Weiren, AVR1-CO39 is a predominant locus governing the broad avirulence of Magnaporthe oryzae 2539 on cultivated rice (Oryza sativa L.), Molecular Plant-Microbe Interactions, 2011, 24(1):13–17 團(tuán)隊主要成員: 云英子,副教授,碩士生導(dǎo)師;入選福建農(nóng)林大學(xué)金山學(xué)者青年學(xué)術(shù)新秀、校杰青;研究方向為鐮刀菌的致病機(jī)理與綜合防治。先后主持國家自然科學(xué)基金青年和面上項目、福建省自然科學(xué)基金面上項目等7項市廳級以上項目,已發(fā)表高水平科研論文20余篇。擔(dān)任SCI期刊《Frontiers in Celluar and Infection Microbiology》、《Frontiers in Fungal Biology》客座編輯,擔(dān)任《Environmental Microbiology》、《Journal of Fungi》、《Frontiers in Microbiology》等SCI期刊和《園藝學(xué)報》等國內(nèi)期刊的審稿人。擔(dān)任福建省級科技特派員及團(tuán)隊發(fā)起人。 工作經(jīng)歷: 2022.06至今:福建農(nóng)林大學(xué)植物保護(hù)學(xué)院植物病理系,副教授 2019.01-2022. 05: 福建農(nóng)林大學(xué)植物保護(hù)學(xué)院,院特聘副教授; 2015.08 -2018.12:福建農(nóng)林大學(xué)植物保護(hù)學(xué)院植物病理系,講師 2010.09-2015.06:浙江大學(xué)植物病理學(xué)專業(yè),博士 2006.09-2010.06:南京農(nóng)業(yè)大學(xué)植物保護(hù)專業(yè),學(xué)士 科研項目: 1. 國家自然科學(xué)基金面上項目:轉(zhuǎn)錄因子FocSge1調(diào)控香蕉枯萎病菌根部侵染的機(jī)制分析,2023-2026,主持 2. 福建省自然科學(xué)基金面上項目:種間特異基因FocSIX8調(diào)控香蕉枯萎病菌致病性的機(jī)制分析,2021-2024,主持 3. 國家自然科學(xué)基金青年項目:禾谷鐮刀菌中翻轉(zhuǎn)酶FgDnfA和FgDnfB在致病過程中的作用機(jī)制研究,2017-2019,主持; 4. 福建省自然科學(xué)基金面上項目:香蕉枯萎病菌外泌蛋白質(zhì)組分析及調(diào)控機(jī)制初探,2016-2019,主持; 5. 福建省教育廳中青年教師教育科研項目:禾谷鐮刀菌翻轉(zhuǎn)酶FgDnfA的功能研究,2017-2019 ,主持; 6. 福建農(nóng)林大學(xué)校杰青項目:基于比較蛋白質(zhì)組學(xué)鑒定香蕉枯萎病菌的致病關(guān)鍵效應(yīng)因子,2016-2019,主持。 主要代表論著: 1. Zheng Y, Guo P, Deng H, Lin Y, Huang G, Wu J, Lu S, Yang S, Zhou J, Zheng W, Wang Z, Yun Y. Small GTPase FoSec4-mediated protein secretion is important for polarized growth, reproduction and pathogenicity in the banana Fusarium wilt fungus Fusarium odoratissimum. J Fungi (Basel). 2022, 20;8(8):880. 2. Yang S, Zhou X, Guo P, Lin Y, Fan Q, Zuriegat Q, Lu S, Yang J, Yu W, Liu H, Lu G, Shim WB, Wang Z, Yun Y. The exocyst regulates hydrolytic enzyme secretion at hyphal tips and septa in the banana Fusarium wilt fungus Fusarium odoratissimum. Appl Environ Microbiol. 2021, 11;87(17):e0308820. 3. Zuriegat Q, Zheng Y, Liu H, Wang Z, Yun Y. Current progress on pathogenicity-related transcription factors in Fusarium oxysporum. Mol Plant Pathol. 2021, 22(7):882-895. 4. Yun Y, Guo P, Zhang J, You H, Guo P, Deng H, Hao Y, Zhang L, Wang X, Abubakar YS, Zhou J, Lu G, Wang Z, Zheng W. Flippases play specific but distinct roles in the development, pathogenicity, and secondary metabolism of Fusarium graminearum. Mol Plant Pathol. 2020, 21(10):1307-1321. 5. Yun Y, Song A, Bao J, Chen S, Lu S, Cheng C, Zheng W, Wang Z, Zhang L. Genome data of Fusarium oxysporum f. sp. cubense race 1 and tropical race 4 isolates using long-read sequencing. Mol Plant Microbe Interact. 2019, 32(10):1270-1272. 6. Yun Y, Zhou X, Yang S, Wen Y, You H, Zheng Y, Norvienyeku J, Shim WB, Wang Z. Fusarium oxysporum f. sp. lycopersici C(2)H(2) transcription factor FolCzf1 is required for conidiation, fusaric acid production, and early host infection. Curr Genet. 2019, 65(3):773-783. 7.WU Kai-li, CHEN Wei-zhong, YANG Shuai, WEN Ya, ZHENG Yu-ru, Wilfred Mabeche Anjago1,YUN Ying-zi#,WANG Zong-hua#, Isolation and identification of Fusarium oxysporum f. sp. cubense in Fujian Province, China. Journal of Integrative Agriculture. 2019 8.楊帥, 尤海霞, 李圣萱, 郭譜勝, 李美琴,云英子#&王宗華#. 尖孢鐮刀菌番茄;椭蠸NARE蛋白FolSso1的功能分析[J]. 植物病理學(xué)報, 2019(4):9. 9.云英子, 周欣, 郭譜勝,等. 禾谷鐮刀菌中磷脂酰肌醇轉(zhuǎn)運(yùn)蛋白功能分析[J]. 植物病理學(xué)報, 2017, 47(6):9. 10. Yun Y, Liu Z, Yin Y, Jiang J, Chen Y, Xu JR, Ma Z. Functional analysis of the Fusarium graminearumphosphatome. New Phytol. 2015, 207(1):119-34. 11.Yun Y, Yin D, Dawood DH, Liu X, Chen Y, Ma Z. Functional characterization ofFgERG3 and FgERG5 associated with ergosterol biosynthesis, vegetativedifferentiation and virulence of Fusarium graminearum. Fungal Genet Biol. 2014, 68:60-70. 12.Yun Y, Liu Z, Zhang J, Shim WB, Chen Y, Ma Z. The MAPKK FgMkk1 of Fusariumgraminearum regulates vegetative differentiation, multiple stress response, andvirulence via the cell wall integrity and high-osmolarity glycerol signalingpathways. Environ Microbiol. 2014, 16(7): 2023-37. 13.Yun Y, Yu F, Wang N, Chen H, Yin Y, Ma Z. Sensitivity to silthiofam,tebuconazole and difenoconazole of Gaeumannomycesgraminis var. tritici isolates from China. Pest Manag Sci. 2012, 68(8):1156-63. 招生要求與聯(lián)系方式: 1.招生要求:要求考生熱愛科研,能積極主動開展科研工作,踏實勤奮,具有團(tuán)隊精神,良好的溝通能力和執(zhí)行力。有一定的生物學(xué)背景,有做分子生物學(xué)實 驗經(jīng)歷,有一定科研經(jīng)歷的優(yōu)先考慮。 2.招生專業(yè):植物病理學(xué)、資源利用與植物保護(hù) 3.聯(lián)系方式:請有意者將簡歷(包含科研經(jīng)歷)、考研成績(含考試科目)以附件的形式發(fā)到郵箱 (yingziyun@fafu.edu.cn)。請在簡歷中著重介紹已掌握的科研技能,本科期間參加過的科研項目。 |
新蟲 (初入文壇)
新蟲 (小有名氣)
新蟲 (初入文壇)
新蟲 (小有名氣)
新蟲 (著名寫手)
新蟲 (初入文壇)
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[考研] 求調(diào)劑 一志愿蘇州大學(xué),0856化工323分 | 本科應(yīng)化 | 有專利/競賽/科研助手經(jīng)歷 | +5 | 橙子cyx 2026-03-06 | 6/300 |
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[考研] 303求調(diào)劑 +5 | forgman95 2026-03-05 | 7/350 |
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[考研] 一志愿哈爾濱工業(yè)大學(xué)0856材料與化工,前三科206,總分283,求調(diào)劑 +6 | 26考研求調(diào)劑 2026-03-06 | 6/300 |
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[考研] 324求調(diào)劑 +5 | wxz2 2026-03-03 | 8/400 |
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[考研] 08工科求調(diào)劑 +3 | 隆LLL 2026-03-06 | 4/200 |
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[考研] 一志愿山東大學(xué)105500藥學(xué)專碩,總分302求調(diào)劑 +4 | 五維天空 2026-03-04 | 8/400 |
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[考研] 0856材料與化工求調(diào)劑! +5 | 化工考生111 2026-03-04 | 11/550 |
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[考研] 267調(diào)劑求助 +5 | 聰少OZ 2026-03-04 | 5/250 |
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[考研] 材料328求調(diào)劑 +10 | 一個蘿卜02 2026-03-03 | 10/500 |
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[考研] 0856材料專碩274能調(diào)劑去哪里? +3 | 22735 2026-03-04 | 4/200 |
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[考研] 材料復(fù)試調(diào)劑 +7 | 學(xué)材料的點(diǎn) 2026-03-01 | 8/400 |
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[考研] 一志愿鄭州大學(xué),學(xué)碩,物理化學(xué), 333求調(diào)劑 +5 | 李魔女斗篷 2026-03-04 | 5/250 |
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[考研] 085600 材料與化工 298 +14 | 小西笑嘻嘻 2026-03-03 | 14/700 |
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[考研] 一志愿314求調(diào)劑 +7 | 202111120625 2026-03-03 | 7/350 |
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[考研]
085600 英一數(shù)二272求調(diào)劑
5+6
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vida_a 2026-03-01 | 47/2350 |
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[考研] 298求調(diào)劑 +3 | 人間唯你是清歡 2026-03-03 | 4/200 |
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[考研] 267求調(diào)劑 +6 | 釣魚佬as 2026-03-02 | 6/300 |
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[考研] 0857調(diào)劑 +6 | 一ll半 2026-02-28 | 8/400 |
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[考研] 272求調(diào)劑 +9 | 材紫有化 2026-02-28 | 9/450 |
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[考研] 275求調(diào)劑 +3 | L-xin? 2026-03-01 | 6/300 |
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