Kharrazi M A S, Bobojonov V
Department of Genetics, Agriculture University of Tajikistan, Dushanbe, Tajikistan.
Genet Mol Res. 2012 Aug 16;11(3):2578-84. doi: 10.4238/2012.July.19.1.
Grain softness protein (GSP) is an important protein for overcoming milling and grain defenses in the innate immunity systems of cereals. The objective of this study was to evaluate and understand GSP sequences in selected wheat, rye and triticale. Using sequences for this gene from a sequence database, we performed clustering analysis to compare the sequences obtained from 3 germplasms with other studied sequences for GSP. The maximum difference between the Hirmand GSP genotype in wheat and the database sequences was 23% in EF109396 and EF109399. Most amino acid variation between the GSP sequences involved the same amino acids. The Nikita rye GSP gene showed 64% identity with DQ269918 and AY667063. The isoelectric point in the GSP of wheat and Lasko triticale was significantly higher than that of rye GSP. In addition, parameters such as optical density, grand average of hydrophobicity, percentage of hydrophobicity and hydrophilic amino acids, and number of alpha helices and beta sheets in GSP were similar in wheat and triticale but not in wheat and rye.
籽粒软质蛋白(GSP)是谷物先天免疫系统中克服碾磨和谷物防御的一种重要蛋白质。本研究的目的是评估和了解选定小麦、黑麦和小黑麦中的GSP序列。利用序列数据库中该基因的序列,我们进行了聚类分析,以比较从3个种质中获得的序列与其他已研究的GSP序列。小麦中Hirmand GSP基因型与数据库序列之间的最大差异在EF109396和EF109399中为23%。GSP序列之间的大多数氨基酸变异涉及相同的氨基酸。尼基塔黑麦GSP基因与DQ269918和AY667063显示出64%的同一性。小麦和拉斯科小黑麦GSP中的等电点显著高于黑麦GSP。此外,GSP中的光密度、疏水总平均值、疏水和亲水氨基酸百分比以及α螺旋和β折叠数量等参数在小麦和小黑麦中相似,但在小麦和黑麦中不同。