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Caryologia
International Journal of Cytology, Cytosystematics and Cytogenetics
Volume 63, 2010 - Issue 4
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Original Articles

Awn anatomy of common wheat (Triticum aestivum L.) and its relatives

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Pages 391-397 | Received 31 May 2010, Accepted 05 Nov 2010, Published online: 04 Feb 2014

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Dongxia Wang, Dong Cao, Yuan Zong, Yun Li, Jinmin Wang, Zongren Li & Baolong Liu. (2021) Bulked QTL-Seq identified a major QTL for the awnless trait in spring wheat cultivars in Qinghai, China. Biotechnology & Biotechnological Equipment 35:1, pages 124-130.
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Articles from other publishers (20)

Sanaz Afshari-Behbahanizadeh, Gholam-Ali Akbari, Maryam Shahbazi, Sepideh Sanjari, Fulvia Rizza, Franz-Werner Badeck, Leila Farahani & Iraj Alahdadi. (2024) Barley awn dimensions and barbs changes under terminal drought stress and its relation to grain yield and carbon isotope discrimination. Cereal Research Communications.
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Wensheng Ke, Jiewen Xing, Zhaoyan Chen, Yidi Zhao, Weiya Xu, Lulu Tian, Jinquan Guo, Xiaoming Xie, Dejie Du, Zihao Wang, Yufeng Li, Jin Xu, Mingming Xin, Weilong Guo, Zhaorong Hu, Zhenqi Su, Jie Liu, Huiru Peng, Yingyin Yao, Qixin Sun & Zhongfu Ni. (2023) The TaTCP4/10–B1 cascade regulates awn elongation in wheat (Triticum aestivum L.). Plant Communications 4:4, pages 100590.
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Chuang Ma, Yawei Yu, Fuyong Liu, Lin Lin, Ke Zhang, Nan Liu & Hongzhong Zhang. (2023) Influence mechanism of awns on wheat grain Pb absorption: Awns' significant contribution to grain Pb was mainly originated from their direct absorption of atmospheric Pb at the late grain-filling stage. Ecotoxicology and Environmental Safety 257, pages 114957.
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Rut Sanchez-Bragado, Gemma Molero, José L. Araus & Gustavo A. Slafer. (2023) Awned versus awnless wheat spikes: does it matter?. Trends in Plant Science 28:3, pages 330-343.
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Grady J. Iliff, Ranit Mukherjee, Hope A. Gruszewski, David G. Schmale III, Sunghwan Jung & Jonathan B. Boreyko. (2022) Phase-change-mediated transport and agglomeration of fungal spores on wheat awns. Journal of The Royal Society Interface 19:190.
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Tianxiang Liu, Xue Shi, Jun Wang, Jiawang Song, Enshi Xiao, Yong Wang, Xin Gao, Wenzhi Nan & Zhonghua Wang. (2021) Mapping and Characterization of QTLs for Awn Morphology Using Crosses between “Double-Awn” Wheat 4045 and Awnless Wheat Zhiluowumai. Plants 10:12, pages 2588.
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Andrey B. Shcherban, Diana D. Kuvaeva, Olga P. Mitrofanova, Svetlana E. Khverenets, Alexander I. Pryanishnikov & Elena A. Salina. (2021) Targeting the B1 Gene and Analysis of Its Polymorphism Associated with Awned/Awnless Trait in Russian Germplasm Collections of Common Wheat. Plants 10:11, pages 2285.
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Fabrice Ntakirutimana & Wengang Xie. (2020) Unveiling the Actual Functions of Awns in Grasses: From Yield Potential to Quality Traits. International Journal of Molecular Sciences 21:20, pages 7593.
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R. Sanchez-Bragado, J.W. Kim, C. Rivera-Amado, G. Molero, J.L. Araus, R. Savin & Gustavo A. Slafer. (2020) Are awns truly relevant for wheat yields? A study of performance of awned/awnless isogenic lines and their response to source–sink manipulations. Field Crops Research 254, pages 107827.
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Tiago Lucini & Antônio R Panizzi. (2020) Electropenetrographic Comparison of Feeding Behavior of Dichelops furcatus (Hemiptera: Heteroptera: Pentatomidae) on Soybean and Spring Cereals. Journal of Economic Entomology 113:4, pages 1796-1803.
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Dongzhi Wang, Kang Yu, Di Jin, Linhe Sun, Jinfang Chu, Wenying Wu, Peiyong Xin, Edita Gregová, Xin Li, Jiazhu Sun, Wenlong Yang, Kehui Zhan, Aimin Zhang & Dongcheng Liu. (2020) Natural variations in the promoter of Awn Length Inhibitor 1 ( ALI‐1 ) are associated with awn elongation and grain length in common wheat . The Plant Journal 101:5, pages 1075-1090.
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Paula Pongrac, Iztok Arčon, Hiram Castillo-Michel & Katarina Vogel-Mikuš. (2020) Mineral Element Composition in Grain of Awned and Awnletted Wheat (Triticum aestivum L.) Cultivars: Tissue-Specific Iron Speciation and Phytate and Non-Phytate Ligand Ratio. Plants 9:1, pages 79.
Crossref
Ntakirutimana & Xie. (2019) Morphological and Genetic Mechanisms Underlying Awn Development in Monocotyledonous Grasses. Genes 10:8, pages 573.
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Hansjoerg Kraehmer. 2019. Grasses. Grasses 29 87 .
Ailbhe J Brazel & Diarmuid S Ó’Maoiléidigh. (2019) Photosynthetic activity of reproductive organs. Journal of Experimental Botany 70:6, pages 1737-1754.
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Bahram Masoudi, Mohsen Mardi, Eslam Majidi Hervan, Mohammad Reza Bihamta, Mohammad Reza Naghavi, Babak Nakhoda, Behnam Bakhshi, Mehrzad Ahmadi, Mohammad Taghi Tabatabaei & Mohamad Hossein Dehghani Firouzabadi. (2018) Study of QTLs linked to awn length and their relationships with chloroplasts under control and saline environments in bread wheat. Genes & Genomics 41:2, pages 223-231.
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Sarkawt Ali, Nariman Ahmad, Maki Ahmad & Dastan Ahmad. (2018) Performance of Bread Wheat (Triticum aestivum L.) Varieties under Rainfed Condition of Sulaimani. Journal of Zankoy Sulaimani - Part A 20:3-4, pages 29-36.
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Antônio R Panizzi, Tiago Lucini & Taynara Possebom. (2018) Development of Dichelops furcatus (Hemiptera: Heteroptera: Pentatomidae) Reared on Spring Cereals Versus Soybean. Journal of Insect Science 18:5.
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Jordan A. Hein, Mark E. Sherrard, Kirk P. Manfredi & Tilahun Abebe. (2016) The fifth leaf and spike organs of barley (Hordeum vulgare L.) display different physiological and metabolic responses to drought stress. BMC Plant Biology 16:1.
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G. J. Rebetzke, D. G. Bonnett & M. P. Reynolds. (2016) Awns reduce grain number to increase grain size and harvestable yield in irrigated and rainfed spring wheat. Journal of Experimental Botany 67:9, pages 2573-2586.
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