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首页> 外文期刊>Plant Physiology and Biochemistry >5-aminolevulinic acid improves salt tolerance mediated by regulation of tetrapyrrole and proline metabolism in Brassica napus L. seedlings under NaCl stress
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5-aminolevulinic acid improves salt tolerance mediated by regulation of tetrapyrrole and proline metabolism in Brassica napus L. seedlings under NaCl stress

机译:5-氨基纤维素酸改善了通过在NaCl胁迫下的芸苔NAPUS L.幼苗的四吡咯和脯氨酸代谢介导的耐盐性

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摘要

5-aminolevulinic acid (ALA), a key biosynthetic precursor of tetrapyrroles, is vital for plant growth and adaptation to stress environments. Although exogenous ALA could enhance photosynthesis and biomass accumulation in plants under stress conditions, the underlying physiological and molecular mechanisms governed by ALA in promoting salt tolerance in Brassica napus L. are not yet clearly understood. In the present study, exogenous ALA with the concentration of 30 mg L-1 was applied to the leaves of B. napus seedlings subjected to 200 mM NaCl. The results showed that NaCl stress decreased the photosynthesis, biomass accumulation, and levels of chlorophyll and heme with the reduction of the concentrations of intermediates including ALA, protoporphyrin IX (Proto IX), Mg-Proto IX, and Pchlide in the tetrapyrrole (chlorophyll and heme) biosynthetic pathway. The transcript levels of genes encoding ALA-associated enzymes and genes encoding Mg-chelatase in the chlorophyll biosynthetic branch were down-regulated, while the expression levels of genes encoding Fe-chelatase in the heme branch were not significantly altered by NaCl stress. Foliar application with ALA enhanced the above-ground biomass, net photosynthetic rate, activities of antioxidant enzymes, accumulation of chlorophyll and heme, and concentrations of intermediates related to chlorophyll and heme biosynthesis in B. napus under 200 mM NaCl. The expression of most genes mentioned above remained constant in ALA-treated plants in comparison with non-ALA-treated plants under NaCl stress. Additionally, exogenous ALA synchronously induced the proline concentration and up-regulated the expression of genes P5CS and ProDH encoding proline metabolic enzymes in the NaCl treatment. These findings suggested that ALA improved salt tolerance through promoting the accumulation of chlorophyll and heme resulting from the increase of intermediate levels in the tetrapyrrole biosynthetic pathway, along with enhancing the proline ac
机译:5-氨基纤维素酸(ALA)是四吡咯的关键生物合成前体,对植物生长和对应力环境的适应至关重要。虽然外源ALA可以在压力条件下提高植物中的光合作用和生物量积累,但ALA促进芸苔NAPUS L.促进盐耐药的潜在的生理和分子机制尚未清楚地理解。在本研究中,将浓度为30mg L-1的外源ALA施用于B的B. Napus幼苗的叶片对200mM NaCl进行。结果表明,NaCl应力降低了叶绿素和血红素的光合作用,生物质积累和水平,随着四吡咯(叶绿素和叶绿素和叶绿素和氯化物血红素)生物合成途径。下调编码Ala相关酶的基因的转录物水平和编码叶绿素生物合成分支中的Mg-Chelatase的基因,而NaCl应激不会显着改变编码血红素分支中Fe-Chelatase的基因的表达水平。叶面申请ALA增强了上述生物质,净光合速率,抗氧化酶的活性,叶绿素和血红素的积累,以及与叶绿素和血红素生物合成的中间体的浓度为200mM NaCl。与NaCl应力下的非ALA处理的植物相比,在ALA处理的植物中,上述大多数基因的表达仍然是恒定的。另外,外源ALA同步诱导脯氨酸浓度和上调在NaCl处理中编码脯氨酸代谢酶的基因P5Cs和PROP的表达。这些发现表明,ALA通过促进叶绿素生物合成途径中中间水平的增加而促进叶绿素和血红素的累积,以及增强脯氨酸AC

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