首页> 外文期刊>Journal of Experimental Botany >Salicylic acid deficiency in NahG transgenic lines and sid2 mutants increases seed yield in the annual plant Arabidopsis thaliana.
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Salicylic acid deficiency in NahG transgenic lines and sid2 mutants increases seed yield in the annual plant Arabidopsis thaliana.

机译:NahG转基因品系和sid2突变体中水杨酸的缺乏增加了一年生植物拟南芥的种子产量。

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Salicylic acid-deficient NahG transgenic lines and sid2 mutants were used to evaluate the role of this compound in the development of the short-lived, annual plant Arabidopsis thaliana, with a particular focus on the interplay between salicylic acid and other phytohormones. Low salicylic acid levels led to increased growth, as well as to smaller abscisic acid levels and reduced damage to PSII (as indicated by Fv/Fm ratios) during the reproductive stages in rosette leaves of NahG transgenic lines and sid2 mutants, compared with wild-type plants. Furthermore, salicylic acid deficiency highly influenced seed yield and composition. Seed production increased by 4.4-fold and 3.5-fold in NahG transgenic lines and sid2 mutants, respectively, compared to the wild type. Salicylic acid deficiency also improved seed composition in terms of antioxidant vitamin concentrations, seeds of salicylic acid-deficient plants showing higher levels of l- and d-tocopherol (vitamin E) and o-carotene (pro-vitamin A) than seeds of wild-type plants. Seeds of salicylic acid-deficient plants also showed higher nitrogen concentrations than seeds of wild-type plants. It is concluded that (i) the sid2 gene, which encodes for isochorismate synthase, plays a central role in salicylic acid biosynthesis during plant development in A. thaliana, (ii) salicylic acid plays a role in the regulation of growth, senescence, and seed production, (iii) there is a cross-talk between salicylic acid and other phytohormones during plant development, and (iv) the concentrations of antioxidant vitamins in seeds may be influenced by the endogenous levels of salicylic acid in plants.
机译:水杨酸缺陷型NahG转基因品系和sid2突变体用于评估该化合物在短命的一年生拟南芥中的作用,特别关注水杨酸与其他植物激素之间的相互作用。与野生型相比,在NahG转基因品系和sid2突变体的莲座叶繁殖期,低水杨酸水平导致生长加快,脱落酸水平降低,对PSII的损害减少(如Fv / Fm比所示)。类型植物。此外,水杨酸缺乏严重影响种子的产量和组成。与野生型相比,在NahG转基因品系和sid2突变体中,种子产量分别增加了4.4倍和3.5倍。水杨酸缺乏症还改善了抗氧化剂维生素浓度,改善了种子组成,水杨酸缺乏症植物的种子中,左-和d-生育酚(维生素E)和邻胡萝卜素(维生素原A)的含量高于野生种子。类型植物。缺乏水杨酸的植物种子也显示出比野生型植物种子更高的氮浓度。结论是:(i)编码等渗硫酸合酶的sid2基因在拟南芥植物发育过程中的水杨酸生物合成中起着核心作用,(ii)水杨酸在调节生长,衰老和种子生产;(iii)植物发育过程中水杨酸与其他植物激素之间存在串扰;(iv)种子中抗氧化剂维生素的浓度可能受植物中水杨酸内源性水平的影响。

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