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通过反刍动物营养探索燕麦籽粒产量、营养和消化率性状的遗传变异性。

Exploring the genetic variability in yield, nutritional and digestibility traits in oat grains through ruminant nutrition.

作者信息

Singh Sultan, Koli Pushpendra, Ahmed Shahid, Kumar Neeraj, Rana Maneet, Singhal Rajesh, Choudhary Mukesh, Ren Yonglin

机构信息

Plant Animal Relationship Division, ICAR-Indian Grassland and Fodder Research Institute, Jhansi, UP, 284003 India.

College of Environmental and Life Sciences, Murdoch University, 90 South Street, Murdoch, WA, 6150, Australia.

出版信息

Heliyon. 2024 May 18;10(10):e31541. doi: 10.1016/j.heliyon.2024.e31541. eCollection 2024 May 30.

Abstract

Oat is a dual-purpose crop used for both food and feed for animals. The objective of this work is to characterize oat varieties for their genetic diversity in yield, physical traits, and nutritional composition, aiming to identify potential parent varieties for breeding programs to develop new oat varieties for improved livestock feed and diverse industrial applications. To conduct, chemical analysis for protein and carbohydare fractions, energy and digestible nutrient estimated, stastical analyses performed to assess genetic variations for traits among vaieties. Significant genetic variation ( < 0.05) for grain yield, grain density, sieving percentage, crude protein, ether extract, neutral and acid detergent fiber, cellulose, lignin, neutral and acid detergent insoluble nitrogen were observed in grains of eight oat varieties. All protein fractions exhibited significant differences ( < 0.05). Total carbohydrate content ranged significantly ( < 0.05) from 73 % to 79 %. The grains contained higher levels of intermediately degradable starch and pectin (54.12-60.16 %) compared to the slowly degradable cell wall (26-33 %), lignin bounded cell wall (6-10 %), and rapidly degradable sugars (2-8%). Significant variation ( < 0.05) was observed in terms of gross energy, digestible energy, metabolizable energy, net energy for maintenance and lactation about (2 Mcal/kg dry matter), gain (1.6-1.8 Mcal/kg dry matter), total digestible nutrients, digestible dry matter, rumen degradable protein, and total digestible nutrients related to crude protein, fatty acid, neutral detergent fiber, and non-fiber carbohydrate. Organic matter and ether extract were positively associated ( < 0.01) with total digestible nutrients, digestible and metabolizable energy, dry matter digestible and truly digestible non fibrous cabohydrates, while neutral and acid detergent fiber and cellulose showed negative correlation. The research shows that oat varieties vary widely in their yield, physical features, and nutritional content, offering potential for breeding better varieties for both animal feed and industrial uses.

摘要

燕麦是一种兼具粮食和动物饲料双重用途的作物。这项工作的目的是对燕麦品种的产量、物理特性和营养成分的遗传多样性进行表征,旨在为育种计划确定潜在的亲本品种,以培育新的燕麦品种,用于改善家畜饲料和多种工业应用。为了进行蛋白质和碳水化合物组分的化学分析、估算能量和可消化养分,对各品种间性状的遗传变异进行了统计分析。在八个燕麦品种的籽粒中,观察到籽粒产量、籽粒密度、筛分率、粗蛋白、乙醚提取物、中性和酸性洗涤纤维、纤维素、木质素、中性和酸性洗涤不溶性氮存在显著的遗传变异(P<0.05)。所有蛋白质组分均表现出显著差异(P<0.05)。总碳水化合物含量在73%至79%之间有显著差异(P<0.05)。与缓慢降解的细胞壁(26%-33%)、木质素结合细胞壁(6%-10%)和快速降解糖(2%-8%)相比,籽粒中含有较高水平的中度可降解淀粉和果胶(54.12%-60.16%)。在总能、消化能、代谢能、维持和泌乳净能(约2兆卡/千克干物质)、增重(1.6-1.8兆卡/千克干物质)、总可消化养分、可消化干物质、瘤胃可降解蛋白以及与粗蛋白、脂肪酸、中性洗涤纤维和非纤维碳水化合物相关的总可消化养分方面,观察到显著变异(P<0.05)。有机质和乙醚提取物与总可消化养分、消化能和代谢能、干物质消化率和真正可消化的非纤维碳水化合物呈正相关(P<0.01),而中性和酸性洗涤纤维以及纤维素呈负相关。研究表明,燕麦品种在产量、物理特征和营养成分方面差异很大,为培育更适合动物饲料和工业用途的品种提供了潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/133d/11133913/fe1c6122d203/gr1.jpg

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