Tritcum urartu (2n = 2x = 14, AuAu), the A genome donor of wheat, is an important source for new genetic variation for wheat improvement due to its high photosynthetic rate and disease resistance.
Ian P KING +2 more
exaly +3 more sources
Genome-Wide Comparative Analysis of WRKY Gene Family Explores Insight Into the Evolution and Expression Divergence in the Genus <i>Triticum</i>. [PDF]
Our manuscript “Genome‐wide comparative analysis of WRKY gene family explores insight into the evolution and expression divergence in the genus Triticum” has been returned to draft so you can make corrections. In order for your manuscript to be considered by Food Science and Nutrition, please address the following items: Additional information is ...
Li X +10 more
europepmc +2 more sources
Triticum urartu is the progenitor of the A subgenome in tetraploid and hexaploid wheat. Uncovering the landscape of genetic variations in T. urartu will help us understand the evolutionary and polyploid characteristics of wheat. Here, we investigated the
Aimin Zhang, Dongcheng Liu
exaly +3 more sources
Phylogeny, chromosomal mapping and expression analyses of wheat CLAVATA pathway components suggest differential selection on receptor-like kinases, CLEs and T3 WOXes. [PDF]
SUMMARY Ensuring continuous global food security is a major challenge of the 21st century. Wheat contributes approximately 20% of the total calories consumed by humans, and an estimated 60% increase in production will be required by 2050 to meet forecast global demand. In cereals like wheat, inflorescence (ear) size and branching patterns determine the
Jeal K +4 more
europepmc +2 more sources
Characterization of the polymorphism detected for the granule-bound starch synthase (WX gene) in wild einkorn wheat. [PDF]
Abstract BACKGROUND The WX gene encodes the granule‐bound starch synthase I or waxy protein, which is the sole enzyme responsible for amylose synthesis in wheat seeds. Wild einkorn wheat (Triticum monococcum L. ssp. aegilopoides Link em. Thell.) could be an important source of variation for this gene. RESULTS This study assessed the WX gene variability
Alvarez JB, Castellano L, Guzmán C.
europepmc +2 more sources
Complete chloroplast genome of Triticum aestivum cultivar 'Keumkang' from Korea (Poaceae) and comparative chloroplast genomes of the members of the Triticum genus. [PDF]
Abstract BACKGROUND Bread wheat (Triticum aestivum L.) is a major global food crop, and understanding its maternal lineage and genetic diversity is essential for breeding, authentication, and evolutionary studies. Chloroplast genomes provide valuable markers for phylogenetic inference and cultivar discrimination; however, conventional plant DNA ...
Kim KR +6 more
europepmc +2 more sources
Urartu Krallığı’nda Din Görevlileri
Urartu Devleti M.Ö. I. binde Önasya’da güçlü bir devlet olarak karşımıza çıkmaktadır. Nitekim Urartuların egemen olduğu coğrafyada siyasi ve askeri üstünlüğünün yanı sıra dinsel alanda da önemli gelişmeler ortaya koydukları ...
Bilcan Gökce
doaj +5 more sources
Development of Hexaploid Wheat Germplasm with Resistance to Both Powdery Mildew and Stripe Rust by Introgression of Pm60 and YrU1 from Triticum urartu [PDF]
Wheat powdery mildew and stripe rust, caused by Blumeria graminis f. sp. tritici (Bgt) and Puccinia striiformis f. sp. tritici (Pst), respectively, are two devastating diseases that threaten global wheat production. Long-term reliance on a limited number
Wei Pan +13 more
doaj +2 more sources
Wheat is one of the most important food and protein sources in the world and although, in recent years wheat breeders have achieved yield gains, they are not sufficient to meet the demands of an ever-growing population. Development of high yielding wheat
Ian P KING +2 more
exaly +3 more sources
Avenin-like storage proteins affect the rheological properties and processing quality of common wheat. Triticum urartu, the A-genome donor of polyploid wheat, shows abundant variation in its glutenin subunits.
Yuhu Shen, Wenjie Chen, Baolong Liu
exaly +2 more sources

