Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Crop improvement in the era of climate change: an integrated, multi-disciplinary approach for common bean (Phaseolus vulgaris)

Phillip E. McClean A B F , Jimmy Burridge C , Stephen Beebe D , Idupulapati M. Rao D and Timothy G. Porch E
+ Author Affiliations
- Author Affiliations

A Genomics and Bioinformatics Program, North Dakota State University, Fargo, ND 58102, USA.

B Department of Plant Sciences, North Dakota State University, Fargo, ND 58102, USA.

C Department of Horticulture, Pennsylvania State University, University Park, PA 16802, USA.

D Bean Program, Centro Internacional de Agricultura Tropical (CIAT), AA 6713, Cali, Colombia.

E USDA-ARS Tropical Agriculture Research Station, 2200 PA Campos Avenue, Suite 201, Mayaguez 00680, Puerto Rico.

F Corresponding author. Email: phillip.mcclean@ndsu.edu

Functional Plant Biology 38(12) 927-933 https://doi.org/10.1071/FP11102
Submitted: 26 April 2011  Accepted: 11 August 2011   Published: 8 November 2011



48 articles found in Crossref database.

Agronomic evaluation of biofortified beans in Antioquia producers’ farms
Tamayo-Vélez Álvaro, Santana-Fonseca Gloria E., Blair Mathew W., Ortiz-Muñoz Carolina
Revista Facultad Nacional de Agronomía Medellín. 2020 73(2). p.9143
Demographic factors shaped diversity in the two gene pools of wild common bean Phaseolus vulgaris L.
Mamidi S, Rossi M, Moghaddam S M, Annam D, Lee R, Papa R, McClean P E
Heredity. 2013 110(3). p.267
Advances in legume research in the genomics era
Egan Ashley N., Vatanparast Mohammad
Australian Systematic Botany. 2019 32(6). p.459
Phenotypic and yield responses of common bean (Phaseolus vulgaris l.) varieties to different soil moisture levels
Geleta Refisa Jebessa, Roro Amsalu Gobena, Terfa Meseret Tesema
BMC Plant Biology. 2024 24(1).
Crop niche modeling projects major shifts in common bean growing areas
Ramirez-Cabral Nadiezhda Yakovleva Zitz, Kumar Lalit, Taylor Subhashni
Agricultural and Forest Meteorology. 2016 218-219 p.102
Rendimiento, estabilidad fenotípica y contenido de micronutrientes de fríjol biofortificado en el Caribe seco colombiano
Tofiño-Rivera Adriana Patricia, Pastrana-Vargas Iván Javier, Melo-Ríos Aslenis Emidia, Beebe Stephen, Tofiño-Rivera Rodrigo
Ciencia & Tecnología Agropecuaria. 2016 17(3). p.309
Leaf water potential-dependent leaflet closure contributes to legume leaves cool down and drought avoidance under diurnal drought stress
Feng Xiangyan, Zhong Lingfei, Tian Quanyan, Zhao Wenzhi, Cavaleri Molly
Tree Physiology. 2022
Soil Water Deficit and Physiological Issues in Plants (2021)
Bhattacharya Amitav
Biochemical indicators of drought tolerance in the common bean (Phaseolus vulgaris L.)
Andrade Estela R., Ribeiro Vinícius N., Azevedo Cleber V. G., Chiorato Alisson F., Williams Thomas C. R., Carbonell Sérgio A. M.
Euphytica. 2016 210(2). p.277
Bioestimulants on common bean (Phaseolus vulgaris L.) cultivar TAA Marhe in vitro
Katu Daniel Henrique Silva, Menezes Filho Antonio Carlos Pereira de, Andrade Christiano Lima Lobo de, Ventura Matheus Vinicius Abadia
Brazilian Journal of Science. 2022 1(12). p.42
Effect of planting date on tepary bean yield and yield components sown in Southern Botswana
Odireleng O. Molosiwa, Sylvia B. Kgokong
African Journal of Agricultural Research. 2018 13(4). p.137
Effect of heat stress on common bean under natural growing conditions in three locations in different climate zones in the state of So Paulo, Brazil
Daiana Alves da Silva, Raquel Luiza de Moura dos Reis, Joao Guilherme Ribeiro Goncalves, Sergio Augusto Morais Carbonell, Alisson Fernando Chiorato
Journal of Plant Breeding and Crop Science. 2018 10(6). p.134
Transcriptomic Response to Water Deficit Reveals a Crucial Role of Phosphate Acquisition in a Drought-Tolerant Common Bean Landrace
López Cristina María, Pineda Manuel, Alamillo Josefa M
Plants. 2020 9(4). p.445
Multi-Environment Evaluation and Genetic Characterisation of Common Bean Breeding Lines for Organic Farming Systems
Caproni Leonardo, Raggi Lorenzo, Tissi Carlo, Howlett Sally, Torricelli Renzo, Negri Valeria
Sustainability. 2018 10(3). p.777
Chemical and isotopic markers detect water deficit and its influence on nutrient allocation in Phaseolus vulgaris
Smith Millicent R., Fuentes David, Merchant Andrew
Physiologia Plantarum. 2019 167(3). p.391
(2013)
Dwivedi Sangam, Sahrawat Kanwar, Upadhyaya Hari, Ortiz Rodomiro
Field drought conditions impact yield but not nutritional quality of the seed in common bean (Phaseolus vulgaris L.)
Smith Millicent R., Veneklaas Erik, Polania Jose, Rao Idupulapati M., Beebe Stephen E., Merchant Andrew, Struik Paul C.
PLOS ONE. 2019 14(6). p.e0217099
Genomic Designing for Abiotic Stress Resistant Pulse Crops (2022)
Dhaliwal Sandeep Kaur, Salaria Pooja, Brar Navjot Singh, Kaushik Prashant
Genome-Wide Association Studies Detect Multiple QTLs for Productivity in Mesoamerican Diversity Panel of Common Bean Under Drought Stress
Valdisser Paula Arielle Mendes Ribeiro, Müller Bárbara S. F., de Almeida Filho Janeo Eustáquio, Morais Júnior Odilon Peixoto, Guimarães Cléber Morais, Borba Tereza C. O., de Souza Isabela Pavanelli, Zucchi Maria Imaculada, Neves Leandro G., Coelho Alexandre S. G., Brondani Claudio, Vianello Rosana Pereira
Frontiers in Plant Science. 2020 11
Responses to phosphorus among wheat genotypes
McDonald Glenn, Bovill William, Taylor Julian, Wheeler Robert
Crop and Pasture Science. 2015 66(5). p.430
Análise da capacidade combinatória em feijoeiro comum submetido ao déficit hídrico
Gonçalves João Guilherme Ribeiro, Chiorato Alisson Fernando, Silva Daiana Alves da, Esteves José Antonio de Fátima, Bosetti Fátima, Carbonell Sérgio Augusto Morais
Bragantia. 2015 74(2). p.149
Combating Drought Stress Anomalies in Grain Quality of Phaseolus vulgaris : Role of Soil Amendments
Mondal Subham C., Gogoi Nirmali, Nath Dhrubajyoti
Communications in Soil Science and Plant Analysis. 2024 55(8). p.1105
Heterogeneous effects of climatic conditions on Andean bean landraces and cowpeas highlight alternatives for crop management and conservation
Acosta-Quezada Pablo G., Valladolid-Salinas Edin H., Murquincho-Chuncho Janina M., Jadán-Veriñas Eudaldo, Ruiz-González Mario X.
Scientific Reports. 2022 12(1).
Why not beans?
Cavalieri Anthony, Merchant Andrew, van Volkenburgh Elizabeth
Functional Plant Biology. 2011 38(12). p.iii
Genetic variation in the trait root distribution over segregating generations of common bean
de Melo Rita Carolina, Schmit Rodolfo, Cerutti Paulo Henrique, Guidolin Altamir Frederico, Coimbra Jefferson Luís Meirelles
Euphytica. 2016 207(3). p.665
Transcriptomic and metabolomic analysis reveals that symbiotic nitrogen fixation enhances drought resistance in common bean
López Cristina Mª, Alseekh Saleh, Torralbo Fernando, Martínez Rivas Félix J, Fernie Alisdair R, Amil-Ruiz Francisco, Alamillo Josefa M, Foyer Christine
Journal of Experimental Botany. 2023 74(10). p.3203
The Root Systems in Sustainable Agricultural Intensification (2021)
Rehman Abdul, Farooq Muhammad, Lee Dong‐Jin, Siddique Kadambot H.M.
Plant Breeding Reviews (2012)
Beebe Steven
Identification of novel drought-tolerant-associated SNPs in common bean (Phaseolus vulgaris)
Villordo-Pineda Emiliano, González-Chavira Mario M., Giraldo-Carbajo Patricia, Acosta-Gallegos Jorge A., Caballero-Pérez Juan
Frontiers in Plant Science. 2015 6
Enhanced Leaf Cooling Is a Pathway to Heat Tolerance in Common Bean
Deva Chetan R., Urban Milan O., Challinor Andrew J., Falloon Pete, Svitákova Lenka
Frontiers in Plant Science. 2020 11
Plant trait relationships are maintained within a major crop species: lack of artificial selection signal and potential for improved agronomic performance
Lemoine Taïna, Violle Cyrille, Montazeaud Germain, Isaac Marney E., Rocher Aline, Fréville Hélène, Fort Florian
New Phytologist. 2023 240(6). p.2227
14C‐Partitioning and biomass allocation in common bean (Phaseolus vulgaris L.) under different moisture levels during pod filling
Morales‐Elias Norma Cecilia, Martínez‐Barajas Eleazar, Bernal‐Gracida Lilia A., García‐Esteva Antonio, Peña‐Valdivia Cecilia B., Padilla‐Chacón Daniel
Journal of Agronomy and Crop Science. 2022 208(6). p.898
Mapping Fusarium solani and Aphanomyces euteiches Root Rot Resistance and Root Architecture Quantitative Trait Loci in Common Bean
Hagerty C. H., Cuesta‐Marcos A., Cregan P. B., Song Q., McClean P., Noffsinger S., Myers J. R.
Crop Science. 2015 55(5). p.1969
Quantitative Trait Loci Associated with Drought Tolerance in Common Bean
Mukeshimana Gerardine, Butare Louis, Cregan Perry B., Blair Matthew W., Kelly James D.
Crop Science. 2014 54(3). p.923
Polyols as biomarkers and bioindicators for 21st century plant breeding
Merchant Andrew, Richter Andreas A.
Functional Plant Biology. 2011 38(12). p.934
High Sowing Densities in Rainfed Common Beans (Phaseolus vulgaris L.) in Mexican Semi-Arid Highlands under Future Climate Change
Baez-Gonzalez Alma Delia, Fajardo-Díaz Ricardo, Garcia-Romero Giovanni, Osuna-Ceja Esteban, Kiniry James R., Meki Manyowa N.
Agronomy. 2020 10(3). p.442
Genetic variation in a tepary bean (Phaseolus acutifolius A. Gray) diversity panel reveals loci associated with biotic stress resistance
Bornowski Nolan, Hart John P., Palacios Ana Vargas, Ogg Barry, Brick Mark A., Hamilton John P., Beaver James S., Buell C. Robin, Porch Timothy
The Plant Genome. 2023 16(3).
Translating Physiological Tools to Augment Crop Breeding (2023)
Ranawana S. R. W. M. C. J. K., Bramley Helen, Palta Jairo A., Siddique Kadambot H. M.
Early Metabolic and Photosynthetic Responses to Drought Stress in Common and Tepary Bean
Traub Jesse, Kelly James D., Loescher Wayne
Crop Science. 2017 57(3). p.1670
Crop Physiology Case Histories for Major Crops (2021)
Smith Millicent R., Rao Idupulapati M.
Genomic Designing of Climate-Smart Pulse Crops (2019)
De Ron A. M., Kalavacharla V., Álvarez-García S., Casquero P. A., Carro-Huelga G., Gutiérrez S., Lorenzana A., Mayo-Prieto S., Rodríguez-González A., Suárez-Villanueva V., Rodiño A. P., Beaver J. S., Porch T., Galván M. Z., Gonçalves Vidigal M. C., Dworkin M., Bedmar Villanueva A., De la Rosa L.
Inoculation of black turtle beans (Phaseolus vulgaris) with mycorrhizal fungi increases the nutritional quality of seeds
Carrara Joseph E., Reddivari Lavanya, Heller Wade P.
Plant-Environment Interactions. 2024 5(1).
Effect of drought stress on the genetic architecture of photosynthate allocation and remobilization in pods of common bean (Phaseolus vulgaris L.), a key species for food security
Berny Mier y Teran Jorge C., Konzen Enéas R., Palkovic Antonia, Tsai Siu M., Rao Idupulapati M., Beebe Stephen, Gepts Paul
BMC Plant Biology. 2019 19(1).
Genomics and Breeding for Climate-Resilient Crops (2013)
McDonald Glenn, Bovill William, Huang Chunyuan, Lightfoot David
Physiological characterization of common bean (Phaseolus vulgaris L.) under abiotic stresses for breeding purposes
Lanna Anna Cristina, Silva Renato Adolfo, Ferraresi Tatiana Maris, Mendonça João Antônio, Coelho Gesimária Ribeiro Costa, Moreira Alécio Souza, Valdisser Paula Arielle Mendes Ribeiro, Brondani Claudio, Vianello Rosana Pereira
Environmental Science and Pollution Research. 2018 25(31). p.31149
Climate change determined drought stress profiles in rainfed common bean production systems in Brazil
Heinemann Alexandre Bryan, Ramirez-Villegas Julian, Stone Luís Fernando, Didonet Agostinho Dirceu
Agricultural and Forest Meteorology. 2017 246 p.64
Genetic Mapping for Agronomic Traits in IAPAR 81/LP97-28 Population of Common Bean (Phaseolus vulgaris L.) under Drought Conditions
Elias Júlio César Ferreira, Gonçalves-Vidigal Maria Celeste, Vaz Bisneta Mariana, Valentini Giseli, Vidigal Filho Pedro Soares, Gilio Thiago Alexandre Santana, Moda-Cirino Vânia, Song Qijian
Plants. 2021 10(8). p.1568
Impact assessment of common bean availability in Brazil under climate change scenarios
Antolin Luís A.S., Heinemann Alexandre B., Marin Fábio R.
Agricultural Systems. 2021 191 p.103174

Committee on Publication Ethics

Abstract Full Text PDF (139 KB) Export Citation Get Permission

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email