Umeå Plant Science Centre, Department of Plant Physiology, Umeå University, 90187, Umeå, Sweden.
Department of Forest Genetics and Plant Physiology, Umeå Plant Science Centre, Swedish University of Agricultural Sciences, 90183, Umeå, Sweden.
New Phytol. 2024 Sep;243(6):2157-2174. doi: 10.1111/nph.19993. Epub 2024 Jul 28.
The genetic control underlying natural variation in lignin content and composition in trees is not fully understood. We performed a systems genetic analysis to uncover the genetic regulation of lignin biosynthesis in a natural 'SwAsp' population of aspen (Populus tremula) trees. We analyzed gene expression by RNA sequencing (RNA-seq) in differentiating xylem tissues, and lignin content and composition using Pyrolysis-GC-MS in mature wood of 268 trees from 99 genotypes. Abundant variation was observed for lignin content and composition, and genome-wide association study identified proteins in the pentose phosphate pathway and arabinogalactan protein glycosylation among the top-ranked genes that are associated with these traits. Variation in gene expression and the associated genetic polymorphism was revealed through the identification of 312 705 local and 292 003 distant expression quantitative trait loci (eQTL). A co-expression network analysis suggested modularization of lignin biosynthesis and novel functions for the lignin-biosynthetic CINNAMYL ALCOHOL DEHYDROGENASE 2 and CAFFEOYL-CoA O-METHYLTRANSFERASE 3. PHENYLALANINE AMMONIA LYASE 3 was co-expressed with HOMEOBOX PROTEIN 5 (HB5), and the role of HB5 in stimulating lignification was demonstrated in transgenic trees. The systems genetic approach allowed linking natural variation in lignin biosynthesis to trees´ responses to external cues such as mechanical stimulus and nutrient availability.
树木中木质素含量和组成的自然变异的遗传控制尚不完全清楚。我们进行了系统遗传学分析,以揭示白杨(Populus tremula)天然“SwAsp”群体中木质素生物合成的遗传调控。我们通过 RNA 测序(RNA-seq)分析了分化木质部组织中的基因表达,并通过热解气相色谱-质谱法(Pyrolysis-GC-MS)分析了成熟木材中的木质素含量和组成。在 99 个基因型的 268 棵树的成熟木材中,观察到木质素含量和组成存在丰富的变异,全基因组关联研究确定了戊糖磷酸途径和阿拉伯半乳聚糖蛋白糖基化中的蛋白质是与这些性状相关的排名最高的基因之一。通过鉴定 312705 个局部和 292003 个远距离表达数量性状基因座(eQTL),揭示了基因表达和相关遗传多态性的变异。共表达网络分析表明木质素生物合成的模块化和木质素生物合成的肉桂醇脱氢酶 2 和咖啡酰辅酶 A O-甲基转移酶 3 的新功能。苯丙氨酸氨裂解酶 3与同源框蛋白 5(HB5)共表达,并且在转基因树木中证明了 HB5 刺激木质化的作用。系统遗传学方法可以将木质素生物合成的自然变异与树木对外界刺激(如机械刺激和养分供应)的反应联系起来。