首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Identification and characterization of four distinct asparagine synthetase (AsnS) genes in maize (Zea mays L.)
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Identification and characterization of four distinct asparagine synthetase (AsnS) genes in maize (Zea mays L.)

机译:玉米(Zea mays L.)中四个不同的天冬酰胺合成酶(AsnS)基因的鉴定和表征

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Four distinct full-length cDNA clones encoding asparagine synthetase (AS; EC 6.3.5.4) were isolated from maize (Zea mays). Detailed analysis of two these genes suggested the previously published maize AsnS gene (gi 984262) is possibly a chimera. In silico analysis identified additional members of this new monocot-specific class in rice genomic DNA and sorghum EST collections. The presence of these new AsnS genes suggests maize has a representative from each of the major classes (class I, class II, and class III). TaqManp expression analysis indicates Zm-AsnS1 and Zm-AsnS4 are ubiquitously expressed in the tissue panel tested, Zm-AsnS3 is largely restricted to root and root crown tissues and Zm-AsnS2 is largely absent from above-ground green tissue. Expression of all four distinct AsnS genes in maize root tissues raises the possibility that earlier studies on the enzymology of AsnS in maize root tips reported results obtained from a pool of different AsnS activities in the root.
机译:从玉米(Zea mays)中分离出四个不同的全长编码天冬酰胺合成酶的全长cDNA克隆(AS; EC 6.3.5.4)。对这两个基因的详细分析表明,先前发表的玉米AsnS基因(gi 984262)可能是嵌合体。通过计算机分析,在水稻基因组DNA和高粱EST收集物中鉴定出了这种新的单子叶植物特定类的其他成员。这些新的AsnS基因的存在表明玉米在每个主要类别(I类,II类和III类)中都有一个代表。 TaqManp表达分析表明,Zm-AsnS1和Zm-AsnS4在测试的组织面板中普遍表达,Zm-AsnS3主要限于根冠组织和根冠组织,而地面上的绿色组织则基本上不存在Zm-AsnS2。玉米根组织中所有四个不同的AsnS基因的表达增加了这样的可能性,即玉米根尖中AsnS酶学的早期研究报告了从根中不同AsnS活性库中获得的结果。

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