Department of Horticulture, University of Kentucky, Lexington, KY, USA.
Department of Plant and Soil Science, University of Kentucky, Lexington, KY, USA.
Pest Manag Sci. 2018 Apr;74(4):878-884. doi: 10.1002/ps.4779. Epub 2017 Dec 28.
Cellulose biosynthesis inhibitors (CBIs) are pre-emergence herbicides that inhibit anisotropic cell expansion resulting in a severely swollen and stunted growth phenotype. Resistance to group 21 CBIs, such as isoxaben, is conferred by missense mutations in CELLOSE SYNTHASE A (CesA) genes required for primary cell wall synthesis, concluding that this is their in vivo target.
Herein, we show that grasses exhibit tolerance to group 21 CBIs and explore the mechanism of tolerance to isoxaben in the grass Brachypodium distachyon (L.). Comparative genomics failed to identify synonymous point mutations that have been found to confer isoxaben resistance in the dicot Arabidopsis thaliana (L.). Brachypodium did not metabolize C-isoxaben. We next explored the role of grass-specific non-cellulosic cell wall components, specifically the hemicellulose polysaccharide mix linkage glucans (MLG), as a potential tolerance mechanism by compensating for the loss of cellulose during cell elongation. A partial-transcriptional knockdown T-DNA insertion was found in a key MLG synthesis gene, Cellulose synthase-like F6 (CslF6) and this mutant was found to be 2.1 times more sensitive to isoxaben than wild-type plants.
These data suggest that the composition and compensatory response of grass cell walls may be a factor in conferring tolerance to group 21 CBIs. © 2017 Society of Chemical Industry.
纤维素生物合成抑制剂(CBIs)是一种芽前除草剂,可抑制各向异性细胞扩展,导致严重肿胀和生长发育迟缓的表型。纤维素合成酶 A(CesA)基因所需的初生细胞壁合成对第 21 组 CBIs(如异噁唑草酮)的抗性是由错义突变赋予的,这表明它们是其体内靶标。
本文显示,禾本科植物对第 21 组 CBIs 具有耐受性,并探索了草本科植物柳枝稷对异噁唑草酮耐受性的机制。比较基因组学未能鉴定出已在双子叶植物拟南芥中发现的赋予异噁唑草酮抗性的同义点突变。柳枝稷不能代谢 C-异噁唑草酮。接下来,我们探讨了草类特异性非纤维素细胞壁成分(特别是半纤维素多糖混合连接葡聚糖(MLG))作为一种潜在的耐受机制的作用,通过在细胞伸长过程中补偿纤维素的损失来实现。在关键的 MLG 合成基因纤维素合酶类似物 F6(CslF6)中发现了一个部分转录敲低 T-DNA 插入,该突变体对异噁唑草酮的敏感性比野生型植物高 2.1 倍。
这些数据表明,禾本科细胞壁的组成和补偿反应可能是赋予第 21 组 CBIs 耐受性的一个因素。© 2017 英国化学学会。