Evaluating the relationship between stem and leaf biomass as well as stem length and leaf surface area of amaranth cultivars in improving food plant

Sylvestre Havugimana, Daniel Nsengumuremyi, I. Kiseleva, Adjira Umukwiye
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Abstract

Amaranth is now cultivated almost all over the World for multiple purposes, such as a vegetable, seed food, feed for animals, medicine, and for industry uses. They are highly nutritious, with vitamins and minerals. Leaf area and leaf dry biomass are key parameters linked to plant growth and production. The relationship between leaf biomass and leaf surface area, as well as stem biomass and stem length, is important to our understanding of plant scaling relationships because of their relationship to plant survival. This paper aimed to evaluate the relationship between and within the leaf and stem parameters of nine different amaranth cultivars. The fresh leaves and stems were weighed in their fresh masses; the surface area for leaves was calculated by drawing a full leaf in square quadrats and then counting the square quadrats occupied by a leaf and the stem length was measured using a ruler. Our results indicated that there was a clear relationship between leaf fresh mass and leaf dry mass but a negative correlation between stem fresh mass and stem dry mass due to different internal contents such as water and substances. A low significance was obtained between leaf biomass and leaf surface area, stem biomass and stem length, and leaf biomass and stems biomass as well as leaf surface area and stem length. Our results revealed that this variability of values causes the disproportional ratio of fresh mass to dry mass due to the differentiation quantity of water and solutes within the leaves and stems.
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评估苋菜栽培品种的茎叶生物量以及茎长和叶表面积与改良食用植物之间的关系
苋菜现在几乎在世界各地都有种植,用途多种多样,如蔬菜、种子食品、动物饲料、医药和工业用途。苋菜营养丰富,富含维生素和矿物质。叶面积和叶干生物量是与植物生长和产量相关的关键参数。叶生物量和叶表面积以及茎生物量和茎长度之间的关系对我们了解植物的比例关系非常重要,因为它们与植物的存活率有关。本文旨在评估九种不同苋菜栽培品种的叶和茎参数之间及其内部的关系。新鲜叶片和茎按新鲜质量称重;叶片表面积的计算方法是将一片完整的叶片画在正方形四分格中,然后计算叶片所占的正方形四分格;茎的长度则用直尺测量。结果表明,叶片鲜重和叶片干重之间有明显的关系,但由于水分和物质等内部含量不同,茎秆鲜重和茎秆干重之间呈负相关。叶生物量与叶表面积、茎生物量与茎长度、叶生物量与茎生物量以及叶表面积与茎长度之间的显著性较低。我们的研究结果表明,由于叶片和茎中水分和溶质的数量不同,这种数值的变化导致鲜质量与干质量的比例失调。
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