Shi Chun, Koch Gerald, Ouzunova Milena, Wenzel Gerhard, Zein Imad, Lübberstedt Thomas
Chair of Plant Breeding, Technical University of Munich, Am Hochanger 2, 85350 Freising, Germany.
Plant Mol Biol. 2006 Nov;62(4-5):697-714. doi: 10.1007/s11103-006-9049-3. Epub 2006 Oct 3.
The molecular mechanisms underlying cell wall digestibility in maize (Zea mays L.) have been studied in three sets of maize brown-midrib isogenic lines in the genetic background of inbreds 1332 (1332 and 1332 bm3), 5361 (5361 and 5361 bm3), and F2 (F2, F2 bm1, F2 bm2, and F2 bm3). Two complementary approaches, SSH (suppression subtractive hybridization) and microarray-based expression profiling, were used to isolate and identify candidate genes in isogenic lines for bm mutants. Metabolic pathway analysis revealed that transcriptional events caused by altering the expression of a single bm gene involve all metabolic and signaling pathways. 53 ESTs were differentially expressed in all three isogenic bm3 comparisons, whereas 32 ESTs were consistently differentially expressed in different bm isogenic lines in F2 background. About 70% ESTs isolated by SSH were not present on the unigene microarray, demonstrating the usefulness of the SSH procedure to identify genes related to cell wall digestibility. Together with lignin analysis by cellular UV-microspectrophotometry, expression profiling in isogenic bm lines proved to be useful to understand alterations at the sub-cellular and molecular level with respect to lignin composition. The down-regulation of COMT affected the expression of CCoAOMT genes and caused a reduced content both of G and S units in bm3 mutants.
在自交系1332(1332和1332 bm3)、5361(5361和5361 bm3)以及F2(F2、F2 bm1、F2 bm2和F2 bm3)的遗传背景下,对三组玉米棕色中脉同基因系中玉米(Zea mays L.)细胞壁消化率的分子机制进行了研究。采用两种互补方法,即抑制性消减杂交(SSH)和基于微阵列的表达谱分析,来分离和鉴定bm突变体同基因系中的候选基因。代谢途径分析表明,由单个bm基因表达改变引起的转录事件涉及所有代谢和信号通路。在所有三个同基因bm3比较中,有53个ESTs差异表达,而在F2背景下的不同bm同基因系中,有32个ESTs持续差异表达。通过SSH分离的ESTs中约70%在单基因微阵列上不存在,这证明了SSH程序在鉴定与细胞壁消化率相关基因方面的有用性。结合细胞紫外显微分光光度法对木质素的分析,同基因bm系中的表达谱分析被证明有助于在亚细胞和分子水平上理解木质素组成的变化。COMT的下调影响了CCoAOMT基因的表达,并导致bm3突变体中G和S单元的含量均降低。