改良木瓜基因型形态分析及光合性能

A. T. Netto, E. Campostrini, L. C. Azevedo, Marcelo A. Souza, J. Ramalho, M. Chaves
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引用次数: 17

摘要

巴西是世界上最大的木瓜生产国和第三大出口国,尽管其产量只有1.5%至2.0%用于出口。这种未充分开发的出口潜力突出了对新品种和杂交种进行生理研究以验证其农艺和商业可行性的必要性。巴西的巴伊亚州和圣埃斯皮里图州占全国产量的80%。木瓜也可以成为里约热内卢北部/东北部的一种农业替代品,因为该地区靠近消费中心,环境条件与最具生产力的地区相似。尽管如此,在该地区开发能表现出最高产量潜力的品种是值得的。本研究的目的是对里约热内卢北部和东北部的两个杂交品种(UENF/Caliman 01和JS12)进行生理表征,并与三种顶级商业基因型(Golden、Sunrise Solo 7212和Tainung)进行比较。与其他基因型相比,金色基因型的茎、根生长最低,株高、缩径、比叶重最低,单位面积电子传递效率较低,合成总叶绿素的能力最低。正午时分,该基因型气孔导度较高,这与叶片-空气蒸气压亏缺有关,从而导致较高的蒸腾速率和内在水分利用效率。5个基因型的光合速率无显著差异,表明UENF杂交种具有与顶级商业基因型相似的光合能力和形态特征。我们将讨论这一特性与未来成功的遗传改良计划的相关性。
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Morphological analysis and photosynthetic performance of improved papaya genotypes
Brazil is the largest world producer of papaya and the third largest exporter despite of only 1.5 to 2.0% of its production is exported. Such an underexplored exportation potential highlight the necessity for physiological studies on new cultivars and hybrids to verify their agronomic and commercial viability. Two Brazilian states, Bahia and Espirito Santo, are responsible for 80% of national production. Papaya can also be an agricultural alternative to north / northeast of Rio de Janeiro, because the region is close to consumer centers and have similar environmental conditions of the most productive regions. Nevertheless, it is worth to develop cultivars that can express the highest yield potential in this region. The aim of this work was to characterize physiologically two hybrids developed for the north/northeast of Rio de Janeiro (UENF/Caliman 01 and JS12) in comparison with three top commercial genotypes (Golden, Sunrise Solo 7212 and Tainung) of Caricapapaya L. The cv. Golden presented the lowest shoot and root growth, the lowest height, shrunk diameter, specific leaf weight, less efficiency in electrons transport per sample area and show the lowest ability to synthesized total chlorophylls in comparison with the others genotypes. At noon, this genotype showed higher stomatal conductance, related to the leaf-air vapor pressure deficit, which lead to higher transpiration rate and intrinsic water use efficiency. No differences were detected in the photosynthetic rates among the five genotypes suggesting that the UENF`s hybrids are endowed with similar photosynthetic capacity and morphological characteristics to the top commercial genotypes. The relevance of this characterization to drive future successful genetic improvement programs will be discussed.
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