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首页> 外文期刊>Planta: An International Journal of Plant Biology >The biochemistry underpinning industrial seed technology and mechanical processing of sugar beet
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The biochemistry underpinning industrial seed technology and mechanical processing of sugar beet

机译:糖甜菜工业种子技术的生物化学和机械加工

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Main conclusionSeed-processing technologies such as polishing and washing enhance crop seed quality by limited removal of the outer layers and by leaching. Combined, this removes chemical compounds that inhibit germination.AbstractIndustrial processing to deliver high-quality commercial seed includes removing chemical inhibitors of germination, and is essential to produce fresh sprouts, achieve vigorous crop establishment, and high yield potential in the field. Sugar beet (Beta vulgaris subsp. vulgaris var. altissima Doell.), the main sugar source of the temperate agricultural zone, routinely undergoes several processing steps during seed production to improve germination performance and seedling growth. Germination assays and seedling phenotyping was carried out on unprocessed, and processed (polished and washed) sugar beet fruits. Pericarp-derived solutes, known to inhibit germination, were tested in germination assays and their osmolality and conductivity assessed (ions). Abscisic acid (ABA) and ABA metabolites were quantified in both the true seed and pericarp tissue using UPLC-ESI(+)-MS/MS. Physical changes in the pericarp structures were assessed using scanning electron microscopy (SEM). We found that polishing and washing of the sugar beet fruits both had a positive effect on germination performance and seedling phenotype, and when combined, this positive effect was stronger. The mechanical action of polishing removed the outer pericarp (fruit coat) tissue (parenchyma), leaving the inner tissue (sclerenchyma) unaltered, as revealed by SEM. Polishing as well as washing removed germination inhibitors from the pericarp, specifically, ABA, ABA metabolites, and ions. Understanding the biochemistry underpinning the effectiveness of these processing treatments is key to driving further innovations in commercial seed quality.
机译:主要结论 - 加工技术,如抛光和洗涤,通过限制除去外层和浸出来增强作物种子质量。结合,这种除去抑制发芽的化学化合物。制作工业加工以提供高质量的商业种子,包括去除萌发的化学抑制剂,并且对于产生新鲜豆芽,实现剧烈作物的建立,以及该领域的高收益潜力至关重要。甜菜(Beta Vulgaris subsp.vulgaris var。Altissima doell。),温带农业区的主要糖来源,经常在种子生产过程中经历几个加工步骤,以改善萌发性能和幼苗生长。在未加工的和加工(抛光和洗涤的)甜菜果实上进行萌发测定和幼苗表型。已知抑制发芽的果皮衍生的溶质在萌发测定中进行测试,并评估其渗透性和导电性(离子)。使用UPLC-ESI(+) - MS / MS在真正的种子和果皮组织中量化脱落酸(ABA)和ABA代谢物。使用扫描电子显微镜(SEM)评估PericaRP结构的物理变化。我们发现糖束果实的抛光和洗涤都对发芽性能和幼苗表型产生了积极影响,并且当结合时,这种阳性效果更强。抛光的机械作用除去外膜(水果涂层)组织(实质涂层),使内组织(Sclerenchyma)未被SEM透露。抛光以及洗涤除去果皮,特别是ABA,ABA代谢物和离子的萌发萌发抑制剂。了解内宁的生物化学,这些加工治疗的有效性是推动商业种子质量进一步创新的关键。

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