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Plant, Cell & Environment|September 12, 2021
Characterization of epidermal bladder cells in Chenopodium quinoaSophie L Otterbach, Holly Khoury, Thusitha Rupasinghe, et al.Plant Physiology|December 15, 2015
Identification of a Stelar-Localized Transport Protein That Facilitates Root-to-Shoot Transfer of Chloride in ArabidopsisBo Li, Caitlin Byrt, Jiaen Qiu, et al.Frontiers in Plant Science|April 16, 2019
Unmanned Aerial Vehicle-Based Phenotyping Using Morphometric and Spectral Analysis Can Quantify Responses of Wild Tomato Plants to Salinity StressKasper Johansen, Mitchell J L Morton, Yoann M Malbeteau, et al.The New Phytologist|February 13, 2013
The response of the maize nitrate transport system to nitrogen demand and supply across the lifecycleTrevor Garnett, Vanessa Conn, Darren Plett, et al.The New Phytologist|October 21, 2011
Rice DUR3 mediates high-affinity urea transport and plays an effective role in improvement of urea acquisition and utilization when expressed in ArabidopsisWei-Hong Wang, Barbara Köhler, Feng-Qiu Cao, et al.The EMBO Journal|May 3, 2003
Functional analysis of AtHKT1 in Arabidopsis shows that Na(+) recirculation by the phloem is crucial for salt tolerancePierre Berthomieu, Geneviève Conéjéro, Aurélie Nublat, et al.Nature Communications|May 20, 2024
SOS1 tonoplast neo-localization and the RGG protein SALTY are important in the extreme salinity tolerance of Salicornia bigeloviiOctavio R Salazar, Ke Chen, Vanessa J Melino, et al.Environmental Pollution (Barking, Essex : 1987)|July 20, 2021
The impact of COVID-19 lockdowns on surface urban heat island changes and air-quality improvements across 21 major cities in the Middle EastAhmed M El Kenawy, Juan I Lopez-Moreno, Matthew F McCabe, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|August 1, 2018
Mapping of novel salt tolerance QTL in an Excalibur × Kukri doubled haploid wheat populationMuhammad A Asif, Rhiannon K Schilling, Joanne Tilbrook, et al.Scientific Reports|May 29, 2024
North American pitseed goosefoot (Chenopodium berlandieri) is a genetic resource to improve Andean quinoa (C. quinoa)Peter J Maughan, David E Jarvis, Eulogio de la Cruz-Torres, et al.Pageof 17