首页> 外文期刊>Soil Science and Plant Nutrition >Quantification of zinc transport via the phloem to the grain in rice plants (Oryza sativa L.) at early grain-filling by a combination of mathematical modeling and 65Zn tracing.
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Quantification of zinc transport via the phloem to the grain in rice plants (Oryza sativa L.) at early grain-filling by a combination of mathematical modeling and 65Zn tracing.

机译:通过数学建模与 65 锌示踪相结合的方法,定量分析了水稻灌浆初期锌通过韧皮部向籽粒中锌转运的过程。

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摘要

Zinc (Zn) is an essential nutrient for human beings, and most Zn intake occurs through vegetables or cereals such as rice (Oryza sativa L.) grains. Recently, we detected Zn as well as cadmium, which may be partitioned to rice grains, in the phloem saps from the uppermost internodes of rice and in the xylem saps from the cut stems at early grain-filling. To quantify Zn transport to the grains via the phloem and xylem, a mathematical model previously developed for cadmium transport to rice grains was applied. We examined the translocation of zinc into the grains of rice plants at early grain-filling by feeding zinc-65 (65Zn) via a root-bathing medium, through culm cuts above and below the flag-leaf nodes, and through the flag leaves. The estimate made using the mathematical model and experimental data for three types of 65Zn transport suggests that the grain Zn may be accumulated predominantly via the phloem through two means of transport, phloem transport of stored Zn from the leaves and, more importantly, xylem-to-phloem transfer at the nodes from Zn as it is being absorbed. The Zn transport via the phloem to the grains is more selective than that of cadmium, a non-nutrient element, as also evidenced by the greater transport of cadmium to the glumes via the xylem.
机译:锌是人类必需的营养素,大部分锌的摄入都是通过蔬菜或谷物,例如大米(Oryza sativa L.)谷物进行的。最近,我们在早期灌浆过程中,在水稻最上节间的韧皮部树液和切茎的木质部树液中检测到锌和镉(可能与水稻籽粒分开)。为了量化锌通过韧皮部和木质部向谷物的转运,使用了以前开发的将镉转运到水稻的数学模型。我们通过灌水,通过旗叶上方和下方的茎秆切屑喂入锌65( 65 Zn),研究了早灌浆期间锌向水稻籽粒中的转运。节点,并通过标志叶。使用数学模型和实验数据对三种 65 Zn转运进行的估算表明,谷物Zn可能主要通过韧皮部通过两种转运方式进行积累,即从叶片中储存的Zn的韧皮部转运更重要的是,由于锌被吸收,木质部到韧皮部在锌的结点处转移。锌通过韧皮部向谷物的转运比镉(一种非营养元素)的选择性更高,这也可以通过镉通过木质部向颖花的更大转运来证明。

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