Screening for drought tolerance in cowpea at the flowering stage

A. Ajayi
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引用次数: 1

Abstract

Drought is one of the major threats to cowpea productivity in tropical countries, and understanding its impacts is germane in ensuring food security in a global context. The present study was established to screen some accessions of cowpea for drought tolerance at the flowering stage in pots under the controlled conditions of a screen house. High significant differences were observed among accessions for wilting and recovery traits, stomatal conductance, relative water content (RWC), terminal leaflet length (TLL) and width (TLW), stem girth, and yield parameters under drought stress. In addition, drought stress caused a significant reduction in morphological traits and RWC between the initial and the final values. Based on cluster and Principal Component Analysis (PCA), accessions were separated into different classes of tolerance. Direct selection for wilting traits, stomatal conductance, morphological traits, and recovery parameters showing high heritability (≥ 60%), GAM (≥ 20%), and PCA (≥ 0.4) will be effective. Hence, four major classes of tolerance were determined: AC03, AC08, and AC10 were highly susceptible. AC01 and AC04 were moderately susceptible. AC06, AC07, and AC09 were moderately tolerant, while AC02 and AC05 were the highly tolerant accessions. The moderately tolerant and the highly tolerant accessions showed a combination of superior resistance to wilting, superior recovery rates, and superior yield attributes. They also showed lower stomatal conductance, higher RWC, and low reduction of RWC, TLW, and stem girth under drought stress compared to the susceptible ones.
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豇豆开花期抗旱性筛选
干旱是热带国家豇豆产量的主要威胁之一,了解其影响对确保全球范围内的粮食安全至关重要。本研究在筛房控制条件下,对部分豇豆品种进行了花期盆栽抗旱性筛选。干旱胁迫下,各种质间的萎凋与恢复性状、气孔导度、相对含水量、顶叶长度与宽度、茎周、产量参数均存在显著差异。此外,干旱胁迫导致植物形态性状和RWC在初始值和最终值之间显著降低。基于聚类分析和主成分分析(PCA),对不同品种的耐受性进行了分类。直接选择具有高遗传力(≥60%)、GAM(≥20%)和PCA(≥0.4)的萎蔫性状、气孔导度、形态性状和恢复参数将是有效的。因此,确定了四个主要的耐受性类别:AC03, AC08和AC10是高度敏感的。AC01和AC04中度易感。AC06、AC07和AC09为中等耐受性,AC02和AC05为高耐受性。中等耐受性和高耐受性材料表现出较强的抗萎蔫性、较好的恢复速率和较好的产量属性。在干旱胁迫下,气孔导度较低,RWC较高,RWC、TLW和茎周的减少量较低。
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