Malatrasi M, Corradi M, Svensson J T, Close T J, Gulli M, Marmiroli N
Dipartimento di Scienze Ambientali, Sez. Genetica e Biotecnologie Ambientali, Università di Parma, Viale G.P. Usberti 11a, 43100 Parma, Italy.
Theor Appl Genet. 2006 Oct;113(6):965-76. doi: 10.1007/s00122-006-0339-6. Epub 2006 Aug 24.
Differential display was used to isolate cDNA clones showing differential expression in response to ABA, drought and cold in barley seedling shoots. One drought-regulated cDNA clone (DD12) was further analyzed and found to encode a branched-chain amino acid aminotransferase (HvBCAT-1). A genomic clone was isolated by probing the Morex BAC library with the cDNA clone DD12 and the structure of Hvbcat-1 was elucidated. The coding region is interrupted by six introns and contains a predicted mitochondrial transit peptide. Hvbcat1 was mapped to chromosome 4H. A comparison was made to rice and Arabidopsis genes to identify conserved structural patterns. Complementation of a yeast (Saccharomyces cerevisiae) double knockout strain revealed that HvBCAT-1 can function as the mitochondrial (catabolic) BCATs in vivo. Transcript levels of Hvbcat-1, increased in response to drought stress. As the first enzyme in the branched-chain amino acid (BCAA) catabolic pathway, HvBCAT-1 might have a role in the degradation of BCAA. Degradation of BCAA could serve as a detoxification mechanism that maintains the pool of free branched-chain amino acids at low and non toxic levels, under drought stress conditions.
采用差异显示技术分离在大麦幼苗地上部分对脱落酸、干旱和低温产生差异表达的cDNA克隆。对一个干旱调节的cDNA克隆(DD12)进行了进一步分析,发现其编码一种支链氨基酸转氨酶(HvBCAT-1)。用cDNA克隆DD12筛选Morex BAC文库,分离出一个基因组克隆,并阐明了HvBCAT-1的结构。编码区被6个内含子打断,并含有一个预测的线粒体转运肽。HvBCAT1被定位到4H染色体上。与水稻和拟南芥基因进行比较以确定保守的结构模式。对酵母(酿酒酵母)双敲除菌株的互补实验表明,HvBCAT-1在体内可作为线粒体(分解代谢)支链氨基酸转氨酶发挥作用。HvBCAT-1的转录水平在干旱胁迫下升高。作为支链氨基酸(BCAA)分解代谢途径中的第一个酶,HvBCAT-1可能在BCAA的降解中起作用。在干旱胁迫条件下,BCAA的降解可能作为一种解毒机制,将游离支链氨基酸池维持在低水平和无毒水平。