首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Chromosomal Location of Traits Associated with Wheat Seedling Water and Phosphorus Use Efficiency under Different Water and Phosphorus Stresses
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Chromosomal Location of Traits Associated with Wheat Seedling Water and Phosphorus Use Efficiency under Different Water and Phosphorus Stresses

机译:不同水分和磷胁迫下小麦幼苗水分与磷利用效率相关性状的染色体定位

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摘要

The objective of this study was to locate chromosomes for improving water and phosphorus-deficiency tolerance of wheat at the seedling stage. A set of Chinese Spring-Egyptian Red wheat substitution lines and their parent Chinese Spring (recipient) and Egyptian Red (donor) cultivars were measured to determine the chromosomal locations of genes controlling water use efficiency (WUE) and phosphorus use efficiency (PUE) under different water and phosphorus conditions. The results underlined that chromosomes 1A, 7A, 7B, and 3A showed higher leaf water use efficiency (WUEl = Pn/Tr; Pn = photosynthetic rate; Tr = transpiration rate) under W-P (Hoagland solution with 1/2P), -W-P (Hoagland solution with 1/2P and 10% PEG). Chromosomes 7A, 3D, 2B, 3B, and 4B may carry genes for positive effects on individual plant water use efficiency (WUEp = biomass/TWC; TWC = total water consumption) under WP (Hoagland solution), W-P and -W-P treatment. Chromosomes 7A and 7D carry genes for PUE enhancement under WP, -WP (Hoagland solution with 10% PEG) and W-P treatment. Chromosome 7A possibly has genes for controlling WUE and PUE simultaneously, which indicates that WUE and PUE may share the same genetic background. Phenotypic and genetic analysis of the investigated traits showed that photosynthetic rate (Pn) and transpiration rate (Tr), Tr and WUEl showed significant positive and negative correlations under WP, W-P, -WP and -W-P, W-P, -WP treatments, respectively. Dry mass (DM), WUEP, PUT (phosphorus uptake) all showed significant positive correlation under WP, W-P and -WP treatment. PUE and phosphorus uptake (PUT = P uptake per plant) showed significant negative correlation under the four treatments. The results might provide useful information for improving WUE and PUE in wheat genetics.
机译:这项研究的目的是定位染色体,以提高苗期小麦对水分和磷缺乏的耐受性。测量了一组中国春-埃及红小麦替代品系及其亲本中国春(收件人)和埃及红(供体)品种,以确定在以下条件下控制水分利用效率(WUE)和磷利用效率(PUE)的基因的染色体位置。不同的水和磷条件。结果表明,在WP(1 / 2P的Hoagland溶液),-WP(-)下,1A,7A,7B和3A染色体显示较高的叶片水分利用效率(WUE1 = Pn / Tr; Pn =光合速率; Tr =蒸腾速率)。带1 / 2P和10%PEG的Hoagland溶液。在WP(Hoagland溶液),W-P和-W-P处理下,染色体7A,3D,2B,3B和4B可能带有基因,这些基因对单个植物的水分利用效率(WUEp =生物量/ TWC; TWC =总耗水量)产生积极影响。染色体7A和7D携带在WP,-WP(含10%PEG的Hoagland溶液)和W-P处理下增强PUE的基因。染色体7A可能具有同时控制WUE和PUE的基因,这表明WUE和PUE可能具有相同的遗传背景。对所研究性状的表型和遗传分析表明,在WP,W-P,-WP和-W-P,W-P,-WP处理下,光合速率(Pn)和蒸腾速率(Tr),Tr和WUE1表现出显着的正相关和负相关。在WP,W-P和-WP处理下,干物质(DM),WUEP,PUT(磷吸收)均显示出显着正相关。在四种处理下,PUE和磷的吸收(PUT =每株植物的P吸收)显示出显着的负相关。研究结果可能为改善小麦遗传上的水分利用效率和水分利用效率提供有用的信息。

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