Pingchuan Deng
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Explore the profile of Pingchuan Deng including associated specialties, affiliations and a list of published articles.
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38
Citations
378
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Recent Articles
1.
Yang X, Cheng X, Wang G, Song S, Ding X, Xiong H, et al.
Theor Appl Genet
. 2024 Jul;
137(8):191.
PMID: 39046492
Xinong 511, a new wheat-Thinopyrum ponticum variety with excellent fusarium head blight resistance, the QTLs were mapped to the wheat chromosomes 5B and 7A with named QFhb.nwafu-5B and QFhb.nwafu-7A, respectively....
2.
Wang Z, Hao W, Wang H, Deng P, Li T, Wang C, et al.
Int J Mol Sci
. 2024 Jun;
25(12).
PMID: 38928374
Cytochrome P450 monooxygenases () play a variety of physiological roles, including pesticide resistance, plant allelochemical detoxification, and hormone metabolism catalysis. However, limited information is available on the classification and expression...
3.
Rong F, Lv Y, Deng P, Wu X, Zhang Y, Yue E, et al.
Nat Commun
. 2024 Mar;
15(1):2525.
PMID: 38514635
MicroRNAs (miRNAs) play fundamental roles in many developmental and physiological processes in eukaryotes. MiRNAs in plants generally regulate their targets via either mRNA cleavage or translation repression; however, which approach...
4.
Yang G, Pan Y, Pan W, Song Q, Zhang R, Tong W, et al.
New Phytol
. 2024 Feb;
242(5):2115-2131.
PMID: 38358006
Drought is one of the major environmental constraints for wheat production world-wide. As the progenitor and genetic reservoir of common wheat, emmer wheat is considered as an invaluable gene pool...
5.
Deng P, Du X, Wang Y, Yang X, Cheng X, Huang C, et al.
Theor Appl Genet
. 2024 Jan;
137(2):36.
PMID: 38291310
A total of 90,000 capture probes derived from wheat and Thinopyrum elongatum were integrated into one chip, which served as an economical genotype for explorating Thinopyrumspecies and their derivatives. Thinopyrum...
6.
Jia J, Zhao G, Li D, Wang K, Kong C, Deng P, et al.
Mol Plant
. 2023 Oct;
16(12):1893-1910.
PMID: 37897037
Despite recent progress in crop genomics studies, the genomic changes brought about by modern breeding selection are still poorly understood, thus hampering genomics-assisted breeding, especially in polyploid crops with compound...
7.
Zhang Y, Miao H, Xiao Y, Wang C, Zhang J, Shi X, et al.
Theor Appl Genet
. 2023 Aug;
136(9):193.
PMID: 37606787
Thirty-three stable QTL for 13 yield-related traits across ten environments were identified in the PD34/MY47 RIL population, and a candidate gene TaGS5-3D in Qmt.nwafu.3D was preliminarily identified to affect grain-related...
8.
Li T, Kong C, Deng P, Li C, Zhao G, Li H, et al.
Int J Mol Sci
. 2023 Jun;
24(12).
PMID: 37373363
Crop genetic diversity is essential for adaptation and productivity in agriculture. A previous study revealed that poor allele diversity in wheat commercial cultivars is a major barrier to its further...
9.
Wang Y, Wang S, Jia X, Tian Z, Wang Y, Wang C, et al.
Mol Breed
. 2023 Jun;
41(10):60.
PMID: 37309315
Synthetic hexaploid wheat offers breeders ready access to potentially novel genetic variation in wild ancestral species. In this study, we crossed MY3478 (2 = 4 = 28, AABB) as the...
10.
Shen Y, Qin Z, Ren G, Deng P, Ji W, Jiao C, et al.
Plant Physiol
. 2023 Apr;
192(4):2703-2722.
PMID: 37067917
Alternative splicing (AS) is a gene regulatory mechanism that generates multiple transcripts of the same gene precursor by the spliceosome complex, promoting messenger RNA complexity, and proteome diversity. Although AS...