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大蒜品种鳞茎产量、药用硫化合物及矿质营养的基准测试

Benchmarking Bulb Yield, Medicinal Sulfur Compounds, and Mineral Nutrition of Garlic Varieties.

作者信息

Nguyen Binh Thi, Wehr Johannes Bernhard, Kopittke Peter Martin, O'Hare Timothy James, Menzies Neal William, Hong Hung Trieu, McKenna Brigid Ann, Klysubun Wantana, Harper Stephen Mark

机构信息

School of Agriculture and Food Sustainability, The University of Queensland, Gatton, QLD 4343, Australia.

National Institute of Medicinal Materials, Hanoi 11000, Vietnam.

出版信息

ACS Omega. 2024 Oct 30;9(45):45240-45250. doi: 10.1021/acsomega.4c06678. eCollection 2024 Nov 12.

Abstract

Garlic is widely cultivated for both its culinary and medicinal properties. Bulb yield, organosulfur compounds, and plant mineral nutrition of 32 garlic varieties were characterized. Across genotypes, there was large variability in bulb weight and alliin and allicin concentrations. The mineral concentration of a reference leaf was strongly positively correlated with bulb weight (for Zn, N, and K) and bulb allicin concentration (for S, Mo, and Cu). Alliin represented ∼61 and 88% of the total clove S content. synchrotron-based X-ray absorption near-edge structure (XANES) analysis identified two dominant S compounds, γ-l-glutamyl--allyl-l-cysteine and alliin. Stoichiometric studies showed the ratio of conversion of alliin to pyruvate was consistently below the theoretical 1:1 ratio, while the ratio for conversion of alliin to allicin was consistently higher (∼1.9:1 to 3.5:1). A combination of optimized fertilizer management and genotype selection for high alliin can potentially substantially increase the yield and medicinal quality of garlic.

摘要

大蒜因其烹饪和药用特性而被广泛种植。对32个大蒜品种的鳞茎产量、有机硫化合物和植物矿物质营养进行了表征。在不同基因型中,鳞茎重量、蒜氨酸和大蒜素浓度存在很大差异。参考叶片的矿物质浓度与鳞茎重量(锌、氮和钾)和鳞茎大蒜素浓度(硫、钼和铜)呈极显著正相关。蒜氨酸占丁香总硫含量的约61%和88%。基于同步加速器的X射线吸收近边结构(XANES)分析确定了两种主要的硫化合物,γ-L-谷氨酰基-L-烯丙基-L-半胱氨酸和蒜氨酸。化学计量学研究表明,蒜氨酸转化为丙酮酸的比例始终低于理论1:1比例,而蒜氨酸转化为大蒜素的比例始终较高(约1.9:1至3.5:1)。优化肥料管理和选择高蒜氨酸基因型相结合,有可能大幅提高大蒜的产量和药用品质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6268/11561592/debb7192ef83/ao4c06678_0001.jpg

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