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首页> 外文期刊>Saudi Journal of Biological Sciences >Lead contamination affects the primary productivity traits, biosynthesis of macromolecules and distribution of metal in durum wheat (Triticumdurum L.)
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Lead contamination affects the primary productivity traits, biosynthesis of macromolecules and distribution of metal in durum wheat (Triticumdurum L.)

机译:铅污染影响初级生产力性状,大分子的生物合成和杜兰麦小麦的金属分布(Triticumdurum L.)

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摘要

Lead (Pb) pollution emerged as an international issue particularly during second and third industrial revolution and is of serious global concern. Cereal crops have shown different capabilities, innate variability and mechanisms to cope with heavy metals present in their environment. Keeping in view the perspectives of food security and safety with increasing demand for Triticum durum L. it becomes imperative to appraise sustainability potential of the crop for Pb contaminated soils. The current study was conducted to test the hypothesis that T. durum germplasm holds genetic variability to evolve under Pb contamination through modulations of morpho-biochemical parameters of selective advantage. The performance of nine T. durum L. cultivars (CBD25, CBD46, CBD58, CBD59, CBD63, CBD66, CBD68, CBD69 and CBD82) was evaluated following exposure to varying Pb levels (control, 10, 20 and 40?mg?kgsup?1/sup) in soil. Growth, biosynthesis of macromolecules and metal distribution in plant parts were assessed using valid procedures and protocols. The cultivars exhibited a differential degree of tolerance to Pb and among the tested germplasm, CBD59 performed better followed by CBD63 and CBD66 for their primary productivity traits, biosynthesis of pigments and other macromolecules (amino acids, proteins and sugar) along with resilience for Pb uptake and its consequent bioaccumulation in grains. The traits used in the study served as strong predictors to provide superior/selective ability to survive under contaminated environment. The study signified that metal tolerance/sensitivity in the cultivars is independent of magnitude of metal stress, growth responses and Pb accumulation in plant parts hence varied in space and time. The existence of genetic variability, which is a pre-requisite for selection can definitely be of great advantage for future breeding projects to develop high yielding varieties/ cultivars of durum wheat with Pb free grains to assure food security and safety.
机译:铅(PB)污染尤其是在第二和第三个工业革命期间和第三个工业革命中的国际问题,是严重的全球关注。谷物作物已经示出了不同的能力,先天变异性和适应其环境中存在的重金属的机制。保持鉴于粮食安全和安全性的观点,随着对Triticum Durum L的增加而越来越多的需求。对于Pb受污染的土壤的作物的可持续性潜力感到迫切。进行了目前的研究以测试T.Durum种质的假设通过选择性优势的Morpho-Biochemical参数的调节,在Pb污染下捕获遗传变异。在暴露于不同的Pb水平(对照,10,20和40×mg≤kgkg kg&在土壤中,sup& 1& / sup&)。使用有效的程序和方案评估植物零件中大分子和金属分布的生长,生物合成。品种对Pb的差异差异,并且在测试的种质中表现出差异,CBD59更好地进行,然后进行CBD63和CBD66,用于它们的初级生产力性状,颜料生物合成和其他大分子(氨基酸,蛋白质和糖)以及Pb摄取的弹性其随之而来的谷物的生物累积。该研究中使用的特征是强的预测因子,以提供污染环境下存活的优越/选择性能力。该研究意味着品种中的金属耐受性/敏感性与植物部件中的金属应激,生长响应和Pb积累的幅度无关,因此在空间和时间内各不相同。遗传变异性的存在,这是选择前的优先级,对于未来的育种项目肯定会具有很大的优势,以开发具有PB自由谷物的高产品种/品种杜兰姆小麦,以确保粮食安全和安全性。

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