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Phytic acid and raffinose series oligosaccharides metabolism in developing chickpea seeds

机译:鹰嘴豆种子中植酸和棉子糖系列低聚糖的代谢

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Phytic acid and raffinose series oligosaccharides (RFOs) have anti-nutritional properties where phytic acid chelates minerals and reduces their bioavailability to humans and other animals, and RFOs cause flatulence. Both phytic acid and RFOs cannot be digested by monogastric animals and are released as pollutant-wastes. Efforts are being made to reduce the contents of these factors without affecting the viability of seeds. This will require a thorough understanding of their metabolism in different crops. Biosynthetic pathways of both metabolites though are interlinked but not well described. This study was made on metabolism of these two contents in developing chickpea (Cicer arietinum L cv GL 769) seeds. In this study, deposition of RFOs was found to occur before deposition of phytic acid. A decline in inorganic phosphorus and increase in phospholipid phosphorus and phytic acid was observed in seeds during development. Acid phosphatase was the major phosphatase in seed as well as podwall and its activity was highest at early stage of development, thereafter it decreased. Partitioning of 14 C label from 14 C-glucose and 14 C-sucrose into RFOs and phytic acid was studied in seeds in presence of inositol, galactose and iositol and galactose, which favored the view that galactinol synthase is not the key enzyme in RFOs synthesis.
机译:植酸和棉子糖系列低聚糖(RFO)具有抗营养特性,其中植酸螯合矿物质并降低其对人类和其他动物的生物利用度,而RFO则导致肠胃胀气。植酸和RFO都不能被单胃动物消化,并以污染物废物的形式释放出来。正在努力减少这些因子的含量而不影响种子的生存力。这将需要对其不同作物中新陈代谢的透彻了解。两种代谢物的生物合成途径虽然是相互联系的,但没有得到很好的描述。这项研究是针对正在发育的鹰嘴豆(Cicer arietinum L cv GL 769)种子中这两种含量的代谢进行的。在这项研究中,发现RFO的沉积发生在植酸沉积之前。在发育过程中,在种子中观察到无机磷的减少以及磷脂磷和植酸的增加。酸性磷酸酶是种子和豆荚中的主要磷酸酶,其活性在发育初期最高,随后下降。研究了肌醇存在下种子中 14 C-葡萄糖和 14 C-蔗糖中的 14 C标签向RFO和植酸的分配,半乳糖,肌醇和半乳糖,这种观点支持半乳糖醇合酶不是RFO合成中的关键酶。

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