期刊文献+

Sorghum:Nutritional Factors,Bioactive Compounds,Pharmaceutical and Application in Food Systems:A Review 被引量:1

下载PDF
导出
摘要 After wheat,rice,maize,and barley,sorghum is the fifth most widely grown cereal on the planet.Due to its high production,drought resistance,and heat tolerance,this crop is replacing maize in some areas.Sorghum is available in a variety of colors,including cream,lemon-yellow,red,and even black.The principal grain anatomical components are pericarp,germ or embryo and endosperm.This review provides an overview of key sorghum grain components,including starches,fiber,proteins,lipids,and vitamins.Also,we summarized phenolic compounds,flavonoids,tannins,carotenoids,vitamin E,amines,Policosanols and Phytosterols in sorghum grains.Sorghum is used to manufacture bread and porridge,and it provides a significant source of energy and nutrition for humans;sorghum is extensively farmed for animal feed.However,because the natural components in sorghum are useful in the development of healthy and functional foods,sorghum farming for both biofuel production and human consumption is gaining popularity.Pigmented sorghum grain is high in antioxidants such as polyphenols,primarily tannins,which have a variety of health benefits,including antiproliferative properties linked to the prevention of certain cancers,antioxidant activities linked to the prevention of diseases linked to oxidative stress,and anti-inflammatory effects,as well as improving glucose metabolism.Because these chemicals cannot be assimilated,their application in the food business has been limited,as sorghum is regarded as a lownutritional grain due to the presence of anti-nutritional components such as strong tannins,which form complexes with proteins and iron,limiting their digestibility.This review aims to show the utilization of sorghum as a source of bioactive chemicals and the value they bestow on human health due to the general biological potential it possesses.
出处 《Phyton-International Journal of Experimental Botany》 SCIE 2022年第7期1303-1325,共23页 国际实验植物学杂志(英文)
  • 相关文献

参考文献4

二级参考文献229

  • 1Abd El-Moneim MR Afify,Hossam S El-Beltagi,Sayed A Fayed,Emad A Shalaby.Acaricidal activity of different extracts from Syzygium cumini L.Skeels(Pomposia) against Tetranychus urticae Koch[J].Asian Pacific Journal of Tropical Biomedicine,2011,1(5):359-364. 被引量:5
  • 2Giovanni E. Mann,Jorg Niehueser-Saran,Alan Watson,Ling Gao,Tetsuro Ishii,Patricia de Winter,Richard C. M. Siow.内皮细胞和平滑肌细胞氧化应激时Nrf2/ARE信号通路对抗氧化基因表达的调控:与动脉粥样硬化和先兆子痫的关系[J].生理学报,2007,59(2):117-127. 被引量:36
  • 3Aoki T, Akashi T, Ayabe S (2000) Flavonoids of leguminous plants: structure, biological activity, and biosynthesis. J. Plant Res. 113, 475-488.
  • 4Arioli T, Howles PA, Weinman J J, Rolfe BG (1994) In Tdfofium subterranium, chalcone synthase is encoded by a multigene family. Gene 138, 79-86.
  • 5Bais HP, Weir TL, Perry LG, Gilroy S, Vivanco JM (2006) The role of root exudates in rhizosphere interactions with plants and other organisms. Annu. Rev. Plant Biol. 57, 233-266.
  • 6Bennett T, Sieberer T, Willett B, Booker J, Luschnig C, Leyser O (2006) The Arabidopsis MAX pathway controls shoot branching by regulating auxin transport. Curr. Biol. 16, 553-563.
  • 7Birnbaum K, Shasha DE, Wang JY, Jung JW, Lambert GM, Galbraith DW, Benfey PN (2003) A gene expression map of the Arabidopsis root. Science 302, 1956-1960.
  • 8Blancaflor EB, Masson PH (2003) Plant gravitropism. Unraveling the ups and downs of a complex process. Plant Physiol. 133, 1677- 1690.
  • 9Bohl M, Tietze S, Sokoll A, Madathil S, Pfennig F, Apostolakis J, Fahmy K, Gutzeit HO (2007) Flavonoids affect actin functions in cytoplasm and nucleus. Biophys. J. 93, 2767-2780.
  • 10Boudet AM (2007) Evolution and current status of research in phenolic compounds. Phytochemistry 68, 2722-2735.

共引文献72

同被引文献12

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部