Effect of full‐sib and S2‐selection on a sweet corn population (Zea mays convar. saccharata)

IF 1.5 4区 农林科学 Q2 AGRONOMY Plant Breeding Pub Date : 2024-04-26 DOI:10.1111/pbr.13170
Charlotte Aichholz, Heiko C. Becker, Bernd Horneburg
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Abstract

Sweet corn breeding goals differ from grain or silage corn. Sweet corn goals focus on marketable yield including several quality traits. This study explores the effect of a single cycle of full‐sib selection and S2 selection on improving the marketable yield of an open‐pollinated sweet corn population. The selected populations were subsequently compared in four environments for several plant‐, yield‐ and quality traits relative to the original population. Analysis of variance was used to detect selection progress and indirect effects of selection. Full‐sib and S2‐selection decreased total yield. Marketable yield was decreased more by S2‐selection than by full‐sib selection. Flowering time was changed by full‐sib selection, but not by S2‐selection. Full‐sib selection improved ear quality by increasing ear length, the diameter of the ear and the number of kernel rows. S2‐selection showed no effect or a negative effect on ear quality. The application of a single cycle of selection using either method seemed inadequate for increasing marketable yield. More cycles might be necessary to make significant improvements.
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对甜玉米群体(Zea mays convar.)
甜玉米的育种目标与谷物或青贮玉米不同。甜玉米的育种目标侧重于可销售的产量,包括一些品质性状。本研究探讨了单周期全同胞选择和 S2 选择对提高开放授粉甜玉米群体可销售产量的影响。随后在四个环境中比较了所选群体相对于原始群体的几种植株、产量和质量性状。方差分析用于检测选择进展和选择的间接效应。全基因组选择和 S2 选择降低了总产量。与全雌雄同株选择相比,S2 选择对可销售产量的影响更大。全雌雄同株选择改变了花期,但 S2 选择没有改变花期。全雌雄同株选择通过增加穗长、穗直径和籽粒行数提高了穗的质量。S2 选择对果穗质量没有影响或有负面影响。使用这两种方法中的任何一种进行单周期选择似乎都不足以提高适销产量。要想显著提高产量,可能需要更多的周期。
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来源期刊
Plant Breeding
Plant Breeding 农林科学-农艺学
CiteScore
4.40
自引率
5.00%
发文量
74
审稿时长
3.0 months
期刊介绍: PLANT BREEDING publishes full-length original manuscripts and review articles on all aspects of plant improvement, breeding methodologies, and genetics to include qualitative and quantitative inheritance and genomics of major crop species. PLANT BREEDING provides readers with cutting-edge information on use of molecular techniques and genomics as they relate to improving gain from selection. Since its subject matter embraces all aspects of crop improvement, its content is sought after by both industry and academia. Fields of interest: Genetics of cultivated plants as well as research in practical plant breeding.
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