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Eco-physiological response to water stress of drought-tolerant and drought-sensitive tomato genotypes

机译:耐旱和干旱敏感性番茄基因型对水分胁迫的生态生理响应

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Water stress is an increasing environmental constraint affecting tomato growth and yield in Mediterranean areas. Solanum pennellii is a wild tomato species that exhibits a higher water use efficiency compared with cultivated S. lycopersicum. In particular, a cultivated line carrying a small S. pennellii region on chromosome 9 (IL 9-2-5) was identified as more tolerant to water deficit. In this work, the tolerant (IL 9-2-5) and the susceptible (M82) genotypes were subjected to three different water regimes: irrigation with 100% (V1), 50% (V2) and 25% (V3) field capacity. To evaluate the physiological response of IL 9-2-5 and M82 to water deficit, leaf functional traits, plant biomass production and maximal PSII photochemical efficiency were measured together with photosynthetic pigments and phenolic compounds. The higher tolerance to water deficiency of IL 9-2-5 was associated with the development of a better antioxidant system, especially in treatment V3. In addition, IL 9-2-5 had higher values of sclerophylly and leaf dry matter content thus confirming that the tolerance of IL 9-2-5 can be attributed to traits related to leaf morphology and physiology. In future, identification of polymorphisms in key-genes controlling these traits can guide breeding efforts aimed at improving susceptible genotypes.
机译:水分胁迫是影响地中海地区番茄生长和产量的日益严重的环境制约因素。 Pennellii茄属是一种野生番茄,与栽培的S. lycopersicum相比,具有更高的用水效率。特别地,鉴定出在第9号染色体上带有小潘氏葡萄球菌区域的栽培品系(IL 9-2-5)更耐缺水。在这项工作中,对耐性(IL 9-2-5)和易感性(M82)基因型进行了三种不同的水分处理:100%(V1),50%(V2)和25%(V3)田间灌溉。为了评估IL 9-2-5和M82对缺水的生理反应,测量了叶片的功能性状,植物生物量的产生和最大的PSII光化学效率,以及光合色素和酚类化合物。 IL 9-2-5对水分缺乏的较高耐受性与更好的抗氧化剂体系的发展有关,尤其是在处理V3中。另外,IL 9-2-5具有较高的硬核和叶片干物质含量值,从而证实IL 9-2-5的耐受性可归因于与叶片形态和生理相关的性状。将来,识别控制这些性状的关键基因中的多态性可以指导旨在改善易感基因型的育种工作。

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