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首页> 外文期刊>Egyptian Journal of Agronomy >Effect of Drought and Salt Stress on Growth, Osmolytes Protein and Isozymes in Vicia faba L. Genotypes
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Effect of Drought and Salt Stress on Growth, Osmolytes Protein and Isozymes in Vicia faba L. Genotypes

机译:干旱和盐胁迫对蚕豆基因型生长,渗透酶蛋白和同工酶的影响

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摘要

PLANTS regularly face adverse growth conditions, such as drought and salinity. These stresses can delay growth and development, reduce productivity, and, in extreme cases, cause plant death. Plant stress responses are dynamic and involve complex crosstalk between different regulatory levels, including adjustment of metabolism and gene expression for physiological and morphological adaptation. In this concern, two pot experiments in split plot design were conducted to investigate the response of fivedivergent faba bean genotypes namely (NBL- Mar.3(Gl), NBL-5(G2), L3(G3), Nubariya-1(G4) and Misr-1(G5)) against drought or salt stress. Expose the faba bean genotypes (1, 2, 3, 4 and 5) to water and salt stress leads to significant decrease in fresh anddry weight, total protein and NPK%. Tolerant genotypes (Gl and G2) have high protein content than sensitive genotypes (G4 and G5). Drought and salt stress induced an accumulation of total phenolic compound and total free amino acids. Aliphatic unsubstituted amino acids and cyclic amino acids increased under drought and salt stress in all genotypes. This was accompanied by a marked increase in the proline content. Aliphatic substituted amino acids decreased in tolerant genotypes and increased in sensitive genotypes under drought and salt stress. The biochemical response diversity in susceptible and tolerant faba bean varieties is discussed.
机译:植物经常面临不利的生长条件,例如干旱和盐碱化。这些压力会延迟生长和发育,降低生产力,在极端情况下会导致植物死亡。植物胁迫反应是动态的,并且涉及不同调节水平之间的复杂串扰,包括为了生理和形态适应而调节代谢和基因表达。考虑到这一点,我们进行了两个盆栽试验,在分割地块设计中研究了五种不同的蚕豆基因型(NBL- Mar.3(Gl),NBL-5(G2),L3(G3),Nubariya-1(G4) )和Misr-1(G5))来抵抗干旱或盐胁迫。将蚕豆基因型(1、2、3、4和5)暴露于水和盐胁迫下会导致鲜重和干重,总蛋白质和NPK%的显着降低。耐受基因型(G1和G2)比敏感基因型(G4和G5)具有较高的蛋白质含量。干旱和盐胁迫引起总酚类化合物和总游离氨基酸的积累。在所有基因型下,干旱和盐胁迫下脂肪族未取代氨基酸和环状氨基酸均增加。这伴随着脯氨酸含量的显着增加。在干旱和盐胁迫下,脂族取代氨基酸的耐性基因型下降,而敏感基因型增加。讨论了敏感和耐性蚕豆品种的生化响应多样性。

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