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首页> 外文期刊>Plant, Cell & Environment >Effect of soil acidity, soil strength and macropores on root growth and morphology of perennial grass species differing in acid-soil resistance
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Effect of soil acidity, soil strength and macropores on root growth and morphology of perennial grass species differing in acid-soil resistance

机译:土壤酸度,强度和大孔隙对多年生耐酸碱性不同的多年生草根生长和形态的影响

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It is unclear whether roots of acid-soil resistant plants have significant advantages, compared with acid-soil sensitive genotypes, when growing in high-strength, acid soils or in acid soils where macropores may allow the effects of soil acidity and strength to be avoided. The responses of root growth and morphology to soil acidity, soil strength and macropores by seedlings of five perennial grass genotypes differing in acid-soil resistance were determined, and the interaction of soil acidity and strength for growth and morphology of roots was investigated. Soil acidity and strength altered root length and architecture, root hair development, and deformed the root tip, especially in acid-soil sensitive genotypes. Root length was restricted to some extent by soil acidity in all genotypes, but the adverse impact of soil acidity on root growth by acid-soil resistant genotypes was greater at high levels of soil strength. Roots reacted to soil acidity when growing in macropores, but elongation through high-strength soil was improved. Soil strength can confound the effect of acidity on root growth, with the sensitivity of acid-resistant genotypes being greater in high-strength soils. This highlights the need to select for genotypes that resist both acidity and high soil strength.
机译:尚不清楚在高强度,酸性土壤中或在大孔可能避免土壤酸度和强度影响的酸性土壤中生长时,与酸性土壤敏感基因型相比,耐酸性土壤植物的根是否具有显着优势? 。研究了5种多年生耐寒性不同的草基因型幼苗对根系生长和形态对土壤酸度,土壤强度和大孔隙的响应,并研究了土壤酸度和强度对根系生长和形态的相互作用。土壤的酸度和强度改变了根的长度和结构,根毛的发育,并使根尖变形,特别是在酸-土壤敏感的基因型中。所有基因型的土壤酸度都在一定程度上限制了根长,但在高土壤强度条件下,酸度对基因的耐性对土壤酸度的不利影响更大。在大孔中生长时,根对土壤酸度有反应,但通过高强度土壤的伸长率得到改善。土壤强度会混淆酸度对根系生长的影响,而高强度土壤中耐酸基因型的敏感性更高。这突出显示了需要选择能抵抗酸度和高土壤强度的基因型的需求。

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