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首页> 外文期刊>Open Journal of Genetics >Validation of Competitive Ability of Diverse Canola Accessions against Annual Ryegrass under Glasshouse and Field Conditions
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Validation of Competitive Ability of Diverse Canola Accessions against Annual Ryegrass under Glasshouse and Field Conditions

机译:在玻璃馆和现场条件下对每年黑麦草进行多元化加热器探讨的竞争力的验证

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Weeds are a major constraint in canola (Brassica napus L.) production worldwide, as they cause significant reductions in seed yield and quality. Crop interference is one of the approaches to tackle weed infestation along with other agronomic interventions. In Australia, studies have shown genetic variation in the canola capability to suppress annual ryegrass (Lolium rigidum Gaudin) in the field and under in vitro conditions. Early-season crop biomass accumulation and greater plant height are desired attributes for suppression weeds in canola. However, the canola ideotype for interference traits against this weed has not been studied under glasshouse conditions. In this study, we compared the competitive ability of 26 canola genotypes against annual ryegrass under both glasshouse and field conditions. Five canola genotypes consistently showed the ability to suppress growth of annual ryegrass. Both at glasshouse and field conditions, the shoot biomass, largely contributed by leaf biomass, was significantly associated with suppression ability. Our results suggest that a glasshouse-based evaluation approach can be used to determine the suppressive ability of advanced breeding lines for suppression of ryegrass growth. Based on our analysis, we suggest that initial screening of large collections of germplasm can be conducted under glasshouse conditions, with selected genotypes further evaluated in the field.
机译:杂草是油菜( Brassica Napus L.)在全球生产的主要限制,因为它们导致种子产量和质量的显着减少。作物干扰是解决杂草侵扰以及其他农艺干预的方法之一。在澳大利亚,研究表明了Canola能力的遗传变异,以抑制该领域的年度黑麦草( Lolimivum gaudin)和在体外条件下。早期作物生物量积累和更大的植物高度是抑制杂草在油菜中的属性。然而,在玻璃条件下尚未在玻璃条件下进行干扰性状的Canola Ifsotype。在这项研究中,我们将26种Canola基因型的竞争力与玻璃室和现场条件下的每年黑盐囊进行比较。五种CANOLA基因型始终展示抑制年黑豆蔻草的生长的能力。在玻璃室和现场条件下,芽生物质,大部分由叶生物质贡献,与抑制能力显着相关。我们的研究结果表明,基于Glasshouse的评估方法可用于确定抑制高级育种线以抑制黑麦草生长的抑制能力。根据我们的分析,我们建议在玻璃条件下进行大量种质收集的初始筛查,在该领域进一步评估了选定的基因型。

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