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Comparative Transcriptomic Profiling of a Salt-Tolerant Wild Tomato Species and a Salt-Sensitive Tomato Cultivar

机译:耐盐野生番茄品种和盐敏感番茄品种的转录组比较分析。

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Wild halophytic tomato has long been considered as an ideal gene donor for improving salt tolerance in tomato cultivars. Extensive research has been focused on physiological and quantitative trait locus (QTL) characterization of wild tomato species in comparison with cultivated tomato. However, the global gene expression modification of wild tomato in response to salt stress is not well known. A wild tomato genotype, Solanum pimpinellifolium ‘PI365967’ is significantly more salt tolerant than the cultivar, Solanum lycopersicum ‘Moneymaker’, as evidenced by its higher survival rate and lower growth inhibition at the vegetative stage. The Affymetrix Tomato Genome Array containing 9,200 probe sets was used to compare the transcriptome of PI365967 and Moneymaker. After treatment with 200 mM NaCl for 5 h, PI365967 showed relatively fewer responsive genes compared with Moneymaker. The salt overly sensitive (SOS) pathway was found to be more active in PI365967 than in Moneymaker, coinciding with relatively less accumulation of Na+ in shoots of PI365967. A gene encoding salicylic acid-binding protein 2 (SABP2) was induced by salinity only in PI365967, suggesting a possible role for salicylic acid signaling in the salt response of PI365967. The fact that two genes encoding lactoylglutathione lyase were salt inducible only in PI365967, together with much higher basal expression of several glutathione S-transferase genes, suggested a more effective detoxification system in PI365967. The specific down-regulation in PI365967 of a putative high-affinity nitrate transporter, known as a repressor of lateral root initiation, may explain the better root growth of this genotype during salt stress.
机译:长期以来,野生盐生番茄一直被认为是提高番茄品种耐盐性的理想基因供体。与栽培番茄相比,广泛的研究集中在野生番茄物种的生理和数量性状基因座(QTL)表征上。然而,野生番茄响应盐胁迫的全球基因表达修饰尚不清楚。野生番茄基因型Pinpinellifolium'PI365967'比品种Solanum lycopersicum'Moneymaker'具有更高的耐盐性,其较高的成活率和对营养期的低生长抑制证明了这一点。包含9,200个探针组的Affymetrix番茄基因组阵列用于比较PI365967和Moneymaker的转录组。与Moneymaker相比,用200 mM NaCl处理5小时后,PI365967显示出相对较少的响应基因。发现盐过敏感(SOS)途径在PI365967中比在Moneymaker中更活跃,这与PI365967芽中Na + 的积累相对较少有关。仅在PI365967中,盐度诱导了编码水杨酸结合蛋白2(SABP2)的基因,表明水杨酸信号在PI365967的盐反应中可能发挥作用。仅在PI365967中编码乳酰谷胱甘肽裂解酶的两个基因是盐诱导的,再加上几个谷胱甘肽S-转移酶基因的基础表达高得多,这表明PI365967中的排毒系统更为有效。假定的高亲和力硝酸盐转运蛋白在PI365967中的特定下调被称为侧根启动的阻遏物,这可能解释了该基因型在盐胁迫期间更好的根生长。

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