孟颖颖博士,研究员

mengyingying@caas.cn
研究中心

作物功能基因组研究中心

创新团队

作物高光效功能基因组创新团队

课 题 组

林浩课题组

招生方向

生物化学与分子生物学

学习工作经历

2005年曲阜师范大学获学士学位;
2008年东北农业大学获硕士学位;
2012年中国农业科学院获博士学位;
2012年8月至2014年12月中国农业科学院作物科学研究所博士后;
2015年1月入选中国农业科学院“青年英才计划”D类;
2015年1月至2018年12月中国农业科学院生物技术研究所助理研究员;
2019年1月至2023年12月中国农业科学院生物技术研究所副研究员;
2024年1月至今生物技术研究所研究员。

主要研究领域与成果

长期从事苜蓿优异性状基因资源挖掘与遗传改良研究,近年来在苜蓿类胡萝卜素合成、叶片发育等重要性状基因挖掘和功能解析方面取得阶段性研究进展,相关研究成果以第一作者(含共同)发表在Plant CellMolecular PlantJournal of Experimental Botany等国际著名学术期刊上发表论文14篇,授权国家发明专利9项;先后主持承担首届国家自然基金委生物育种青年专项、国家自然科学基金、农业生物育种重大项目子课题等国家省部级项目课题10余项;荣获中国生物工程学会青年优秀论文二等奖和中国农业科学院优秀博士后奖励,入选北京市首都科技领军人才创新团队(骨干)和中国农业科学院青年英才计划D类人才)。


主要论著

1Meng Y#, Wang C#, Li Q#, Ji W, Wen J, Mysore S, Pei Y, Niu L, Lin H*. DPB3 and DPB4 proteins regulate Medicago flowering and leaf anthocyanin biosynthesis. J Genet Genomic 2023,50(6):450-453.

2Meng Y#, Zhang W#, Wang Z, Yuan F, Guo S, Lin H, Niu L. Co-expression of GR79 EPSPS and GAT generates high glyphosate-resistant alfalfa with low glyphosate residues. aBIOTECH 2023, 4(4):352-358.

3Meng Y#Wang Z#, Wang Y, Wang C, Zhu B, Liu H, Ji W, Wen J, Chu C, Tadege M, Niu L,Lin H. The MYB Activator WHITE PETAL1 Associates with MtTT8 and MtWD40-1 to Regulate Carotenoid-Derived Flower Pigmentation in Medicago truncatula. Plant Cell. 2019,31(11):2751-2767.

►Featured in Plant Cell by Carella P. Mellowed Yellow: WHITE PETAL1 Regulates Carotenoid Accumulation in Medicago Petals. 2019, 31(11):2556-2557.

►Recommended in F1000Prime as being of special significance in its field by F1000 Faculty Member Chang-Hsien Yang.

(https://facultyopinions.com/prime/thefaculty/member/1022555/contact?utm_medium=email&utm_source=prime_ypp)

4Meng Y, Wang C, Yin P, Zhu B, Zhang P, Niu L*, Lin H.Targeted mutagenesis by an optimized agrobacterium-delivered CRISPR/Cas 9 system in the model legume Medicago truncatula,” in The Model Legume Medicago truncatula, ed. F. D. Bruijn (Hoboken, NJ: Wiley), 2019,1015–1018. doi: 10.1002/9781119409144.ch130

5Meng Y#Liu H#, Wang H#, Liu Y, Zhu B, Wang Z, Hou Y, Zhang P, Wen J, Yang H, Mysore KS, Chen J, Tadege M, Niu L,Lin H.HEADLESS, a WUSCHEL homolog, uncovers novel aspects of shoot meristem regulation and leaf blade development in Medicago truncatula. J Exp Bot. 2019,70(1):149-163

6Meng Y, Hou Y, Wang H, Ji R, Liu B, Wen J, Niu L,Lin H.Targeted mutagenesis by CRISPR/Cas9 system in the model legume Medicago truncatula. Plant Cell Rep. 2017,36(2):371-374.

7Meng Y#Li H#, Wang Q, Liu B, Lin C. Blue light-dependent interaction between Cryptochrome2 and CIB1 regulates transcription and leaf senescence in soybean. Plant Cell. 2013,25(11): 4405-4420.

8Yang, D#, Zhao W#Meng, Y#Li HLiu B. A CIB1-LIKE transcription factor GmCIL10 from soybean positively regulates plant flowering. Sci China Life Sci.2015,58(3):261-269.

9Zuo, Z#Meng, Y#Yu, X#, Zhang Z#, Sun S#, Liu B,Lin C. A study of the blue-light-dependent phosphorylation, degradation, and photobody formation of Arabidopsis CRY2. Mol. Plant 2012,5(3): 726-733.

10Wang C#, Ji W#, Liu Y, Zhou P, Meng Y, Zhang P, Wen J, Mysore KS, Zhai J, Young ND, Tian Z, Niu L,Lin H.The antagonistic MYB paralogs RH1 and RH2 govern anthocyanin leaf markings in Medicago truncatula. New Phytol. 2021,229(6):3330-3344.

11Zhang P, Wang R, Wang X, Mysore KS, Wen J, Meng Y, Gu X, Niu L,Lin H.MtFULc controls inflorescence development by directly repressing MtTFL1 in Medicago truncatula. J Plant Physiol. 2021, 256:153329.

12Wang C#, Wang H#, Zhu H, Ji W, Hou Y, Meng Y, Wen J, Mysore KS, Li X, Lin H.Genome-wide identification and characterization of cytokinin oxidase/dehydrogenase family genes in Medicago truncatula. J Plant Physiol. 2021,256:153308.

13Zhu B#, Li H#, Xia X#Meng Y, Wang N, Li L, Shi J, Pei Y, Lin M, Niu L,Lin H. ATP binding cassette G transporters SGE1 and MtABCG13 control stigma exsertion. Plant Physiol. 2020,184(1):223-235.

14Lin H, Meng Y, Tadege M, Niu L*. Function of Medicago WOX genes and their diversity. THE MEDICAGO TRUNCATULA GENOME, 978-3-030-90756-3.