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首页> 外文期刊>Plant direct. >Element content and distribution has limited, tolerance metric dependent, impact on salinity tolerance in cultivated sunflower ( Helianthus annuus )
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Element content and distribution has limited, tolerance metric dependent, impact on salinity tolerance in cultivated sunflower ( Helianthus annuus )

机译:元素含量和分配具有有限,公吨依赖性,对耕地向日葵的盐度耐受性(Helianthus Annuus)的影响

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Disruption of ion homeostasis is a major component of salinity stress's effect on crop yield. In cultivated sunflower prior work revealed a negative relationship between vigor and salinity tolerance. Here, we determined the association of elemental content/distribution traits with salinity tolerance, both with and without taking vigor (biomass in control treatment) into account. We grew seedlings of 12 Helianthus annuus genotypes in two treatments (0, 100?mM NaCl). Plants were measured for biomass ( allocation), and element content (Na, P, K, Ca, Mg, S, Fe, B, Mn, Cu, Zn) in leaves (young and mature), stem, and roots. Genotype tolerance was assessed as both proportional decline of biomass and as expectation deviation (deviation from the observed relationship between vigor and proportional decline in biomass). Genotype rankings on these metrics were not the same. Elemental content and allocation/distribution were highly correlated both at the plant and organ level. Suggestive associations between tolerance and elemental traits were fewer and weaker than expected and differed by tolerance metric. Given the highly correlated nature of elemental content, it remains difficult to pinpoint specific traits underpinning tolerance. Results do show that taking vigor into account is important when seeking to determining traits that can be targeted to increase tolerance independent of vigor, and that the multivariate nature of associated traits should additionally be considered.? 2020 The Authors. Plant Direct published by American Society of Plant Biologists, Society for Experimental Biology and John Wiley & Sons Ltd.
机译:离子稳态的破坏是盐度压力对作物产量的影响的主要组成部分。在耕地向日葵前的工作揭示了活力与盐度之间的负面关系。在这里,我们确定具有盐度耐受性的元素含量/分配性状的关联,无论是在不考虑的情况下是否有活力(生物质)。我们在两种处理中长出12个Helianthus Annuus基因型的幼苗(0,100μmNAc)。测量植物的生物量(分配),元素含量(Na,P,K,Ca,Mg,S,Fe,B,Mn,Cu,Zn),叶(杨和成熟),茎和根。基因型耐受性被评估为生物量的比例下降,并作为期望偏差(偏离来自生物量的活力与成比例下降)。这些指标上的基因型排名不一样。元素含量和分配/分布在植物和器官水平上都是高度相关的。耐受性和元素特征之间的暗示关联比预期和较弱,并且通过公差度量不同。鉴于元素含量的高度相关性,难以确定耐受性的特定性状。结果确实表明,考虑力量考虑的力量是重要的,当寻求确定可以靶向增加耐受性的特征,并且应另外考虑相关性状的多元性质。 2020作者。植物直接发表美国植物生物学家,实验生物学学会和约翰瓦里和儿子有限公司

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