Araus J L, Serret M D, Lopes M S. 2019. Transgenic solutions to increase yield and stability in wheat: shining hope or flash in the pan? Journal of Experimental Botany, 70, 1419–1424.
Arnon D I. 1949. Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Beta vulgaris. Plant Physiology, 24, 1–15.
Cao R, Guo L, Ma M, Zhang W, Liu X, Zhao H. 2019. Identification and functional characterization of Squamosa promoter binding protein-like gene TaSPL16 in wheat (Triticum aestivum L.). Frontiers in Plant Science, 10, 212–224.
Doyle J J, Doyle J L, Brown A H, Grace J P. 1990. Multiple origins of polyploids in the Glycine tabacina complex inferred from chloroplast DNA polymorphism. Proceedings of the National Academy of Sciences of the United States of America, 87, 714–717.
Lafiandra D, Riccardi G, Shewry P R. 2014. Improving cereal grain carbohydrates for diet and health. Journal of Cereal Science, 59, 312–326.
Langridge P. 2013. Wheat genomics and the ambitious targets for future wheat production. Genome, 56, 545–547.
Lastdrager J, Hanson J, Smeekens S. 2014. Sugar signals and the control of plant growth and development. Journal of Experimental Botany, 65, 799–807.
Li N, Li Y. 2016. Signaling pathways of seed size control in plants. Current Opinion in Plant Biology, 33, 23–32.
Li P, Wu P, Chen J. 2012. Evaluation of flag leaf chlorophyll content index in 30 spring wheat genotypes under three irrigation regimes. Australian Journal of Crop Science, 6, 1123–1130.
Li Y, He N, Hou J, Xu L, Liu C, Zhang J, Wang Q, Zhang X, Wu X. 2018. Factors influencing leaf chlorophyll content in natural forests at the biome scale. Frontiers in Ecology and Evolution, 6, 64–73.
Liu H, Li H, Hao C, Wang K, Wang Y, Qin L, An D, Li T, Zhang X. 2020. TaDA1, a conserved negative regulator of kernel size, has an additive effect with TaGW2 in common wheat (Triticum aestivum L.). Plant Biotechnology Journal, 18, 1330–1342.
Ma L, Li T, Hao C, Wang Y, Chen X, Zhang X. 2016. TaGS5-3A, a grain size gene selected during wheat improvement for larger kernel and yield. Plant Biotechnology Journal, 14, 1269–1280.
Nadolska-Orczyk A, Rajchel I K, Orczyk W, Gasparis S. 2017. Major genes determining yield-related traits in wheat and barley. Theoretical and Applied Genetics, 130, 1081–1098.
Porra R J, Thompson W A, Kriedemann P E. 1989. Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophylls a and b extracted with four different solvents: verification of the concentration of chlorophyll standards by atomic absorption spectroscopy. Biochimica et Biophysica Acta (Bioenergetics), 975, 384–394.
Reif J C, Zhang P, Dreisigacker S, Warburton M L, van Ginkel M, Hoisington D, Bohn M, Melchinger A E. 2005. Wheat genetic diversity trends during domestication and breeding. Theoretical and Applied Genetics, 110, 859–864.
Saalbach I, Mora-Ramírez I, Weichert N, Andersch F, Guild G, Wieser H, Koehler P, Stangoulis J, Kumlehn J, Weschke W, Weber H. 2014. Increased grain yield and micronutrient concentration in transgenic winter wheat by ectopic expression of a barley sucrose transporter. Journal of Cereal Science, 60, 75–81.
Shewry P R, Hey S J. 2015. The contribution of wheat to human diet and health. Food and Energy Security, 4, 178–202.
Simmonds J, Scott P, Brinton J, Mestre T C, Bush M, Del Blanco A, Dubcovsky J, Uauy C. 2016. A splice acceptor site mutation in TaGW2-A1 increases thousand grain weight in tetraploid and hexaploid wheat through wider and longer grains. Theoretical and Applied Genetics, 129, 1099–1112.
Smidansky E D, Clancy M, Meyer F D, Lanning S P, Blake N K, Talbert L E, Giroux M J. 2002. Enhanced ADP-glucose pyrophosphorylase activity in wheat endosperm increases seed yield. Proceedings of the National Academy of Sciences of the United States of America, 99, 1724–1729.
Su Z, Hao C, Wang L, Dong Y, Zhang X. 2011. Identification and development of a functional marker of TaGW2 associated with grain weight in bread wheat (Triticum aestivum L.). Theoretical and Applied Genetics, 122, 211–223.
Wang S, Zhang X, Chen F, Cui D. 2015. A single-nucleotide polymorphism of TaGS5 gene revealed its association with kernel weight in Chinese bread wheat. Frontiers in Plant Science, 6, 1166–1175.
Wang W, Pan Q, Tian B, He F, Chen Y, Bai G, Akhunova A, Trick H N, Akhunov E. 2019. Gene editing of the wheat homologs of TONNEAU 1-recruiting motif encoding gene affects grain shape and weight in wheat. The Plant Journal, 100, 251–264.
Yadav D, Shavrukov, Y, Bazanova N, Chirkova L, Borisjuk N, Kovalchuk N, Ismagul A, Parent B, Langridge P, Hrmova M, Lopato S. 2015. Constitutive overexpression of the TaNF-YB4 gene in transgenic wheat significantly improves grain yield. Journal of Experimental Botany, 66, 6635–6650.
Yan X, Zhao L, Ren Y, Dong Z, Cui D, Chen F. 2019. Genome-wide association study revealed that the TaGW8 gene was associated with kernel size in Chinese bread wheat. Scientific Reports, 9, 1–10.
Zhang K, Zhang Y, Chen G, Tian J. 2009. Genetic analysis of grain yield and leaf chlorophyll content in common wheat. Cereal Research Communications, 37, 499–511.
Zhang X, Deng Z, Wang Y, Li J, Tian J. 2014. Unconditional and conditional QTL analysis of kernel weight related traits in wheat (Triticum aestivum L.) in multiple genetic backgrounds. Genetica, 142, 371–379.
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