Identifying differentially expressed genes under heat stress and developing molecular markers in orchardgrass (Dactylis glomerataL.) through transcriptome analysis

Author:

Huang L. K.1,Yan H. D.1,Zhao X. X.1,Zhang X. Q.1,Wang J.2,Frazier T.3,Yin G.4,Huang X.1,Yan D. F.1,Zang W. J.1,Ma X.1,Peng Y.1,Yan Y. H.1,Liu W.1

Affiliation:

1. Department of Grassland Science, Animal Science and Technology College; Sichuan Agricultural University; Ya'an Sichuan 625014 China

2. Agronomy Department; University of Florida; Gainesville FL 32611 USA

3. Department of Horticulture; Virginia Tech; Blacksburg VA 24061 USA

4. Department of Crop, Soil, and Environmental Sciences; University of Arkansas; Fayetteville AR 72704 USA

Funder

National Basic Research Program of China (973 Program)

National Natural Science Foundation of China

Modern Agro-Industry Technology Research System

Publisher

Wiley

Subject

Genetics,Ecology, Evolution, Behavior and Systematics,Biotechnology

Reference71 articles.

1. Molecular Markers, Natural History and Evolution

2. Orchardgrass (Dactylis glomerata L.) EST and SSR marker development, annotation, and transferability;Bushman;Theoretical and Applied Genetics,2011

3. Genetic progress from 40 years of orchardgrass breeding in North America measured under hay management;Casler;Crop Science,2000

4. Phylogeny of the festucoid grasses of subtribe Loliinae and allies (Poeae, Pooideae) inferred from ITS and trn L-F sequences;Catalán;Molecular Phylogenetics and Evolution,2004

5. Cherepanov SK Kozhanchikov VI Matsendo AY et al 2000 Flora of the Russian Arctic: a critical review of the vascular plants occurring in the Arctic Region of the Former Soviet Union

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