Organic system and reflections on white oat grain productivity components

Aline Luiza Schmidt, I. Carvalho, Leonardo Cesar Pradebon, José Antonio Gonzalez Silva, Murilo Vieira Loro, Inaê Carolina Sfalcin, E. D. Port, T. A. Segatto, Aljian Antônio Alban, M. Challiol
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引用次数: 2

Abstract

The objective of the study was to evidence efficient management strategies in order to maximize the organic cultivation system promotes a new dynamic in the behavior of white oat genotypes, where it is necessary to evidence genotypes with superior performance. The study aimed to highlight the productive performance and genetic diversity of white oat genotypes in an organic system. The experiment was carried out in the municipality of Augusto Pestana - RS, in the 2021 crop year. The experimental design used was randomized blocks with four treatments arranged in five replications. The treatments correspond to the cultivars IPR Artemis, URS Taura, URS Corona and URS Brava. It is observed that there is a possibility of indirect selection of productive genotypes through the mass of grains per panicle and number of grains per panicle. Brava and Taura are the most divergent genotypes. Through the analysis of the white oat genotypes, it is highlighted that it is possible to promote the proper positioning of the genotypes in the organic system. In addition, the existence of genetic divergence between the genotypes is evidenced. The components that determined the productivity of white oat cultivars in organic system were number of plants per square meter, number and grain weight per plant. The cultivar IPR Artemis and URS Taura showed similarity for plant height and height of panicle insertion, tillering and grain yield, URS Brava and URS Corona are similar in terms of the number of grains per plant. IPR Artemis is recommended for grain yield in an organic system.
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白燕麦籽粒生产力组成的有机系统与思考
本研究的目的是证明有效的管理策略,以最大限度地提高有机栽培系统促进白燕麦基因型行为的新动态,其中有必要证明具有优越性能的基因型。本研究旨在揭示一个有机系统中不同白燕麦基因型的生产性能和遗传多样性。该实验于2021年作物年在奥古斯托-佩斯塔纳- RS市进行。试验设计采用随机分组,4个处理分为5个重复。处理的品种分别为:蒿属植物IPR Artemis、aura、aura和Brava。结果表明,通过每穗粒数和每穗粒数,有间接选择生产基因型的可能。Brava和Taura是差异最大的基因型。通过对白燕麦基因型的分析,强调了促进基因型在有机系统中的正确定位的可能性。此外,基因型之间存在遗传差异。在有机系统中决定白燕麦品种生产力的成分是每平方米株数、单株粒数和单株粒重。在株高、穗高、分蘖和产量方面,阿耳特弥斯(IPR Artemis)和杜鹃(URS Taura)表现出相似性;在单株粒数方面,布拉瓦(URS Brava)和冠叶(URS Corona)表现出相似性。IPR Artemis被推荐用于有机系统中的粮食产量。
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