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Photosynthetic capacity leaf respiration and growth in two papaya (Carica papaya) genotypes with different leaf chlorophyll concentrations

机译:两种不同叶绿素浓度的木瓜基因型的光合能力叶片呼吸和生长

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摘要

Golden genotype of papaya (Carica papaya), named for its yellowish leaves, produces fruits very much appreciated by consumers worldwide. However, its growth and yield are considerably lower than those of other genotypes, such as ‘Sunrise Solo’, which has intensely green leaves. We undertook an investigation with the goal of evaluating key physiological traits that can affect biomass accumulation of both Golden and Sunrise Solo genotypes. Papaya seeds from two different genotypes with contrasting leaf colour ‘Sunrise Solo’ and Golden were grown in greenhouse conditions. Plant growth (plant height, leaf number, stem diameter, leaf area, plant dry weight), leaf gas exchanges, leaf carbon balance, RuBisCO oxygenation and carboxylation rates, nitrogen, as well as chlorophyll concentrations and fluorescence variables were assessed. Although no significant differences were observed for photosynthetic rates between genotypes, the accumulation of small differences in photosynthesis, day after day, over a long period, might contribute to some extend to a higher C-budget in Sunrise Solo, higher leaf area and, thus, to higher productivity. Additionally, we consider that physiological processes other than photosynthesis and leaf respiration can be as well involved in lower growth and yield of Golden. One of these aspects could be related to the higher rates of photorespiration observed in Sunrise Solo, which could improve the rate of N assimilation into organic compounds, such as amino acids, thus contributing to the higher biomass production in Sunrise Solo relative to Golden. Further experiments to evaluate the effects of N metabolism on physiology and growth of Golden are required as it has the potential to limit its yield.
机译:木瓜的黄金基因型(番木瓜)以其淡黄色的叶子而得名,其果实非常受全世界消费者的欢迎。但是,它的生长和产量大大低于其他基因型,例如“ Sunrise Solo”,其叶子呈绿色。我们进行了一项调查,其目的是评估可能影响Golden和Sunrise Solo基因型生物量积累的关键生理特征。在温室条件下种植了两种不同基因型的木瓜种子,它们的叶色分别为“日出独奏”和“金色”。评估了植物生长(植物高度,叶数,茎直径,叶面积,植物干重),叶片气体交换,叶片碳平衡,RuBisCO氧化和羧化速率,氮以及叶绿素浓度和荧光变量。尽管没有观察到基因型之间光合速率的显着差异,但长期日复一日地光合作用的细微差异的积累可能有助于在某种程度上扩展到日出独奏的更高的C-预算,更高的叶面积,因此,以提高生产率。此外,我们认为光合作用和叶片呼吸以外的生理过程也可能与黄金的生长和产量降低有关。这些方面之一可能与Sunrise Solo中观察到的更高的光呼吸速率有关,这可以提高N同化到有机化合物(例如氨基酸)中的速率,从而有助于Sunrise Solo中相对于Golden更高的生物量生产。由于需要限制氮的产量,因此需要进行进一步的实验来评估氮代谢对黄金的生理和生长的影响。

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