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Conversion of elite subtropical maize germplasm to temperate environments.

机译:优良的亚热带玉米种质向温带环境的转化。

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Desirable genetic variation is required for selection progress and genetic gain in plant breeding populations. Genetic variation from exotic germplasm has been proposed to improve grain yields in temperate maize (Zea mays L.) breeding programs. Adaptation barriers should be overcome in exotic material prior to selection for trait improvement in temperate environments.; Backcross introgression of elite exotic inbreds into temperate breeding material was initiated in 1995. Subtropical inbreds from CIMMYT heterotic group A and B were crossed to Reid Yellow Dent (RYD) and Lancaster Surecrop (LSC) materials, respectively. Objectives were to backcross with the adapted recurrent parent to ehance adaptation, select within semi-exotic material per se, and evaluate testcrosses of selected semi-exotic families outcrossed to inbreds heterotic to the recurrent parents. Recurrent parents per se and in testcrosses were used as checks to measure the effect of the exotic alleles in the backcross progenies.; Semi-exotic backcross families (BC1F1), F1s, and recurrent parents were evaluated in Iowa during 1996. Adapted flowering in the semi-exotic crosses indicated the absence of major genes for lack of adaptation. High parent heterosis for grain yield was 36.7% for the RYD-exotic crosses, and 56.6% for the LSC-exotic crosses. Grain moisture, root lodging, and stalk lodging increased with increasing percentages of exotic germplasm.; Semi-exotic BC1F1 testcrosses were evaluated in five Iowa environments during 1998, with average grain yields of 95.7 q ha-1 (153.1 bu ac-1). Selected testcrosses had grain yields similar to or greater (p ≤ 0.05) than their checks. Grain moisture of selected LSC-exotic and RYD-exotic testcrosses was similar to and greater, respectively, than the recurrent parent testcrosses, and resistance to root and stalk lodging was similar to the checks.; Results support backcross introgression to incorporate alleles from exotic sources, to maintain the agronomic traits of the recurrent parent, and to maintain or enhance the combining ability of the recurrent parent heterotic pool. Inbred lines developed in CIMMYT's hybrid program have been improved for agronomic traits, for tolerance to inbreeding, and heterotic alignment. Pre-selected exotic germplasm represents a valuable resource for widening the genetic base of temperate maize.
机译:植物育种种群的选择进程和遗传增益需要理想的遗传变异。已经提出了来自外来种质的遗传变异以提高温带玉米(Zea mays L.)育种计划中的谷物产量。在选择温带环境中的性状之前,应克服外来材料的适应障碍。精英外来自交系回交渗入温带育种材料始于1995年。来自CIMMYT杂种群A和B的亚热带近交系分别与Reid Yellow Dent(RYD)和Lancaster Surecrop(LSC)杂交。目的是与适应的轮回亲本回交以适应环境变化,本身在半外来材料中进行选择,并评估与轮回亲本杂种近交的近交配系的选定半外来族的测试杂交。轮回亲本本身和在测交中被用作检查,以测量异源等位基因在回交后代中的作用。在爱荷华州,于1996年对半外来回交家族(BC1F1),F1s和轮回父母进行了评估。半外来杂交的适应花期表明缺乏缺乏适应性的主要基因。 RYD-外来杂种的籽粒产量较高的亲本杂种优势为36.7%,而LSC-外来杂种的籽粒产量较高。谷物水分,根系沉积和茎秆沉积随着外来种质百分比的增加而增加。在1998年期间,在五个爱荷华州环境中评估了半异质BC1F1杂交试验,平均谷物产量为95.7 q ha-1(153.1 bu ac-1)。选定的杂交试验的谷物产量比其检查的相似或更高(p≤0.05)。选定的LSC-异种和RYD-异种试验杂交的籽粒水分分别类似于或大于轮回亲本杂交,并且对根和茎倒伏的抵抗力与对照相似。结果支持回交渗入,以整合来自外来来源的等位基因,以维持轮回亲本的农艺性状,并维持或增强轮回亲本杂种库的结合能力。在CIMMYT杂交计划中开发的自交系已针对农艺性状,对近交的耐受性和杂种优势进行了改良。预选的外来种质资源是扩大温带玉米遗传基础的宝贵资源。

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