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评价水分胁迫条件下番茄植株中与植株产量相关的 Solanum pennellii Cor. 的解剖学和生理学特性。

Evaluation of anatomical and physiological traits of Solanum pennellii Cor. associated with plant yield in tomato plants under water-limited conditions.

机构信息

Departamento de Agronomia. Programa de Pós-graduação em Fitotecnia, Universidade Federal de Viçosa, Av. P.H. Rolfs, s/n, Campus Universitário, Viçosa, MG, 36570-900, Brazil.

Departamento de Biologia Vegetal. Programa de Pós-graduação em Fitotecnia, Universidade Federal de Viçosa, Av. P.H. Rolfs, s/n, Campus Universitário, Viçosa, MG, 36570-900, Brazil.

出版信息

Sci Rep. 2020 Sep 29;10(1):16052. doi: 10.1038/s41598-020-73004-4.

Abstract

Although intensively studied, few works had looked into S. pennellii's ability to cope with water-deficit conditions from a breeding point of view. In this study, we assessed potential traits of S. pennellii, that had previously been linked to high yields in other plant species, under long-term water-limited conditions and made a parallel with plant yield. For this purpose, the drought-resistant tomato genotypes IL 3-5 and IL 10-1, and the drought-sensitive IL 2-5 and IL 7-1 at seed level, together with both parents the S. pennellii accession LA 716 and the cultivar M82 were kept at 50 and 100% ASW throughout the growing season. Our findings confirm the superiority of LA 716 under water-limited conditions compared to the other S. lycopersicum genotypes in terms of plant water status maintenance. Percentual reduction on plant yield was higher in IL 3-5 and IL 10-1 than in M82 plants, indicating no correlation between drought resistance on germination and plant productive stages. A strong positive correlation was found between fruit yield and A, g, and Ψ at 50% ASW, suggesting these traits as important selection criteria. LT and g, LA 716's most promising traits, did not show a linear correlation with fruit yield under low water regimes. This study unravels traits behind tomato performance under water-limited conditions and should work as guidance for breeders aiming at developing drought-resistant tomato cultivars.

摘要

尽管已经进行了深入研究,但很少有研究从繁殖的角度研究 S. pennellii 应对缺水条件的能力。在这项研究中,我们评估了 S. pennellii 的潜在特性,这些特性先前与其他植物物种的高产量有关,在长期缺水条件下,并与植物产量进行了平行比较。为此,在种子水平上评估了抗旱番茄基因型 IL 3-5 和 IL 10-1 以及抗旱性较弱的 IL 2-5 和 IL 7-1,同时还评估了 S. pennellii 接入 LA 716 和栽培品种 M82 的这两个亲本,整个生长季节都保持在 50%和 100% ASW。我们的研究结果证实,在缺水条件下,与其他 S. lycopersicum 基因型相比,LA 716 在植物水分状况维持方面具有优势。在 IL 3-5 和 IL 10-1 中的植物产量减少百分比高于 M82 植物,这表明在发芽和植物生产阶段的抗旱性之间没有相关性。在 50% ASW 下,发现果实产量与 A、g 和 Ψ之间存在很强的正相关,表明这些特性是重要的选择标准。LA 716 最有前途的特性 LT 和 g 与低水条件下的果实产量没有线性相关性。这项研究揭示了番茄在缺水条件下的表现背后的特性,应该为旨在开发抗旱番茄品种的种植者提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f296/7524713/f9d5dd620716/41598_2020_73004_Fig1_HTML.jpg

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