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首页> 外文期刊>NJAS Wageningen Journal of Life Sciences >Indices to screen for grain yield and grain-zinc mass concentrations in aerobic rice at different soil-Zn levels.
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Indices to screen for grain yield and grain-zinc mass concentrations in aerobic rice at different soil-Zn levels.

机译:筛选不同土壤锌水平下需氧水稻的籽粒产量和籽粒锌质量浓度的指标。

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摘要

Zinc is an important micronutrient for both crop growth and human nutrition. In rice production, yields are often reduced and Zn mass concentrations in the grains are often low when Zn is in short supply to the crop. This may result in malnutrition of people dependent on a rice-based diet. Plant breeding to enhance low-Zn tolerance might result in higher yields and nutritional quality but requires effective selection criteria embedded in physiological insight into the Zn husbandry of the crop and applicable in field evaluation of advanced breeding material or in screening of existing varieties. Using existing and newly developed low-Zn tolerance indices, this study presents the results of screening experiments carried out in high- and low-Zn soils. Sixteen accessions of aerobic rice were grown under greenhouse conditions to conceptualize the indices and 14 under field conditions to validate the indices. As the differences in soil-Zn levels in these experiments did not result in differences in grain yield, literature data were used from experiments where the soil-Zn level did have an effect on grain yield, to further check the validity of the indices. Several indices were applied to evaluate the genotypic low-Zn tolerance performance in attaining (relatively) high grain yield, high grain-Zn mass concentration, or both. The results indicate that the grain-Zn mass concentration efficiency index is different from the grain yield efficiency index and that the low-Zn tolerance indices identified superior genotypes best. Amongst the indices tested, the low-Zn tolerance index for grain yield and the low-Zn tolerance index for grain-Zn mass concentration were closely correlated with grain yield and grain-Zn mass concentration, respectively. Therefore, the low-Zn tolerance index for grain yield was effective in screening for high stability and high potential of grain yield, and the low-Zn tolerance index for grain-Zn mass concentration was effective for grain-Zn mass concentration under low and high soil-Zn conditions. Genotypic differences in yield and grain-Zn mass concentration were shown to be unrelated and therefore deserve separate attention in breeding programmes. Combining the low-Zn tolerance index for grain yield and the low-Zn tolerance index for grain-Zn mass concentration in a single low-Zn tolerance index was considered but did not appear to be superior to using the two indices separately.
机译:锌是作物生长和人类营养的重要微量营养素。在水稻生产中,当锌供不应求时,谷物的产量通常会降低,而锌的质量浓度通常较低。这可能导致依赖于大米饮食的人营养不良。为了提高对低锌的耐受性而进行的植物育种可能会提高产量和营养品质,但需要有效的选择标准,该标准应纳入对作物锌贮藏的生理认识,并适用于先进育种材料的田间评估或现有品种的筛选。利用现有和新近开发的低锌耐受指数,本研究提供了在高锌和低锌土壤中进行的筛选试验的结果。在温室条件下种植了16份需氧水稻,以将指标概念化,在田间条件下种植14份以验证指标。由于这些实验中土壤锌水平的差异不会导致谷物产量的差异,因此使用了土壤锌水平确实对谷物产量有影响的实验的文献数据,以进一步检验指标的有效性。应用了几种指标来评估基因型低锌耐性表现,以获得(相对)高籽粒产量,高籽粒锌质量浓度或两者兼而有之。结果表明,籽粒-锌的质量浓度效率指数与籽粒的产量效率指数不同,低锌耐受性指数最好地鉴定了优良的基因型。在测试的指标中,籽粒产量的低锌耐性指数和籽粒锌质量浓度的低锌耐性指数分别与籽粒产量和籽粒锌质量浓度密切相关。因此,低锌籽粒耐性指数有效地筛选了高稳定性和高产量潜力,而低锌籽粒锌质量浓度的耐性指数有效地用于在高低状态下的籽粒锌浓度。土壤锌条件。产量和籽粒锌质量浓度的基因型差异被证明是不相关的,因此在育种计划中值得单独注意。在单个低锌耐性指数中考虑了将低锌耐性指数与籽粒质量浓度的低锌耐性指数结合在一起,但似乎并不比单独使用这两个指数更好。

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