Andersen Jeppe R, Zein Imad, Wenzel Gerhard, Krützfeldt Birte, Eder Joachim, Ouzunova Milena, Lübberstedt Thomas
Danish Institute of Agricultural Sciences, Research Center Flakkebjerg, 4200, Slagelse, Denmark.
Theor Appl Genet. 2007 Jan;114(2):307-19. doi: 10.1007/s00122-006-0434-8. Epub 2006 Nov 23.
Forage quality of maize is influenced by both the content and structure of lignin in the cell wall. Phenylalanine Ammonia-Lyase (PAL) catalyzes the first step in lignin biosynthesis in plants; the deamination of L-phenylalanine to cinnamic acid. Successive enzymatic steps lead to the formation of three monolignols, constituting the complex structure of lignin. We have cloned and sequenced a PAL genomic sequence from 32 maize inbred lines currently employed in forage maize breeding programs in Europe. Low nucleotide diversity and excessive linkage disequilibrium (LD) was identified at this PAL locus, possibly reflecting selective constrains resulting from PAL being the first enzyme in the monolignol, and other, pathways. While the association analysis was affected by extended LD and population structure, several individual polymorphisms were associated with neutral detergent fiber (not considering population structure) and a single polymorphism was associated with in vitro digestibility of organic matter (considering population structure).
玉米的饲用品质受细胞壁中木质素的含量和结构影响。苯丙氨酸解氨酶(PAL)催化植物木质素生物合成的第一步,即将L-苯丙氨酸脱氨生成肉桂酸。后续的酶促步骤导致三种单木质醇的形成,构成了木质素的复杂结构。我们从目前欧洲饲用玉米育种项目中使用的32个玉米自交系中克隆并测序了一个PAL基因组序列。在该PAL基因座发现了低核苷酸多样性和过度的连锁不平衡(LD),这可能反映了由于PAL是单木质醇及其他途径中的首个酶而产生的选择性限制。虽然关联分析受到扩展LD和群体结构的影响,但几个个体多态性与中性洗涤纤维相关(不考虑群体结构),并且一个单态性与有机物的体外消化率相关(考虑群体结构)。