Combining ability and selection of wheat populations for a tropical environment

Q4 Agricultural and Biological Sciences Agronomia Colombiana Pub Date : 2022-08-17 DOI:10.15446/agron.colomb.v40n2.99390
Henrique Caletti Mezzomo, C. R. Casagrande, Caique Machado e Silva, Gabriel Wolter Lima, A. Borém, M. Nardino
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Abstract

The selection of segregating populations with the potential for derived lines is essential for breeding programs. The present work analyzes the potential of tropical F2 wheat (Triticum aestivum L.) populations originated from complete diallel cross combinations. For this purpose, eight tropical wheat cultivars were combined in a complete diallel design in 2019 after F1 seeds were multiplied in a greenhouse and the seeds of 56 F2 populations, plus the eight parents, were evaluated in the field in Viçosa, MG, Brazil in the winter harvest of 2020 using a simple lattice design (8×8). The trait scores of (1) severity of tan spot (Pyrenophora tritici-repentis), (2) severity of wheat head blast (WHB) (Magnaporthe oryzae pathotype Triticum), (3) days to heading, (4) spike height, (5) and total grain weight of the plot were evaluated. We performed a diallel analysis using mixed models to obtain the effects of general combining ability (GCA), specific combining ability (SCA), and estimation of population genotypic values. The additive effect predominated for the control of all traits, except for spike height. There were greater GCA effects for the set of parental maternal plants. Heritability, in the narrow sense, ranged from 0.20 (blast) to 0.66 (heading). There was an effect of maternal GCA for all variables, while for paternal GCA the effect was only for days passed for head and total grain weight. Populations derived from the cultivars TBIO Aton, TBIO Ponteiro, and TBIO Sossego had lower disease severity, while the combinations from BRS 254, BRS 264, and BRS 394 had earlier maturation time. The most promising combinations to derive lines for the set of traits were BRS 254 × CD 1303, BRS 394 × TBIO Aton, TBIO Aton × BRS 254, CD 1303 × BRS 254, and CD 1303 × BRS 264.
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热带环境下小麦群体的配合力与选择
选择具有衍生品系潜力的分离群体对育种计划至关重要。本工作分析了热带F2小麦(Triticum aestivum L.)群体起源于完全双列杂交组合的潜力。为此,2019年,在温室中繁殖F1种子后,将8个热带小麦品种组合成一个完整的双列杂交设计,并在2020年冬季收获时,使用简单的晶格设计(8×8)在巴西MG维索萨的田地中对56个F2群体的种子以及8个亲本进行了评估。对小麦赤霉病(Pyrenophora tritici revenis)、稻瘟病(Magnaporthe oryzae pathotype Triticum)、抽穗天数(3)、穗高(4)、5)和总粒重的性状得分进行了评价。我们使用混合模型进行了二烯丙基分析,以获得一般配合力(GCA)、特异配合力(SCA)和群体基因型值估计的影响。除穗高外,所有性状的控制均以加性效应为主。亲本母株的GCA效应较大。狭义的遗传力在0.20(冲击)到0.66(抽穗)之间。母本GCA对所有变量都有影响,而父本GCA只对经过几天的头重和总粒重有影响。来自品种TBIO Aton、TBIO Ponteiro和TBIO Sossego的群体具有较低的疾病严重程度,而来自BRS 254、BRS 264和BRS 394的组合具有较早的成熟时间。最有希望获得该组性状品系的组合是BRS 254×CD 1303、BRS 394×TBIO Aton、TBIO Aton*BRS 254、CD 1303×BRS 254和CD 1303 x BRS 264。
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来源期刊
Agronomia Colombiana
Agronomia Colombiana Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.00
自引率
0.00%
发文量
9
审稿时长
25 weeks
期刊介绍: Agronomia Colombiana journal it is intended to transfer research results in different areas of tropical agronomy. Original unpublished papers are therefore accepted in the following areas: physiology, crop nutrition and fertilization, genetics and plant breeding, entomology, phytopathology, integrated crop protection, agro ecology, weed science, environmental management, geomatics, biometry, soils, water and irrigation, agroclimatology and climate change, post-harvest and agricultural industrialization, food technology, rural and agricultural entrepreneurial development, agrarian economy, and agricultural marketing (Published: Quarterly).
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