首页> 外文期刊>Euphytica >Influence of variety, seed position and seed source on screening for coleoptile length in bread wheat (Triticum aestivum L.)
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Influence of variety, seed position and seed source on screening for coleoptile length in bread wheat (Triticum aestivum L.)

机译:品种,种子位置和种子来源对面包小麦胚芽鞘长度筛选的影响

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摘要

The short coleoptiles of Rht-B1b and Rht-D1b semidwarf wheats can contribute to poor seedling establishment when sowing seed at depth orinto stubble. Alternative dwarfing genes are available to reduce plant height but which allow selection for increased coleoptile length. Response to selection for genes conferring greater coleoptile length requires that phenotypic variation for coleoptile length is largely attributable to genotypic differences and not to sampling variation that would otherwise reduce heritability. The influence of sampling on coleoptile length was investigated for a range of ear-position and environmental factors commonly encountered when screening breeding populations for coleoptile length. Changes in floret position within the spikelet produced significant (p < 0.01) changes in coleoptile length but these were attributable to differences in kernel size, not floret position per se. Seed source effects were small except for weather-damaged seed where reductions in falling numbers were associated with small yet significant (p < 0.05) reductions in coleoptile length. Differences in coleoptile length among varieties were substantially larger than for effects associated with either grain size or seed production source. Standard height (rht) and gibberellic acid (GA)-sensitiveRht8/9 semidwarf wheat varieties produced coleoptiles that were between25 to 40% longer than GA-insensitive Rht-B1b and Rht-D1b semidwarf varieties. Furthermore, increasing mean soil temperature from 11 to 19 °Creduced coleoptile length by 20% in rht and Rht8/9 wheats and by as much as 50% in Rht-B1b and Rht-D1b semidwarfs. Our results indicate that selection for increased coleoptile length can be made readily in a wheat-breeding program which includes GA-sensitive parents.
机译:Rht-B1b和Rht-D1b半矮小麦的短胚芽鞘在深播或发茬时可能导致幼苗的不良定型。可以使用其他矮化基因来降低株高,但是可以选择胚芽鞘长度增加的植物。对选择赋予更大胚芽鞘长度的基因的反应要求胚芽鞘长度的表型变异在很大程度上归因于基因型差异,而不是归因于否则会降低遗传力的抽样变异。在筛选繁殖种群的胚芽鞘长度时通常遇到的一系列耳位和环境因素中,研究了取样对胚芽鞘长度的影响。小穗内小花位置的变化产生胚芽鞘长度的显着变化(p <0.01),但这归因于籽粒大小的差异,而不是小花本身的位置。种子源的影响很小,除了受天气损害的种子外,种子数量的减少与胚芽鞘长度的微小但显着的减少(p <0.05)有关。品种之间胚芽鞘长度的差异明显大于与晶粒大小或种子生产来源相关的影响。标准高度(rht)和赤霉素(GA)敏感的Rht8 / 9半矮麦品种产生的胚芽鞘比不敏感GA的Rht-B1b和Rht-D1b半矮麦品种长25%至40%。此外,将平均土壤温度从11°提高到19°可使Rht和Rht8 / 9小麦的胚芽鞘长度减少20%,Rht-B1b和Rht-D1b半矮小麦的胚芽鞘长度减少多达50%。我们的结果表明,在包括GA敏感亲本的小麦育种程序中,可以很容易地选择胚芽鞘长度的增加。

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