McAlvin Crystal B, Stacey Gary
Department of Microbiology, University of Tennessee, Knoxville, Tennessee 37996, USA.
Plant Physiol. 2005 Apr;137(4):1456-62. doi: 10.1104/pp.104.055939. Epub 2005 Mar 25.
The soybean apyrase, GS52, was previously characterized as an early nodulin that is expressed in roots and localized to the plasma membrane. Transgenic Lotus japonicus plants were constructed constitutively expressing the GS52 apyrase. Segregation and Southern-blot analysis identified four single-copy sense lines, several double-copy sense lines, and one double-copy antisense line for further analysis. The single- and double-copy sense gs52 L. japonicus lines had enhanced nodulation that correlated with expression of the transgene. The sense transgenic lines were also found to have increased infection thread formation and enhanced infection zone length when infected by Mesorhizobium loti, the natural symbiont of L. japonicus. The data presented show that expression of the GS52 apyrase can enhance nodulation in L. japonicus and points to an important role for this group of enzymes in nodulation.
大豆双磷酸酶GS52,先前被鉴定为一种早期结瘤素,在根中表达并定位于质膜。构建了组成型表达GS52双磷酸酶的转基因百脉根植株。分离和Southern杂交分析鉴定出四个单拷贝正义株系、几个双拷贝正义株系和一个双拷贝反义株系用于进一步分析。单拷贝和双拷贝正义gs52百脉根株系的结瘤增强,这与转基因的表达相关。当被百脉根的天然共生菌苜蓿中华根瘤菌感染时,还发现正义转基因株系的侵染线形成增加,侵染区长度增加。所呈现的数据表明,GS52双磷酸酶的表达可增强百脉根的结瘤,并表明这组酶在结瘤中起重要作用。