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水果中的金属积累部位。

Metal accumulation sites in fruits.

作者信息

Mandebere Kumbirai Deon, Deniz Utku, Vogel Mikus Katarina, Son Cagdas, Eroglu Seckin

出版信息

bioRxiv. 2025 Aug 28:2023.12.12.571343. doi: 10.1101/2023.12.12.571343.

Abstract

Global fruit production suffers from pre- and post-harvest losses, part of which are related to metal deficiencies. Despite fruits being one of the most widely consumed plant parts, the spatial distribution of metals and their possible physiological impact remained largely unexplored. In this study, we searched for conserved metal accumulation sites in fruits of various crops and investigated their physiological function. By using X-ray and histochemical-based techniques, we found that calcium accumulated in the outermost hardened tissues, potassium in fleshy tissues, and iron (Fe) in vascular tissues. Furthermore, seeds accumulated Fe in the fruit-seed juncture, which remained in the chalazal part of the seed upon dispersal. In , seed chalazal Fe formed a distinct circular shape, which appeared diffuse in mutants. Seed chalazal Fe appeared also in tomato seeds, albeit more diffused and at higher concentrations. In tomato, treatment with the Fe immobilizer desferoxamine delayed germination in wild-type plants but not in mutants with low chalazal Fe, indicating that chalazal Fe may contribute to germination. This study marks the first systematic application of X-ray fluorescence and histochemistry to investigate conserved metal localization sites in mature fleshy fruits. The discovery of metal hotspots in fruits opens new research avenues to understand fruit physiology, which may, in the long run, contribute to food security.

摘要

全球水果生产遭受收获前和收获后的损失,其中一部分与金属缺乏有关。尽管水果是消费最为广泛的植物部分之一,但金属的空间分布及其可能的生理影响在很大程度上仍未得到探索。在本研究中,我们在各种作物的果实中寻找保守的金属积累位点,并研究其生理功能。通过使用基于X射线和组织化学的技术,我们发现钙积累在最外层的硬化组织中,钾积累在肉质组织中,而铁(Fe)积累在维管组织中。此外,种子在果实与种子的连接处积累铁,在传播后仍留在种子的合点部分。在[具体植物1]中,种子合点处的铁形成了一个独特的圆形,在[具体植物2]突变体中则显得弥散。种子合点处的铁也出现在番茄种子中,尽管更为弥散且浓度更高。在番茄中,用铁螯合剂去铁胺处理会延迟野生型植物的萌发,但不会延迟合点铁含量低的突变体的萌发,这表明合点铁可能有助于种子萌发。本研究标志着首次系统应用X射线荧光和组织化学来研究成熟肉质果实中保守的金属定位位点。果实中金属热点的发现为理解果实生理学开辟了新的研究途径,从长远来看,这可能有助于粮食安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5898/12407720/610e4290c72b/nihpp-2023.12.12.571343v2-f0001.jpg

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