Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, Nara, Japan.
Department of Botany, University of British Columbia, Vancouver, BC, Canada.
Plant Cell. 2018 Nov;30(11):2663-2676. doi: 10.1105/tpc.18.00292. Epub 2018 Oct 18.
The secondary cell wall (SCW) of xylem vessel cells provides rigidity and strength that enables efficient water conduction throughout the plant. To gain insight into SCW deposition, we mutagenized VASCULAR-RELATED NAC-DOMAIN7-inducible plant lines, in which ectopic protoxylem vessel cell differentiation is synchronously induced. The mutant was isolated based on the absence of helical SCW patterns in ectopically-induced protoxylem vessel cells, and mature baculites plants exhibited an () mutant phenotype in mature plants. A single nucleic acid substitution in the () gene in was identified: while the mutation was predicted to produce a C-terminal truncated protein, immunoblot analysis revealed that mutation results in loss of production of CESA7 proteins, indicating that is a novel loss-of-function mutant. In , despite a lack of patterned cellulose deposition, the helically-patterned deposition of other SCW components, such as the hemicellulose xylan and the phenolic polymer lignin, was not affected. Similar phenotypes were found in another point mutation mutant , and an established knock-out mutant, Taken together, we propose that the spatio-temporal deposition of different SCW components, such as xylan and lignin, is not dependent on cellulose patterning.
木质部导管细胞的次生细胞壁 (SCW) 提供了刚性和强度,使植物能够有效地进行水分传导。为了深入了解次生细胞壁的沉积,我们对 VASCULAR-RELATED NAC-DOMAIN7 诱导型植物系进行了诱变,在这些植物系中,异位原木质部导管细胞分化被同步诱导。根据异位诱导的原木质部导管细胞中缺乏螺旋状次生细胞壁模式,分离出了突变体,成熟的 baculites 植物在成熟植物中表现出 () 突变体表型。在 () 基因中发现了一个单一的核酸取代:虽然该突变被预测会产生 C 端截断的蛋白质,但免疫印迹分析显示,突变导致 CESA7 蛋白的产生缺失,表明 是一种新的功能丧失突变体。在 () 中,尽管缺乏有图案的纤维素沉积,但其他次生细胞壁成分(如半纤维素木聚糖和酚类聚合物木质素)的螺旋图案沉积不受影响。在另一个点突变突变体 () 中也发现了类似的表型,以及一个已建立的敲除突变体 ()。综上所述,我们提出,不同次生细胞壁成分(如木聚糖和木质素)的时空沉积不依赖于纤维素的图案化。