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Analysis of Genetic Variation and Enhancement of Salt Tolerance in French Pea (Pisum Sativum L.)

机译:法式豌豆(Pisum Sativum L.)的遗传变异和耐盐性增强分析

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摘要

Pisum sativum L. (field pea) is a crop of a high nutritional value and seed oil content. The characterization of pea germplasm is important to improve yield and quality. This study aimed at using fatty acid profiling and amplified fragment length polymorphism (AFLP) markers to evaluate the variation and relationships of 25 accessions of French pea. It also aimed to conduct a marker-trait associations analysis using the crude oil content as the target trait for this analysis, and to investigate whether 5-aminolevulinic acid (ALA) could enhance salt tolerance in the pea germplasm. The percentage of crude oil of the 25 pea genotypes varied from 2.6 to 3.5%, with a mean of 3.04%. Major fatty acids in all of the accessions were linoleic acid. Moreover, the 12 AFLP markers used were polymorphic. The cluster analysis based on fatty acids data or AFLP data divided the 25 pea germplasm into two main clusters. The gene diversity of the AFLP markers varied from 0.21 to 0.58, with a mean of 0.41. Polymorphic information content (PIC) of pea germplasm varied from 0.184 to 0.416 with a mean of 0.321, and their expected heterozygosity (He) varied from 0.212 to 0.477 with a mean of 0.362. The AFLP results revealed that the Nain Ordinaire cultivar has the highest level of genetic variability, whereas Elatius 3 has the lowest level. Three AFLP markers (E-AAC/M-CAA, E-AAC/M-CAC, and E-ACA/M-CAG) were significantly associated with the crude oil content trait. The response of the Nain Ordinaire and Elatius 3 cultivars to high salinity stress was studied. High salinity (150 mM NaCl) slightly reduced the photosynthetic pigments contents in Nain Ordinaire leaves at a non-significant level, however, the pigments contents in the Elatius 3 leaves were significantly reduced by high salinity. Antioxidant enzymes (APX—ascorbate peroxidase; CAT—catalase; and POD—peroxidase) activities were significantly induced in the Nain Ordinaire cultivar, but non-significantly induced in Elatius 3 by high salinity. Priming the salt-stressed Nain Ordinaire and Elatius 3 plants with ALA significantly enhanced the pigments biosynthesis, antioxidant enzymes activities, and stress-related genes expression, as compared to the plants stressed with salt alone. In conclusion, this study is amongst the first investigations that conducted marker-trait associations in pea, and revealed a sort of correlation between the diversity level and salt tolerance.
机译:豌豆(Pisum sativum L.)是一种营养价值高且种子油含量高的作物。豌豆种质的鉴定对于提高产量和品质非常重要。这项研究旨在使用脂肪酸分析和扩增的片段长度多态性(AFLP)标记来评估25种法国豌豆的变异和相关性。它还旨在使用原油含量作为目标性状进行标记-性状关联分析,并研究5-氨基乙酰丙酸(ALA)是否可以增强豌豆种质的耐盐性。 25种豌豆基因型的原油百分比从2.6%到3.5%不等,平均值为3.04%。所有添加物中的主要脂肪酸为亚油酸。此外,使用的12种AFLP标记是多态的。基于脂肪酸数据或AFLP数据的聚类分析将25个豌豆种质分为两个主要聚类。 AFLP标记的基因多样性从0.21到0.58不等,平均值为0.41。豌豆种质的多态信息含量(PIC)在0.184至0.416之间,平均值为0.321,预期杂合度(He)在0.212至0.477之间,平均值为0.362。 AFLP结果表明,Nain Ordinaire品种的遗传变异水平最高,而Elatius 3的遗传变异水平最低。三种AFLP标记(E-AAC / M-CAA,E-AAC / M-CAC和E-ACA / M-CAG)与原油含量性状显着相关。研究了Nain Ordinaire和Elatius 3个品种对高盐分胁迫的响应。高盐度(150 mM NaCl)略微降低了Nain Ordinaire叶片中光合色素的含量,但不显着,但是,高盐度显着降低了Elatius 3叶片中的色素含量。 Nain Ordinaire品种显着诱导了抗氧化酶(APX-抗坏血酸过氧化物酶; CAT-过氧化氢酶和POD-过氧化物酶)活性,但高盐度在Elatius 3中无明显诱导作用。与仅用盐胁迫的植物相比,用ALA引发盐胁迫的Nain Ordinaire和Elatius 3植物显着增强了色素的生物合成,抗氧化酶活性以及与胁迫相关的基因表达。总之,该研究是在豌豆中进行标记-性状关联的首批研究之一,揭示了多样性水平与耐盐性之间的某种相关性。

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