selected publications
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article
- Enhancing wheat yield potential through the QFFE.perg-5A and QFEm.perg-3A associated to spike fruiting efficiency: Insights from plot-level analysis 2024
- Introgression of the sunflowerHaHB4gene in modern wheat: An advancement in resilience to deal with climate change 2024
- Updated guidelines for gene nomenclature in wheat.. TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik. 2023
- The physiology and genetics behind fruiting efficiency, a promising spike trait to improve wheat yield potential.. Journal of Experimental Botany. 2021
- Ability of in situ canopy spectroscopy to differentiate genotype by environment interaction in wheat. International Journal of Remote Sensing. 42:3660-3680. 2021
- The physiology and genetics behind fruiting efficiency: a promising spike trait to improve wheat yield potential. Journal of Experimental Botany. 2021
- Wheat yield progress and stability during the last five decades in Argentina. Field Crops Research. 2021
- Mapping QTL for spike fertility related traits in two double haploid wheat (Triticum aestivum L.) populations. bioRxiv. 2020
- Identification and validation of QTL for spike fertile floret and fruiting efficiencies in hexaploid wheat (Triticum aestivum L.).. Theoretical and Applied Genetics. 133:2655-2671. 2020
- A comprehensive study of spike fruiting efficiency in wheat. Crop Science. 60:1541-1555. 2020
- An Interdisciplinary Approach to Study the Performance of Second-generation Genetically Modified Crops in Field Trials: A Case Study With Soybean and Wheat Carrying the Sunflower HaHB4 Transcription Factor.. Frontiers in Plant Science. 11:178-178. 2020
- A comprehensive study of spike fruiting efficiency in wheat. Crop Science. 2020
- An Interdisciplinary Approach to Study the Performance of Second-generation Genetically Modified Crops in Field Trials: A Case Study With Soybean and Wheat Carrying the Sunflower HaHB4 Transcription Factor. Frontiers in Plant Science. 2020
- Photoperiod-sensitivity genes (Ppd-1): Quantifying their effect on the photoperiod response model in wheat. Journal of Experimental Botany. 2020
- Water and radiation use efficiencies in maize: Breeding effects on single-cross Argentine hybrids released between 1980 and 2012. Field Crops Research. 2020
- Photoperiod-sensitivity Genes (Ppd-1): Quantifying Their Effect on the Photoperiod Response Model in Wheat. Journal of Experimental Botany. 71:1185-1198. 2019
- Field-grown transgenic wheat expressing the sunflower gene HaHB4 significantly outyields the wild type. Journal of Experimental Botany. 70:1669-1681. 2019
- Photoperiod-sensitivity genes shape floret development in wheat.. Journal of Experimental Botany. 70:1339-1348. 2019
- Changes in Number and Weight of Wheat and Triticale Grains to Manipulation in Source-Sink Relationship. International Journal of Agronomy. 2019:1-9. 2019
- Field-grown transgenic wheat expressing the sunflower gene HaHB4 significantly outyields the wild type. Journal of Experimental Botany. 2019
- Photoperiod-sensitivity genes shape floret development in wheat. Journal of Experimental Botany. 2019
- Wheat pre-anthesis development as affected by photoperiod sensitivity genes (Ppd-1) under contrasting photoperiods.. Functional Plant Biology. 45:645-657. 2018
- Correction to: Strategic crossing of biomass and harvest index—source and sink—achieves genetic gains in wheat (Euphytica, (2017), 213, 257, 10.1007/s10681-017-2040-z). Euphytica. 2018
- Correction to: Strategic crossing of biomass and harvest index-source and sink-achieves genetic gains in wheat.. Euphytica. 214:9. 2018
- Strategic crossing of biomass and harvest index—source and sink—achieves genetic gains in wheat. Euphytica. 213:1-23. 2017
- Fruiting efficiency in wheat (Triticum aestivum L): Trait response to different growing conditions and its relation to spike dry weight at anthesis and grain weight at harvest. Field Crops Research. 2017
- Strategic crossing of biomass and harvest index—source and sink—achieves genetic gains in wheat. Euphytica. 2017
- Fruiting efficiency: An alternative trait to further rise wheat yield. Food and Energy Security. 2015
- Grain weight response to different postflowering source:Sink ratios in modern high-yielding argentinean wheats differing in spike fruiting efficiency. Crop Science. 2014
- Wheat grain number: Identification of favourable physiological traits in an elite doubled-haploid population. Field Crops Research. 2014
- Spike fertility and duration of stem elongation as promising traits to improve potential grain number (and yield): Variation in modern Argentinean wheats. Crop Science. 2011
- Wheat floret survival as related to pre-anthesis spike growth. Journal of Experimental Botany. 2011
- Autophagy regulated by day length determines the number of fertile florets in wheat. Plant Journal. 2008
- Floret development and survival in wheat plants exposed to contrasting photoperiod and radiation environments during stem elongation. Functional Plant Biology. 2005
- Photoperiod during stem elongation in wheat: Is its impact on fertile floret and grain number determination similar to that of radiation?. Functional Plant Biology. 2005
- Pre-anthesis development and number of fertile florets in wheat as affected by photoperiod sensitivity genes Ppd-D1 and Ppd-B1. Euphytica. 2005
- Floret development and spike growth as affected by photoperiod during stem elongation in wheat. Field Crops Research. 2003
- Grain and floret number in response to photoperiod during stem elongation in fully and slightly vernalized wheats. Field Crops Research. 2003
- Vernalization and photoperiod responses in wheat pre-flowering reproductive phases. Field Crops Research. 2002
- Photoperiod sensitivity during stem elongation as an avenue to raise potential yield in wheat. Euphytica. 2001
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