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Items: 20


Potential Effects of Awn Length Variation on Seed Yield and Components, Seed Dispersal and Germination Performance in Siberian Wildrye (Elymus sibiricus L.).

Ntakirutimana F, Xiao B, Xie W, Zhang J, Zhang Z, Wang N, Yan J.

Plants (Basel). 2019 Dec 1;8(12). pii: E561. doi: 10.3390/plants8120561.


Morphological and Genetic Mechanisms Underlying Awn Development in Monocotyledonous Grasses.

Ntakirutimana F, Xie W.

Genes (Basel). 2019 Jul 30;10(8). pii: E573. doi: 10.3390/genes10080573. Review.


Genome assembly provides insights into the genome evolution and flowering regulation of orchardgrass.

Huang L, Feng G, Yan H, Zhang Z, Bushman BS, Wang J, Bombarely A, Li M, Yang Z, Nie G, Xie W, Xu L, Chen P, Zhao X, Jiang W, Zhang X.

Plant Biotechnol J. 2019 Jul 5. doi: 10.1111/pbi.13205. [Epub ahead of print]


Selection of Suitable Reference Genes for RT-qPCR Gene Expression Analysis in Siberian Wild Rye (Elymus sibiricus) under Different Experimental Conditions.

Zhang J, Xie W, Yu X, Zhang Z, Zhao Y, Wang N, Wang Y.

Genes (Basel). 2019 Jun 13;10(6). pii: E451. doi: 10.3390/genes10060451.


EST-SSR marker development based on RNA-sequencing of E. sibiricus and its application for phylogenetic relationships analysis of seventeen Elymus species.

Zhang Z, Xie W, Zhao Y, Zhang J, Wang N, Ntakirutimana F, Yan J, Wang Y.

BMC Plant Biol. 2019 Jun 3;19(1):235. doi: 10.1186/s12870-019-1825-8.


Elymus nutans genes for seed shattering and candidate gene-derived EST-SSR markers for germplasm evaluation.

Zhao Y, Zhang J, Zhang Z, Xie W.

BMC Plant Biol. 2019 Mar 13;19(1):102. doi: 10.1186/s12870-019-1691-4.


Integration of small RNAs and transcriptome sequencing uncovers a complex regulatory network during vernalization and heading stages of orchardgrass (Dactylis glomerata L.).

Feng G, Xu L, Wang J, Nie G, Bushman BS, Xie W, Yan H, Yang Z, Guan H, Huang L, Zhang X.

BMC Genomics. 2018 Oct 3;19(1):727. doi: 10.1186/s12864-018-5104-0.


Phenotype- and SSR-Based Estimates of Genetic Variation between and within Two Important Elymus Species in Western and Northern China.

Zhang Z, Xie W, Zhang J, Zhao X, Zhao Y, Wang Y.

Genes (Basel). 2018 Mar 7;9(3). pii: E147. doi: 10.3390/genes9030147.


Hybrid identification and genetic variation of Elymus sibiricus hybrid populations using EST-SSR markers.

Zhao X, Zhang J, Zhang Z, Wang Y, Xie W.

Hereditas. 2017 Dec 12;154:15. doi: 10.1186/s41065-017-0053-1. eCollection 2017.


Transcriptome Analyses Reveal Candidate Pod Shattering-Associated Genes Involved in the Pod Ventral Sutures of Common Vetch (Vicia sativa L.).

Dong R, Dong D, Luo D, Zhou Q, Chai X, Zhang J, Xie W, Liu W, Dong Y, Wang Y, Liu Z.

Front Plant Sci. 2017 Apr 27;8:649. doi: 10.3389/fpls.2017.00649. eCollection 2017.


Histological Characteristics, Cell Wall Hydrolytic Enzymes Activity and Candidate Genes Expression Associated with Seed Shattering of Elymus sibiricus Accessions.

Zhao X, Xie W, Zhang J, Zhang Z, Wang Y.

Front Plant Sci. 2017 Apr 19;8:606. doi: 10.3389/fpls.2017.00606. eCollection 2017.


Assessing and Broadening Genetic Diversity of Elymus sibiricus Germplasm for the Improvement of Seed Shattering.

Zhang Z, Zhang J, Zhao X, Xie W, Wang Y.

Molecules. 2016 Jul 1;21(7). pii: E869. doi: 10.3390/molecules21070869.


Development and cross-species transferability of EST-SSR markers in Siberian wildrye (Elymus sibiricus L.) using Illumina sequencing.

Zhou Q, Luo D, Ma L, Xie W, Wang Y, Wang Y, Liu Z.

Sci Rep. 2016 Feb 8;6:20549. doi: 10.1038/srep20549.


Potential of Start Codon Targeted (SCoT) markers to estimate genetic diversity and relationships among Chinese Elymus sibiricus accessions.

Zhang J, Xie W, Wang Y, Zhao X.

Molecules. 2015 Apr 7;20(4):5987-6001. doi: 10.3390/molecules20045987.


A genetic linkage map of tetraploid orchardgrass (Dactylis glomerata L.) and quantitative trait loci for heading date.

Xie W, Robins JG, Bushman BS.

Genome. 2012 May;55(5):360-9. doi: 10.1139/g2012-026. Epub 2012 May 3.


Genetic maps of SSR and SRAP markers in diploid orchardgrass (Dactylis glomerata L.) using the pseudo-testcross strategy.

Xie W, Zhang X, Cai H, Huang L, Peng Y, Ma X.

Genome. 2011 Mar;54(3):212-21. doi: 10.1139/G10-111.


Combination of functionalized nanoparticles and polymerase chain reaction-based method for SARS-CoV gene detection.

Gong P, He X, Wang K, Tan W, Xie W, Wu P, Li H.

J Nanosci Nanotechnol. 2008 Jan;8(1):293-300.


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