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首页> 外文期刊>Journal of plant nutrition and soil science >Zinc uptake and distribution in tomato plants in response to foliar supply of Zn hydroxide-nitrate nanocrystal suspension with controlled Zn solubility
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Zinc uptake and distribution in tomato plants in response to foliar supply of Zn hydroxide-nitrate nanocrystal suspension with controlled Zn solubility

机译:响应于锌溶解度受控的氢氧化锌-硝酸盐纳米晶悬浮液的叶面供应,番茄中锌的吸收和分布

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摘要

The present study investigated the foliar uptake rate, distribution, and retranslocation patterns of novel, synthesized zinc hydroxide-nitrate nanocrystals (ZnHN; solubility 30-50 mg Zn L-1) applied on to the adaxial surface of tomato leaves (Solanum lycopersicum L. cv. Roma). The total Zn absorption from ZnHN suspension positively increased with ZnHN application rates, but the relative efficacy started to decline at > 400 mg Zn L-1. Within the 3 weeks, total Zn recovery in the ZnHN-treated plants was 16% of the total ZnHN-Zn applied, compared to the near 90% total Zn recovery in the Zn(NO3)(2)-plants at the same Zn rate. Foliar-absorbed ZnHN-Zn was distributed from the treated leaves into other plant parts and preferentially translocated into the roots. Distribution of Zn from ZnHN-treated leaves to apical parts was not limited by Zn deficiency. These results demonstrate that ZnHN crystals with controlled solubility provided some sort of slow-release Zn over a certain growth period at a rate slower (but quantitatively effective) than the soluble Zn(NO3)(2). The efficacy of the prolonged foliar Zn supply could be enhanced if the ZnHN suspension is sprayed over a large leaf surface area at the peak vegetative or early flowering stage.
机译:本研究调查了新型合成的氢氧化锌-硝酸锌纳米晶体(ZnHN;溶解度30-50 mg Zn L-1)应用于番茄叶片(Solanum lycopersicum L)的叶面吸收速率,分布和重排模式。 cv。Roma)。 ZnHN悬浮液的总Zn吸收量随着ZnHN施用量的增加而正增加,但相对功效在> 400 mg Zn L-1时开始下降。在3周内,经ZnHN处理的植物中锌的总回收量为所施用的ZnHN-Zn总量的16%,而在相同Zn速率下,Zn(NO3)(2)植物中的总锌回收率接近90% 。叶面吸收的ZnHN-Zn从处理过的叶子分布到其他植物部位,并优先转移到根部。从ZnHN处理过的叶子到根尖的Zn分布不受缺锌的限制。这些结果表明,具有一定溶解度的ZnHN晶体在一定的生长期内能以比可溶性Zn(NO3)(2)慢的速度(但在定量上有效)提供某种缓释的Zn。如果在营养高峰期或开花初期将ZnHN悬浮液喷洒在较大的叶片表面积上,则可以提高延长叶面Zn的供应效率。

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