ZmCER1, a putative ECERIFERUM 1 protein in maize, functions in cuticular wax biosynthesis and bulliform cell development

Yan Zhao, Qingzhi Liu, Xueran Wang, Weixiao Zhang, Wei Xu, Yongzhong Zhang, Baoshen Liu
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Abstract

The cuticular wax, acting as the ultimate defense barrier, is essential for the normal morphogenesis of plant organs. Despite this importance, the connection between wax composition and leaf development has not been thoroughly explored. In this study, we characterized a new maize mutant, (), which exhibits crinkled and ragged leaves starting from the sixth leaf stage. The phenotype of is conferred by , which encoding an aldehyde decarbonylase involved in wax biosynthesis. function deficient mutant displayed reduced cuticular wax density and disordered bulliform cells (BCs), while overexpressing plants exhibited the opposite effects, indicating that regulates cuticular wax biosynthesis and BCs development. Additionally, as the density of cuticular wax increased, the water loss rate of detached leaf decreases, suggesting that is positively correlated with plant drought tolerance.
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ZmCER1 是玉米中一种推定的 ECERIFERUM 1 蛋白,在角质蜡生物合成和牛皮状细胞发育中发挥作用
作为最终防御屏障的角质蜡对植物器官的正常形态发生至关重要。尽管蜡质非常重要,但蜡质成分与叶片发育之间的联系尚未得到深入探讨。在这项研究中,我们鉴定了一种新的玉米突变体(),该突变体从第六叶期开始就表现出皱缩和褴褛的叶片。功能缺失突变体的角质蜡密度降低,牛皮状细胞(BCs)紊乱,而过表达植株则表现出相反的效果,这表明角质蜡生物合成和牛皮状细胞发育受到调控。此外,随着角质蜡密度的增加,脱落叶片的失水率降低,这表明角质蜡与植物的耐旱性呈正相关。
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