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The effects of dwarfing genes on seedling root growth of wheat

机译:矮化基因对小麦幼苗根系生长的影响

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摘要

Most modern wheat cultivars contain major dwarfing genes, but their effects on root growth are unclear. Near-isogenic lines (NILs) containing Rht-B1b, Rht-D1b, Rht-B1c, Rht8c, Rht-D1c, and Rht12 were used to characterize the effects of semi-dwarfing and dwarfing alleles on root growth of ‘Mercia’ and ‘Maris Widgeon’ wheat cultivars. Wheat seedlings were grown in gel chambers, soil-filled columns, and in the field. Roots were extracted and length and dry mass measured. No significant differences in root length were found between semi-dwarfing lines and the control lines in any experiment, nor was there a significant difference between the root lengths of the two cultivars grown in the field. Total root length of the dwarf lines (Rht-B1c, Rht-D1c, and Rht12) was significantly different from that of the control although the effect was dependent on the experimental methodology; in gel chambers root length of dwarfing lines was increased by ∼40% while in both soil media it was decreased (by 24–33%). Root dry mass was 22–30% of the total dry mass in the soil-filled column and field experiments. Root length increased proportionally with grain mass, which varied between NILs, so grain mass was a covariate for the analysis of variance. Although total root length was altered by dwarf lines, root architecture (average root diameter, lateral root:total root ratio) was not affected by reduced height alleles. A direct effect of dwarfing alleles on root growth during seedling establishment, rather than a secondary partitioning effect, was suggested by the present experiments.
机译:大多数现代小麦品种都含有主要的矮化基因,但是它们对根系生长的影响尚不清楚。包含Rht-B1b,Rht-D1b,Rht-B1c,Rht8c,Rht-D1c和Rht12的近等基因系(NIL)用于表征半矮化和矮化等位基因对'Mercia'和''根系生长的影响。 Maris Widgeon的小麦品种。小麦幼苗在凝胶室,土壤填充柱和田间中生长。提取根,测量长度和干重。在任何试验中,半矮品系和对照品系之间的根长没有显着差异,在田间种植的两个品种的根长之间也没有显着差异。矮株系的总根长(Rht-B1c,Rht-D1c和Rht12)与对照相比有显着差异,尽管其效果取决于实验方法。在凝胶室内,矮化品系的根长增加了约40%,而在两种土壤介质中,矮化根的长度都减少了(24-33%)。根充土和田间试验的根干重为总干重的22–30%。根长与籽粒质量成正比增加,在NIL之间变化,因此籽粒质量是方差分析的协变量。虽然矮矮线改变了总根长,但根系结构(平均根直径,侧根:总根比)不受高度等位基因减少的影响。本实验表明,使等位基因矮化对幼苗建立过程中根系生长的直接影响,而不是次级分配作用。

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