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Improving nutritional quality and fungal tolerance in soya bean and grass pea by expressing an oxalate decarboxylase

机译:通过表达草酸脱羧酶提高大豆和豌豆的营养品质和真菌耐受性

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Soya bean ( Glycine max ) and grass pea ( Lathyrus sativus ) seeds are important sources of dietary proteins; however, they also contain antinutritional metabolite oxalic acid (OA). Excess dietary intake of OA leads to nephrolithiasis due to the formation of calcium oxalate crystals in kidneys. Besides, OA is also a known precursor of ???2?¢???? N ?¢????oxalyl?¢???? L ?¢???????±,???2?¢????diaminopropionic acid (???2?¢????ODAP), a neurotoxin found in grass pea. Here, we report the reduction in OA level in soya bean (up to 73%) and grass pea (up to 75%) seeds by constitutive and/or seed?¢????specific expression of an oxalate?¢????degrading enzyme, oxalate decarboxylase (FvOXDC) of Flammulina velutipes . In addition, ???2?¢????ODAP level of grass pea seeds was also reduced up to 73%. Reduced OA content was interrelated with the associated increase in seeds micronutrients such as calcium, iron and zinc. Moreover, constitutive expression of FvOXDC led to improved tolerance to the fungal pathogen Sclerotinia sclerotiorum that requires OA during host colonization. Importantly, FvOXDC ?¢????expressing soya bean and grass pea plants were similar to the wild type with respect to the morphology and photosynthetic rates, and seed protein pool remained unaltered as revealed by the comparative proteomic analysis. Taken together, these results demonstrated improved seed quality and tolerance to the fungal pathogen in two important legume crops, by the expression of an oxalate?¢????degrading enzyme.
机译:大豆(Glycine max)和豌豆(Lathyrus sativus)种子是膳食蛋白质的重要​​来源。但是,它们还含有抗营养代谢产物草酸(OA)。由于肾脏中草酸钙晶体的形成,饮食中过量摄入OA会导致肾结石病。此外,OA也是已知的2 2的前体。 N?¢ ????草酰¢¢ ?????? L ??????????,??????????二氨基丙酸(??????? ODAP),一种在豌豆中发现的神经毒素。在此,我们报道了草酸或草酸的种子中大豆(最多73%)和豌豆(最多75%)种子中OA含量的降低。金针菇的降解酶,草酸脱羧酶(FvOXDC)。另外,草豌豆种子的2%ODAP水平也降低了高达73%。 OA含量降低与种子中微量营养素如钙,铁和锌的增加相关。此外,FvOXDC的组成型表达导致对真菌病原菌菌核盘菌的耐受性提高,该菌在宿主定植过程中需要OA。重要的是,表达FvOXDC的大豆和草豌豆植物的形态和光合速率与野生型相似,并且通过比较蛋白质组学分析显示,种子蛋白库保持不变。综上所述,这些结果证明了通过表达草酸盐降解酶可以改善两种重要豆类作物的种子质量和对真菌病原体的耐受性。

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