【因故推迟】第二十一届全国植物基因组学大会第二轮会议通知(会议时间:2021年8月19日-22日)
|
姓名 |
单位 |
报告题目 |
1 |
陈立余 |
福建农林大学 |
The red pineapple genome and the domestication of clonally propagated plants |
2 |
陈玲玲 |
广西大学 |
Constructing gap-free genome and pan-genome in crops |
3 |
傅向东 |
中国科学院遗传与发育生物学研究所 |
Improving nitrogen use efficiency towards sustainable green revolution |
4. |
高彩霞 |
中国科学院遗传与发育生物学研究所 |
Next generation CRISPR technologies and their applications in crop improvement |
5 |
关雪莹 |
浙江大学 |
Non-coding genes in adaptive evolution of polyploid cotton |
6 |
郭亮 |
华中农业大学 |
Dissection of the genetic basis of natural variation of seed oil content inBrassica napus |
7 |
黄三文 |
中国农业科学院农业基因组研究所 |
Genomic design of hybrid potato |
8 |
贾桂芳 |
北京大学 |
Epitranscriptome engineering-based boost of crop productivity |
9 |
焦远年 |
中国科学院植物研究所 |
|
10 |
孔凡江 |
广州大学 |
The genetic and genomic bases of soybean photoperiod flowering and adaptation |
11 |
李云峰 |
西南大学 |
Molecular mechanism of spikelet development in rice |
12 |
刘云峰 |
广西大学 |
Dissection of the regulation of small nuclear RNAs (snRNAs) inArabidopsis |
13 |
鲁非 |
中国科学院遗传与发育生物学研究所 |
Triticumpopulation sequencing unveils adaptive evolution of polyploid wheat |
14 |
罗杰 |
海南大学 |
Variation of plant metabolism – from single gene to gene cluster |
15 |
欧阳亦聃 |
华中农业大学 |
A journey to understanding speciation based on the rice model |
16 |
戚益军 |
清华大学 |
Genome-wide identification of RNA-chromatin interactions reveals co-regulatory networks of gene expression inArabidopsis |
17 |
田志喜 |
中国科学院遗传与发育生物学研究所 |
|
18 |
王二涛 |
中国科学院分子植物科学卓越创新中心 |
Plant-microbesymbioses and nutrient uptake |
19 |
王海峰 |
广西大学 |
Epigenetic and genetic mechanism for expression bias of homologous alleles in polyploid sugarcane |
20 |
王海洋 |
华南农业大学 |
Functional genomics studies accelerate molecular breeding of maize |
21 |
王兴春 |
山西农业大学 |
|
22 |
王勇 |
中国科学院分子植物科学卓越创新中心 |
Genome-enabled synthetic biology research of plant bioactive products |
23 |
魏桐 |
深圳华大生命科学研究院 |
The domestication history of cultivated lettuce revealed by resequencing of 445Lactucaaccessions |
24 |
吴俊 |
南京农业大学 |
The genetic basis and molecular breeding of fruit traits in pear |
25 |
许操 |
中国科学院遗传与发育生物学研究所 |
ROS regulated reversible protein phase separation synchronizes plant flowering |
26 |
严建兵 |
华中农业大学 |
The genetic mechanism of heterosis utilization in maize improvement |
27 |
杨芳 |
华中农业大学 |
The epigenetic control of inflorescence development in maize |
28 |
杨靖 |
国家蛋白质科学中心 |
Mapping and quantification of the cysteine redoxome |
29 |
杨淑华 |
中国农业大学 |
Molecular mechanism of cold tolerance in maize |
30 |
余泓 |
中国科学院遗传与发育生物学研究所 |
A route tode novodomestication of wild allotetraploid rice |
31 |
张积森 |
福建农林大学 |
Genomic insights into the recent chromosome reduction and polyploidization of complex autopolyploid sugarcaneS.spontaneum |
32 |
张立新 |
河南大学 |
|
33 |
张亮生 |
浙江大学 |
The genome, origin and diversity of angiosperms |
34 |
张兴坦 |
中国农科院深圳农业基因组研究所 |
Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plantCamellia sinensis |
35 |
赵毓 |
华中农业大学 |
Histone deacetylases control lysine acetylation of
ribosomal proteins in rice |
36. |
赵忠 |
中国科学技术大学 |
WUSCHEL triggers innate antiviral immunity in plant stem cells |
37 |
钟思林 |
香港中文大学 |
Understand plant gene expression at the epigenome and cistrome levels |
|
姓名 |
单位 |
报告题目 |
1. |
陈园园 |
华中农业大学 |
Genome-wide association mapping of the maize leaf and kernel ionome provides a route for cadmium cropremediation |
2. |
顾周琳 |
中国科学院分子植物科学卓越创新中心 |
A comprehensive analysis of cytoplasmic and nuclear genome variations demonstrates trajectory and future improvement strategies of hybrid rice breeding |
3. |
刘芬梅 |
广西大学 |
Structural basis for zinc-induced activation of a zinc uptake transcriptional regulator |
4. |
张焕凯 |
山东农业大学 |
Auxin Response Factor 3 specifies apical stem cell niches via the histone acetylation regulatory protein complex |
5. |
周聪 |
武汉大学 |
Balancing selection and wild gene pool contribute to resistance in global rice germplasm against planthopper |