Singh Saurabh, Das Anjan, Singh Rajender, Chikh-Rouhou Hela, Priyadarsini Srija, Nandi Alok
Department of Vegetable Science, College of Horticulture and Forestry, Rani Lakshmi Bai Central Agricultural University (RLBCAU), Jhansi, U.P, 284003, India.
Division of Vegetable Science, ICAR-Indian Agricultural Research Institute (IARI), New Delhi, 110012, India.
Planta. 2024 Dec 10;261(1):10. doi: 10.1007/s00425-024-04587-9.
Brassica vegetables are one of the possible solutions to tackle the emerging human diseases and malnutrition due to their rich content of phyto-nutraceutaical compounds. The genomics enabled tools have facilitated the elucidation of molecular regulation, mapping of genes/QTLs governing nutraceutical compounds, and development of nutrient-rich Brassica vegetables. The enriched food products or foods as whole termed as functional foods are intended to provide health benefits. The 2500 year old Hippocratic phrase 'let thy food be thy medicine and thy medicine be thy food' remained in anonymity due to lack of sufficient evidence. However, today, we are facing reappraisal of healthy nutritious functional foods in battling diseases. In this context, the Brassica vegetables represent the most extensively investigated class of functional foods. An optimal consumption of Brassica vegetables is associated with lowering the risks of several types of cancer, chronic diseases, cardiovascular disease, and help in autism. In the post-genomic era, the integration of genetic and neoteric omics tools like transcriptomics, metabolomics, and proteomics have illuminated the downstream genetic mechanisms governing functional food value of Brassica vegetables. In this review, we have summarized in brief the phyto-nutraceutical profile and their functionality in Brassica vegetables. This review also highlights the progress made in identification of candidate genes/QTLs for accumulation of bioactive compounds in Brassica vegetables. We summarize the molecular regulation of major phytochemicals and breeding triumphs in delivering multifunctional Brassica vegetables.
十字花科蔬菜因其富含植物营养化合物,是应对新出现的人类疾病和营养不良问题的可能解决方案之一。基因组学工具有助于阐明分子调控机制、绘制控制营养化合物的基因/数量性状位点图谱,以及培育营养丰富的十字花科蔬菜。富含营养的食品或整体被称为功能性食品的食物旨在提供健康益处。有一句2500年前希波克拉底的名言“让食物成为你的药物,让药物成为你的食物”,由于缺乏足够证据,一直不为人知。然而,如今,在与疾病作斗争的过程中,我们正在重新审视健康营养的功能性食品。在这种背景下,十字花科蔬菜是研究最为广泛的一类功能性食品。适量食用十字花科蔬菜与降低多种癌症、慢性病、心血管疾病的风险以及有助于治疗自闭症有关。在后基因组时代,基因与转录组学、代谢组学和蛋白质组学等新兴组学工具的整合,揭示了控制十字花科蔬菜功能食品价值的下游遗传机制。在这篇综述中,我们简要总结了十字花科蔬菜中的植物营养成分及其功能。这篇综述还强调了在鉴定十字花科蔬菜中生物活性化合物积累的候选基因/数量性状位点方面所取得的进展。我们总结了主要植物化学物质的分子调控以及培育多功能十字花科蔬菜方面的育种成果。