Performance of Mesoamerican bean (Phaseolus vulgaris L.) lines in an unfertilized oxisol

被引:1
作者
Beaver, James S. [1 ]
Gonzalez-Velez, Abiezer [1 ]
Lorenzo-Vazquez, Giovanni [2 ]
Macchiavelli, Raul [1 ]
Porch, Timothy G. [2 ]
Estevez-de-Jensen, Consuelo [1 ]
机构
[1] Univ Puerto Rico, Agr Expt Stn, POB 9000, Mayaguez, PR 00681 USA
[2] USDA ARS, Trop Agr Res Stn, 2200 PA Campos Ave,Suite 201, Mayaguez, PR 00680 USA
来源
AGRONOMIA MESOAMERICANA | 2021年 / 32卷 / 03期
关键词
plant breeding; soil fertility; symbiotic nitrogen fixation; Rhizobium; carbon isotope discrimination; SYMBIOTIC NITROGEN-FIXATION; CARBON-ISOTOPE DISCRIMINATION; DROUGHT RESISTANCE; NATURAL-ABUNDANCE; BEAN/COWPEA CRSP; COMMON; REGISTRATION; SELECTION; CROP; GERMPLASM;
D O I
10.15517/am.v32i3.44498
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Introduction. Common beans (Phaseolus vulgaris L.) in Central America and the Caribbean are often produced on low fertility soils which reduces crop yield. Bean breeding programs need to identify genotypes that have superior adaptation to these conditions. Objective. Identify Mesoamerican bean germplasm lines with superior adaptation to low soil fertility. Materials and methods. The performance of twenty-seven Mesoamerican bean (Phaseolus vulgaris L.) lines from the Bean Abiotic Stress Evaluation (BASE) 120 panel were evaluated in an unfertilized oxisol at Isabela, Puerto Rico over five growing seasons (four-year period from 2015-2018). The lines were inoculated with a mixture of Rhizobium etli and R. tropici to promote symbiotic nitrogen fixation (SNF). Results. Four lines produced mean seed yields >1,200 kg ha(-1) and had estimates of nitrogen derived from the atmosphere (NDFA) >50 %. Greater nodule number was positively correlated with % NDFA, later maturity and seed yield. The heat and drought tolerant small red cultivar 'Rojo Chorti and the heat tolerant white cultivar 'Verano' had among the smallest apparent C isotope discrimination values suggesting greater water use efficiency. Among the elite lines in the trial, root rot damage was minimal and the basal root growth angles were intermediate (40-6() %), which favored the uptake of water and soil nutrients. Conclusion. Mesoamerican bean lines with superior seed yield and enhanced symbiotic nitrogen fixation in a low fertility soil were identified. Many of these lines also possess resistance to other biotic and abiotic factors that limit bean seed yield in Central America and the Caribbean.
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收藏
页码:701 / 718
页数:18
相关论文
共 56 条
[11]   Selection for drought resistance in common bean also improves yield in phosphorus limited and favorable environments [J].
Beebe, Stephen E. ;
Rao, Idupulapati M. ;
Cajiao, Cesar ;
Grajales, Miguel .
CROP SCIENCE, 2008, 48 (02) :582-592
[12]   Phenotyping common beans for adaptation to drought [J].
Beebe, Stephen E. ;
Rao, Idupulapati M. ;
Blair, Matthew W. ;
Acosta-Gallegos, Jorge A. .
FRONTIERS IN PHYSIOLOGY, 2013, 4
[13]   BREEDING COMMON BEAN FOR IMPROVED BIOLOGICAL NITROGEN-FIXATION [J].
BLISS, FA .
PLANT AND SOIL, 1993, 152 (01) :71-79
[14]  
Chaves-Barrantes N. F., 2015, CENTA PIP VAR FRIJ R
[15]  
Davis J.G., 2009, Fertilizing Dry Beans
[16]   Comparison of common bean (Phaseolus vulgaris L.) genotypes for nitrogen fixation tolerance to soil drying [J].
Devi, Mura Jyostna ;
Sinclair, Thomas R. ;
Beebe, Stephen E. ;
Rao, Idupulapati M. .
PLANT AND SOIL, 2013, 364 (1-2) :29-37
[17]   Agronomic performance of common bean (Phaseolus vulgaris L.) lines in an Oxisol [J].
Dorcinvil, Ronald ;
Sotomayor-Ramirez, David ;
Beaver, James .
FIELD CROPS RESEARCH, 2010, 118 (03) :264-272
[18]   Response to selection for improved nitrogen fixation in common bean (Phaseolus vulgaris L.) [J].
Farid, Mehdi ;
Earl, Hugh J. ;
Pauls, K. Peter ;
Navabi, Alireza .
EUPHYTICA, 2017, 213 (04)
[19]   N2 fixation ability of different dry bean genotypes [J].
Farid, Mehdi ;
Navabi, Alireza .
CANADIAN JOURNAL OF PLANT SCIENCE, 2015, 95 (06) :1243-1257
[20]   CARBON ISOTOPE DISCRIMINATION AND PHOTOSYNTHESIS [J].
FARQUHAR, GD ;
EHLERINGER, JR ;
HUBICK, KT .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1989, 40 :503-537