Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, SP, Brazil.
LRSV, Laboratoire de Recherche en Sciences Végétales, UMR5546, Université Paul Sabatier Toulouse III/CNRS Castanet-Tolosan, France.
J Exp Bot. 2019 Jan 7;70(2):497-506. doi: 10.1093/jxb/ery362.
The development of lysigenous aerenchyma starts with cell expansion and degradation of pectin from the middle lamella, leading to cell wall modification, and culminating with cell separation. Here we report that nutritional starvation of sugarcane induced gene expression along sections of the first 5 cm of the root and between treatments. We selected two candidate genes: a RAV transcription factor, from the ethylene response factors superfamily, and an endopolygalacturonase (EPG), a glycosyl hydrolase related to homogalacturonan hydrolysis from the middle lamella. epg1 and rav1 transcriptional patterns suggest they are essential genes at the initial steps of pectin degradation during aerenchyma development in sugarcane. Due to the high complexity of the sugarcane genome, rav1 and epg1 were sequenced from 17 bacterial artificial chromosome clones containing hom(e)ologous genomic regions, and the sequences were compared with those of Sorghum bicolor. We used one hom(e)olog sequence from each gene for transactivation assays in tobacco. rav1 was shown to bind to the epg1 promoter, repressing β-glucuronidase activity. RAV repression upon epg1 transcription is the first reported link between ethylene regulation and pectin hydrolysis during aerenchyma formation. Our findings may help to elucidate cell wall degradation in sugarcane and therefore contribute to second-generation bioethanol production.
通气组织的形成始于细胞的扩展和中胶层果胶的降解,导致细胞壁的修饰,并最终导致细胞分离。在这里,我们报告说,甘蔗的营养饥饿诱导了沿根的前 5 厘米的部分和处理之间的基因表达。我们选择了两个候选基因:一个 RAV 转录因子,来自乙烯反应因子超家族,和一个内切多聚半乳糖醛酸酶(EPG),一种与从中胶层水解 homogalacturonan 有关的糖基水解酶。epg1 和 rav1 的转录模式表明,它们是在甘蔗通气组织发育过程中果胶降解的初始步骤中必需的基因。由于甘蔗基因组的高度复杂性,从包含同源基因组区域的 17 个细菌人工染色体克隆中测序了 rav1 和 epg1,并将这些序列与高粱的序列进行了比较。我们使用每个基因的一个同源序列进行烟草中转激活测定。rav1 被证明可以结合到 epg1 启动子上,抑制β-葡萄糖醛酸酶的活性。epg1 转录时 RAV 的抑制作用是第一个报道的乙烯调节与通气组织形成过程中果胶水解之间的联系。我们的发现可能有助于阐明甘蔗细胞壁的降解,从而有助于第二代生物乙醇的生产。