Water relationships and high temperatures in “Flor de Mayo” type beans

Soil water deficit and high air temperature effects on plant water relations and canopy temperature (CT), and seed yield (SY) and its components in 8 “Flor de mayo” (FM) bean varieties and a landrace were studied. Three experiments were carried on under field conditions; montecillo irrigation (MI) w...

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Detalles Bibliográficos
Autores: Barrios-Gómez, Edwin Javier, López-Castañeda, Cándido, Kohashi-Shibata, Josué
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2010
País:Costa Rica
Institución:Universidad de Costa Rica
Repositorio:Portal de Revistas UCR
Idioma:español
OAI Identifier:oai:portal.ucr.ac.cr:article/6690
Acceso en línea:https://revistas.ucr.ac.cr/index.php/agrocost/article/view/6690
Access Level:acceso abierto
Palabra clave:Phaseolus vulgaris L
potencial hídrico
osmótico y de turgencia
ajuste osmótico
calor
temperatura del frijol Flor de mayo
riego
secano
Phaseolus vulgaris L.
water
osmotic and turgor potentials
osmotic adjustment
heat
canopy temperature
irrigation
rainfed
Descripción
Sumario:Soil water deficit and high air temperature effects on plant water relations and canopy temperature (CT), and seed yield (SY) and its components in 8 “Flor de mayo” (FM) bean varieties and a landrace were studied. Three experiments were carried on under field conditions; montecillo irrigation (MI) with watering from sowing to maturity, montecillo rain-fed (MRF) with rainfall as the only source of water and Celaya rain-fed (CRF) with rainfall + 2 supplementary waterings at flowering. Rates of 80 kg.ha-1 Nitrogen and 40 kg.ha-1 Phosphorous were used. Leaf water (Ψ=-0.33 Mpa), osmotic (π=-1.26 mpa) and turgor (P=0.93 Mpa) potentials at mI were higher than at CRF (Ψ= - 0.77, π=-1.36 y P=0.59 Mpa) and MRF (Ψ=-1.22, π=-1.57 y P=0.35 Mpa); MRF with a greater soil water deficit, showed greater reduction in Ψ and π and higher capacity for osmotic adjustment (OA). OA was positive and significantly related to seed yield (SY) and final aerial biomass (FABM) in the 2 rain-fed environments. Canopy temperature (CT) at MI (26.7°C) was lower than at CRF (30.8°C) and MRF (36.6°C); the heat stress effect increased with the drop in plant water content in the driest environment (MRF); CT was negative and significantly associated with and at MRF. The high CT also had a significant effect in the FABMand SY, and its components; high CT reduced SY, FABM, number of normal pods.m-2 (NP. m-2) and weight of 100 seeds (W100S) by 12.5, 10.7, 10.2 y 3.4% for each ºC (-1 ºC) increase in CT, respectively.