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Two Light Sources Differentially Affected Ferric Iron Reduction and Growth of Cotton

机译:两种光源差异影响铁的铁还原和棉花生长

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摘要

In growth chambers, low pressure sodium (LPS) plus incandescent (Inc) lamps and fluorescent cool-white (FCW) plus Inc lamps were used to determine their effects on growth of cotton (Gossypium hirsutum L.) and on the reduction of Fe3+ to Fe2+. Cotton plants grown under LPS + Inc light developed chlorosis and grew poorly, whereas plants grown under FCW + Inc lights were green. The chlorophyll concentration and top and root weights of cotton grown under LPS + Inc were lower than those under FCW + Inc. In solution, FCW + Inc lamps reduced about eight times more Fe3+ to Fe2+ than did LPS + Inc lamps. Fe3+ is transported to plant tops as Fe3+ citrate and if we assume that FCW + Inc light reduces Fe3+ to Fe2+ in plant foliage as it did in the solutions, then reduction of Fe3+ by the light environment will make Fe2+ in the tops more available for biochemical reactions.
机译:在生长室中,使用低压钠灯(LPS)和白炽灯(Inc)以及荧光冷白灯(FCW)和Inc Inc灯来确定它们对棉花(Gossypium hirsutum L.)的生长以及对Fe < sup> 3 + 到Fe 2 + 。在LPS + Inc光照下生长的棉花植株出现萎黄病,且生长较差,而在FCW + Inc光照下生长的植物为绿色。在LPS + Inc下生长的棉花的叶绿素浓度,根尖重和根重均低于FCW + Inc下的棉花。在溶液中,FCW + Inc灯将Fe 3 + 还原为Fe 2 + 。 Fe 3 + 以柠檬酸Fe 3 + 的形式运输到植物顶部,如果我们假设FCW + Inc光将Fe 3 + 还原为Fe <与溶液中的植物叶片中的sup> 2 + 相同,然后在光照环境下还原Fe 3 + 将使Fe 2 + 出现在顶部更多可用于生化反应。

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