Biological evaluation of protein quality of raw and processed seeds of an underutilized legume sickle pod (Cassia obtusifolia L.).
Muthiah Pugalenthi, Dharmar Rajendrakumaran, A. Döss, Vellingiri Vadivel
Abstract
Muthiah Pugalenthi, Dharmar Rajendrakumaran, A. Döss, Vellingiri Vadivel
Abstract
The nutritional and anti-nutritional profiles as well as biological value and protein quality of raw and differentially processed seed materials of an under-utilized sickle pod seeds (SPS)(Cassia obtusifolia L.) were analyzed. The raw seeds were found to contain higher levels of crude proteins (27.30%), crude lipids (6.06%), crude fibers (9.70%) and ash content (5.60%). Even though, certain nutritionally undesirable anti-nutritional substances were present in the raw SPS, the autoclaving treatment is more effective in reducing the maximum levels of total free phenolics (81%), tannins (85.7%), L-Dopa (79%), phytic acid (77%), oligosaccharides like raffinose (77%), stachyose (73%) and verbascose (75%), haemagglutinating activity (69%), trypsin inhibitor activity (72%) and amylase inhibitor activity (78%) without affecting the nutritional quality. The experimental animals fed with autoclaved SPS samples exhibited better growth performance such as feed intake (FI) (192 g 28 days−1), body weight gain (BWG) (51.3 g 28 days−1), feed conversion ratio (FCR) (0.26) and protein efficiency ratio (PER) (2.67). Further, the protein quality such as true digestibility (TD) (78.5%), biological value (BV) (73.6%), net protein utilization (NPU) (54.7%) and utilizable proteins (UP) (16.45%) of the animals fed with diet containing autoclaved SPS samples were also found to be higher than the raw and other processed SPS included diets.
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The nutritional and anti-nutritional profiles as well as biological value and protein quality of raw and differentially processed seed materials of an under-utilized sickle pod seeds (SPS)(Cassia obtusifolia L.) were analyzed. The raw seeds were found to contain higher levels of crude proteins (27.30%), crude lipids (6.06%), crude fibers (9.70%) and ash content (5.60%). Even though, certain nutritionally undesirable anti-nutritional substances were present in the raw SPS, the autoclaving treatment is more effective in reducing the maximum levels of total free phenolics (81%), tannins (85.7%), L-Dopa (79%), phytic acid (77%), oligosaccharides like raffinose (77%), stachyose (73%) and verbascose (75%), haemagglutinating activity (69%), trypsin inhibitor activity (72%) and amylase inhibitor activity (78%) without affecting the nutritional quality. The experimental animals fed with autoclaved SPS samples exhibited better growth performance such as feed intake (FI) (192 g 28 days−1), body weight gain (BWG) (51.3 g 28 days−1), feed conversion ratio (FCR) (0.26) and protein efficiency ratio (PER) (2.67). Further, the protein quality such as true digestibility (TD) (78.5%), biological value (BV) (73.6%), net protein utilization (NPU) (54.7%) and utilizable proteins (UP) (16.45%) of the animals fed with diet containing autoclaved SPS samples were also found to be higher than the raw and other processed SPS included diets.
Key concepts: Raffinose, Biological value, Net protein utilization, Protein efficiency ratio, Cassia, Stachyose, Phytic acid, Point of delivery