Halpin C, Holt K, Chojecki J, Oliver D, Chabbert B, Monties B, Edwards K, Barakate A, Foxon G A
Zeneca Seeds, Jealott's Hill Research Station, Bracknell, Berks, UK.
Plant J. 1998 Jun;14(5):545-53. doi: 10.1046/j.1365-313x.1998.00153.x.
Brown-midrib (bm) mutants of maize have modified lignin of reddish-brown colour. Although four independent bm loci are known, only one of the mutant genes has been previously identified. We report here that maize bm1, one of the less characterised mutants, shows severely reduced CAD activity in lignified tissues, resulting in the production of a modified lignin. Both the total lignin content and the structure of the polymer are altered by the mutation. We further describe the isolation and characterisation of the maize CAD cDNA and mapping of the CAD gene. CAD maps very closely to the known location of bm1 and co-segregates with the bm1 locus in two independent recombinant inbred populations. These data strongly support the premise that maize bm1 directly affects expression of the CAD gene.
玉米的棕色中脉(bm)突变体具有红褐色的改性木质素。虽然已知有四个独立的bm位点,但之前仅鉴定出其中一个突变基因。我们在此报告,玉米bm1是特征较少的突变体之一,在木质化组织中CAD活性严重降低,导致产生改性木质素。突变改变了木质素的总含量和聚合物结构。我们进一步描述了玉米CAD cDNA的分离和特征以及CAD基因的定位。CAD的定位与bm1的已知位置非常接近,并且在两个独立的重组自交群体中与bm1位点共分离。这些数据有力地支持了玉米bm1直接影响CAD基因表达这一前提。