Zengjun Qi
Nanjing Agricultural University
24 Papers
108 Citations
Zengjun Qi is an academic researcher from Nanjing Agricultural University. The author has contributed to research in topics: Chromosome & Biology. The author has an hindex of 10, co-authored 20 publications.
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Papers
Development of oligonucleotides and multiplex probes for quick and accurate identification of wheat and Thinopyrum bessarabicum chromosomes
Pei Du,Lifang Zhuang,Yanzhi Wang,Li Yuan,Qing Wang,Danrui Wang,Dawadondup,Lijun Tan,Jian Shen,Haibin Xu,han zhao,Chenggen Chu,Zengjun Qi +12 more
TL;DR: New oligo and oligo multiplex probes were developed to accurately and efficiently distinguish wheat and Thinopyrum bessarabicum chromosomes and revealed chromosome variations among CS and eight wheat cultivars by a single round of FISH analysis.
103
Structural chromosome rearrangements and polymorphisms identified in Chinese wheat cultivars by high-resolution multiplex oligonucleotide FISH
Xinyi Huang,Minqiu Zhu,Lifang Zhuang,Siyu Zhang,Junjuan Wang,Xuejun Chen,Danrui Wang,Jianyong Chen,Yinguang Bao,Jie Guo,Jinlong Zhang,Yigao Feng,Chenggen Chu,Pei Du,Zengjun Qi,Honggang Wang,Peidu Chen +16 more
TL;DR: High-resolution multiplex oligonucleotide FISH revealed the frequent occurrence of structural chromosomal rearrangements and polymorphisms in widely grown wheat cultivars and their founders, indicating selective blocks in Chinese wheat varieties.
99
Identification and development of diagnostic markers for a powdery mildew resistance gene on chromosome 2R of Chinese rye cultivar Jingzhouheimai
TL;DR: Using sequential C-banding, GISH, and marker analysis, an addition chromosome with powdery mildew resistance was identified in a line derived from a cross between Chinese wheat landrace Huixianhong and rye cultivar Jingzhouheimai, showing that a resistance gene, designated PmJZHM2RL, is located in rye chromosome arm 2RL.
37
Frequent variations in tandem repeats pSc200 and pSc119.2 cause rapid chromosome evolution of open-pollinated rye
Jiangtao Guo,Yanhong Lei,Huiting Zhang,Danhua Song,Xin Liu,Zhenglan Cao,Chenggen Chu,Lifang Zhuang,Zengjun Qi +8 more
TL;DR: Results from this research confirmed rapid chromosome change and high levels of chromosome diversity in heterochromatin blocks in rye.
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