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Multi-environment Selection of Small Sieve Snap Beans Reduces Production Constraints in East Africa and Subtropical Regions

机译:小筛豆的多环境选择减少了东非和亚热带地区的生产限制

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Small-sieve snap beans (Phaseolus vulgaris L.) are an important source of income for smallholder farmers in East Africa. In this region as well as in other tropical and subtropical environments, common bean rust, caused by Uromyces appendiculatus (Pers.:Pers.), and heat stress reduce the yield and quality of snap beans. Small-sieve rust-resistant snap beans and that are heat-tolerant were developed using heat-tolerant snap bean breeding lines that had broad-spectrum rust resistance conditioned by the combination of the Andean Ur-4 and Mesoamerican Ur-11 genes. The Ur-4 and Ur-11 rust gene combination confers resistance to 90 races of the hypervariable pathogen from different parts of the world, including East Africa, that are maintained at Beltsville, MD. Four breeding lines each having the combination of the two rust genes were crossed in a 4 x 5 diallel mating design with five susceptible small-sieve cultivars to give 20 F-1 hybrids. The hybrid combinations were advanced through the F-2, F-3, and F-4 generations with selection for heat tolerance, rust resistance, and pod quality to develop lines combining these traits. Twenty F-5 breeding lines that had the combination of these traits were selected and evaluated in East Africa at four field sites selected on the basis of differences in altitude, climate, and virulence diversity of the bean rust pathogen and in Puerto Rico at a field site characterized by high temperatures. There was a significant positive correlation between ranks of heat stress influenced yield components (seeds per pod and total yield) at the hot field site and the controlled high-temperature (32/27 degrees C) greenhouse. Four of the breeding lines developed, L5, 19, L13, and 117, combined heat tolerance and rust resistance in the desired plant type with high yield and good pod quality. These lines are the first known small-sieve snap beans with the combination of traits for heat tolerance and broad-spectrum rust resistance conferred by the Ur-4 and Ur-11 genes. These results demonstrate ability to combine heat tolerance and rust resistance as important traits for adaptation of specific market classes of common bean to tropical and subtropical environments through targeted selection of multiple traits in controlled environments.
机译:小筛snap豆(Phaseolus vulgaris L.)是东非小农的重要收入来源。在该地区以及其他热带和亚热带环境中,由腐殖质球菌(Peromys appendiculatus(Pers.:Pers。))引起的普通豆锈病和热胁迫降低了四季豆的产量和品质。耐高温的小筛子防锈菜豆是用耐高温的菜豆育种系开发的,该品系具有广谱的防锈性,其结合了Andean Ur-4和Mesoamerican Ur-11基因。 Ur-4和Ur-11锈基因组合赋予了对来自世界不同地区(包括东非)的90种高变病原体的抵抗力,这些病原体保存在马里兰州贝尔茨维尔。将具有两个锈基因的组合的四个育种系与5个敏感的小筛品种以4 x 5的二烯体交配设计杂交,得到20个F-1杂种。杂交组合在F-2,F-3和F-4世代中进行了改进,并选择了耐热性,耐锈性和豆荚品质,以开发出结合这些特性的品系。在东非,根据大豆锈病病原体的海拔,气候和毒力多样性的差异,在东非的四个田间地点选择并评估了具有这些特性的20条F-5育种系,并在一个田地中进行了评估以高温为特征的站点。在热田现场和受控高温(32/27摄氏度)温室中,受热胁迫影响的产量成分(每荚种子和总产量)的等级之间存在显着的正相关关系。已开发的四个育种系L5、19,L13和117结合了所需植物类型的耐热性和抗锈性,且具有高产量和良好的豆荚质量。这些系是第一个已知的小筛snap豆,具有Ur-4和Ur-11基因赋予的耐热性和广谱抗锈性特征。这些结果表明,通过有针对性地在受控环境中选择多种性状,能够将耐热性和防锈性结合为重要特征,从而使普通豆的特定市场类别适应热带和亚热带环境。

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