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首页> 外文期刊>Plant Physiology and Biochemistry >Effects of nitrogen combined with zinc application on glutamate, glutamine, aspartate and asparagine accumulation in two winter wheat cultivars
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Effects of nitrogen combined with zinc application on glutamate, glutamine, aspartate and asparagine accumulation in two winter wheat cultivars

机译:氮素施用与锌应用对两个冬小麦品种谷氨酸,谷氨酰胺,天冬氨酸和天冬酰胺积累的影响

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Zinc (Zn) deficiency remarkably depresses the protein concentration in the grain of winter wheat. Cultivar 'Pingan 8' showed lower Zn concentrations in the grain than did cultivar 'Yangao 006' after nitrogen (N) combined with Zn application. However, little is known about how amino acids are influenced by Zn combined with N application or about the differences in amino acid accumulation between the two winter wheat cultivars. A pot experiment was conducted to characterize amino acid accumulation in the low Zn-accumulating cultivar 'Pingan 8' and the high Zn-accumulating cultivar 'Yangao 006' at various growth stages (seedling, jointing, grain filling and maturity) as influenced by N and Zn supply. The N (N-0.2) combined with Zn (Zn-10) application significantly increased grain yields and the concentrations of N, Zn and crude protein in the grain of both wheat cultivars. N combined with Zn application significantly increased the concentrations of glutamate (Glu) and asparagine (Asn) but decreased the concentrations of glutamine (Gln) and aspartate (Asp) in cultivar 'Yangao 006'; the N combined with Zn application decreased the concentrations of Glu and Gln but increased the concentrations of Asp and Asn in cultivar 'Pingan 8' at the jointing, grain filling and mature stages. Correlation analysis results showed that there were significant relationships between grain yields, spike number, grain number and Zn, N, crude protein, Glu, Gln, Asp and Asn concentrations in the shoots and grain of winter wheat at different growth stages. These results demonstrate that N combined with Zn application enhanced protein synthesis by altering amino acid accumulation in both winter wheat cultivars. Cultivar 'Pingan 8' had lower Gln, Asp and Asn concentrations and higher Glu concentrations than did cultivar 'Yangao 006' after the N-0.05 treatment but had higher Glu, Gln, Asp, and Asn concentrations and lower Glu concentrations than did cultivar 'Yangao 006' after the N-0.2 treatment.
机译:锌(Zn)缺陷显着抑制了冬小麦粒中的蛋白质浓度。氮气(n)结合Zn应用后,栽培品种'平安8'显示谷物中的粒子浓度低于栽培品种“杨岛006”。然而,关于氨基酸的影响很少,Zn与N应用或两种冬小麦品种之间的氨基酸积累的差异有何影响。进行罐实验,以表征低Zn积累品种“平安8”中的氨基酸积累,并在各种生长阶段(幼苗,关节,籽粒灌装和成熟)下的高Zn积累品种“杨杉006”和Zn供应。 N(N-0.2)与Zn(Zn-10)的施加结合,谷物产量显着增加,谷物品种的粒度和N,Zn和粗蛋白的浓度显着增加。 n结合Zn应用显着增加了谷氨酸(Glu)和天冬酰胺(Asn)的浓度,但降低了谷氨酰胺(Gln)和天冬氨酸(Asp)的味道'yangao 006'的浓度; N组合Zn申请减少了Glu和Gln的浓度,但在连接,籽粒填充和成熟阶段的栽培品种“平坦8”中增加了ASP和ASN的浓度。相关性分析结果表明,在不同生长阶段,谷物产量,穗数,粒度,谷物数和Zn,N,粗蛋白,Glu,Gln,Asp和Asn浓度存在显着关系。这些结果表明,N通过改变冬小麦品种中的氨基酸积累来结合Zn应用增强的蛋白质合成。栽培品种的Gln,Asp和Asn浓度和较高的Glu浓度比品种的N-0.05治疗,但具有更高的Glu,Gln,Asp和Asn浓度和较低的Glu浓度而不是品种的浓度。 Yangao 006'在N-0.2治疗后。

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