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首页> 外文期刊>Plant Physiology and Biochemistry >Alleviating effects of silicate, selenium, and microorganism fertilization on lead toxicity in ginger (Zingiber officinale Roscoe)
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Alleviating effects of silicate, selenium, and microorganism fertilization on lead toxicity in ginger (Zingiber officinale Roscoe)

机译:减轻硅酸盐,硒和微生物施肥对生姜铅毒性的影响(Zingiber Officinale Roscoe)

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摘要

The aim of this work was exploring the effects of silicon, selenium, and a microorganism fertilizer on alleviating the effects of lead (Pb) toxicity in ginger. Ginger plants were grown in soil containing 500 mg/kg Pb(NO3)(2) without (CK) or with Si, Se, or microorganism fertilizer (T1, T2, T3) as soil conditioners. Morphology indexes, Pb accumulation and distribution rates, and antioxidant enzyme activities were investigated. The Pb transfer and Pb absorption coefficients were calculated, and Pb accumulation in plant organs at various developmental stages were determined. All three soil conditioners alleviated Pb stress in ginger plants. The rhizome fresh weight in T1, T2, and T3 was increased by 96.06, 85.81, and 41.58%, respectively, compared with CK. The accumulation of Pb in organs was lower in all treatments than in CK. The chlorophyll and carotenoid contents in leaves, and root activity, root length, and the tolerance index, were higher in the treatments than in CK. The reactive oxygen species content in ginger leaves and roots was significantly lower in all treatments than in CK. Soil conditioners alleviated the negative effects of Pb stress on ginger plants: Si was the most effective, followed by Se, and then the microorganism fertilizer.
机译:这项工作的目的是探索硅,硒和微生物肥料对减轻姜(Pb)毒性毒性的影响。姜植物在含有500mg / kg pb(no3)(2)的土壤中生长,无(ck)或用Si,Se或微生物肥(T1,T2,T3)作为土壤调节剂。研究了形态指标,PB积累和分配率和抗氧化酶活性。计算PB转移和PB吸收系数,并确定各种发育阶段的植物器官中的PB积累。所有三种土壤调节剂都缓解了姜植物中的PB胁迫。与CK相比,T1,T2和T3中的根茎新鲜重量分别增加了96.06,85.81和41.58%。所有治疗中Pb的Pb积累比CK在CK中较低。叶片中的叶绿素和类胡萝卜素含量和根系活性,根部长度和耐受性指数高于CK中的处理。所有治疗中姜汁叶和根中的反应性氧物种含量明显低于CK。土壤调理剂缓解了Pb胁迫对姜植物的负面影响:Si是最有效的,其次是Se,然后是微生物肥料。

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