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首页> 外文期刊>Journal of plant nutrition and soil science >Uptake and remobilization of selenium in Brassica napus L. plants supplied with selenate or selenium-enriched plant residues
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Uptake and remobilization of selenium in Brassica napus L. plants supplied with selenate or selenium-enriched plant residues

机译:在硒酸盐或富硒植物残留物供应的甘蓝型植物中硒的摄取和重新化

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摘要

Selenium (Se) biofortification via crops is one of the best strategies to elevate the daily Se intake in areas where soil Se levels are low. However, Se fertilizer recovery (SeFR) is low and most of the Se taken up accumulates in non-harvested plant parts and returns to the soil with plant residues. A pot experiment with soil was undertaken to study the efficiency of inorganic Se (Na2SeO4) and Se-enriched plant residues for biofortification, as well as to identify the bottlenecks in Se utilization by Brassica napus L. The soil was fertilized with Na2SeO4 (0 and 7 mu g Se kg(-1)) or with Se in stem or leaf residues (0 and 7 mu g Se kg(-1)). A treatment with autoclaved soil was included (0 and 7 mu g kg(-1) as Na2SeO4) to unravel the impact of microbial activity on Se uptake. The Se-enriched plant residues produced a lower Se uptake efficiency (SeUPE) and SeFR than did inorganic Se, and soil autoclaving enhanced Se accumulation in the plants. The time required for decomposition seems to preclude crop residues as an alternative source of Se. Furthermore, B. napus had a limited capacity to accumulate Se in seeds. The study shows that the bottlenecks in Se biofortification appear to be its low bioavailability in soil and poor loading from the silique walls to seeds. Thus, improved Se translocation to seeds would be a useful breeding goal in B. napus to increase SeFR.
机译:通过作物的硒(SE)生物化是在土壤SE水平低的区域提升日常摄入量的最佳策略之一。然而,SE肥料恢复(SEFR)是低,并且大部分SE占用在非收获的植物部件中,并用植物残留物返回土壤。进行了土壤的锅实验,研究了无机SE(NA2SEO4)和富含生物化植物残留物的效率,以及鉴定Brassica Napus L的瓶颈中的瓶颈。土壤与Na2SeO4施肥(0和7μgskg(-1))或用茎或叶残留物(0和7μgskg(-1))。将用高压灭菌的土壤处理(0至7μgkg(-1)作为Na 2 SeO 4),以解开微生物活性对Se吸收的影响。富集的植物残留物产生了比无机硒的下培拉效率(SeaPE)和Sefr,以及土壤高压灭菌增强植物中的积累。分解所需的时间似乎将作物残留量排除为替代源。此外,B. Napus在种子中积累的能力有限。该研究表明,Se生物侵蚀的瓶颈似乎是土壤中的低生物利用度,从硅墙到种子的较差。因此,改进的Se易位对种子是B​​. Napus中的有用的育种目标,以增加SEFR。

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