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Frontiers in Plant Science|April 3, 2023
<i>AtCIPK16</i>, a CBL-interacting protein kinase gene, confers salinity tolerance in transgenic wheatKhadija Imtiaz, Moddassir Ahmed, Nazish Annum, et al.Plant, Cell & Environment|February 23, 2024
Leaf and shoot apical meristem transcriptomes of quinoa (Chenopodium quinoa Willd.) in response to photoperiod and plant developmentNathaly Maldonado-Taipe, Elodie Rey, Mark Tester, et al.Plos One|May 15, 2014
High-throughput phenotyping to detect drought tolerance QTL in wild barley introgression linesNora Honsdorf, Timothy John March, Bettina Berger, et al.BMC Genomics|September 17, 2016
Generation of different sizes and classes of small RNAs in barley is locus, chromosome and/or cultivar-dependentMichael Hackenberg, Antonio Rueda, Perry Gustafson, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|May 28, 2021
Breeding crops for climate resiliencePeter Langridge, Hans Braun, Brent Hulke, et al.BMC Plant Biology|December 22, 2007
TaMSH7: a cereal mismatch repair gene that affects fertility in transgenic barley (Hordeum vulgare L.)Andrew H Lloyd, Andrew S Milligan, Peter Langridge, et al.Plant Physiology|May 25, 2011
Phosphate utilization efficiency correlates with expression of low-affinity phosphate transporters and noncoding RNA, IPS1, in barleyChun Y Huang, Neil Shirley, Yusuf Genc, et al.Cellular & Molecular Biology Letters|October 16, 2002
In silico analysis on frequency and distribution of microsatellites in ESTs of some cereal speciesRajeev K Varshney, Thomas Thiel, Nils Stein, et al.Functional Plant Biology : FPB|June 3, 2020
Genetic variation in the root growth response of barley genotypes to salinity stressMegan C Shelden, Ute Roessner, Robert E Sharp, et al.Plant Physiology|March 1, 2005
Control of sodium transport in durum wheatRomola Davenport, Richard A James, Anna Zakrisson-Plogander, et al.Pageof 27