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CELLULASE6 and MANNANASE7 Affect Cell Differentiation and Silique Dehiscence

机译:CELLULASE6和MANNANASE7影响细胞分化和Silique开裂

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摘要

Cellulases, hemicellulases, and pectinases play important roles in fruit development and maturation. Although mutants with defects in these processes have not been reported for cellulase or hemicellulase genes, the pectinases ARABIDOPSIS DEHISCENCE ZONE POLYGALACTURONASE1 (ADPG1) and ADPG2 were previously shown to be essential for silique dehiscence in Arabidopsis (Arabidopsis thaliana). Here, we demonstrate that the cellulase gene CELLULASE6 (CEL6) and the hemicellulase gene MANNANASE7 (MAN7) function in the development and dehiscence of Arabidopsis siliques. We found that these genes were expressed in both vegetative and reproductive organs and that their expression in the silique partially depended on the INDEHISCENT and ALCATRAZ transcription factors. Cell differentiation was delayed in the dehiscence zone of cel6 and man7 mutant siliques at early flower development stage 17, and a comparison of the spatio-temporal patterns of CEL6 and MAN7 expression with the locations of delayed cell differentiation in the cel6 and man7 mutants revealed that CEL6 and MAN7 likely indirectly affect the timing of cell differentiation in the silique valve at this stage. CEL6 and MAN7 were also found to promote cell degeneration in the separation layer in nearly mature siliques, as cells in this layer remained intact in the cel6 and man7 mutants and the cel6-1 man7-3 double mutant, whereas they degenerated in the wild-type control. Phenotypic studies of single, double, triple, and quadruple mutants revealed that higher-order mutant combinations of cel6-1, man7-3, and adpg1-1 and adpg2-1 produced more severe silique indehiscent phenotypes than the corresponding lower-order mutant combinations, except for some combinations involving cel6-1, man7-3, and adpg2-1. Our results demonstrate that the ability of the silique to dehisce can be manipulated to different degrees by altering the activities of various cell wall-modifying enzymes.
机译:纤维素酶,半纤维素酶和果胶酶在果实发育和成熟中起重要作用。尽管尚未报道纤维素酶或半纤维素酶基因在这些过程中有缺陷的突变体,但以前已证明果胶酶阿拉伯糖分离区带聚半乳糖醛酸酶1(ADPG1)和ADPG2对于拟南芥(拟南芥)中的角果分离至关重要。在这里,我们证明了纤维素酶基因CELLULASE6(CEL6)和半纤维素酶基因MANNANASE7(MAN7)在拟南芥的形成和裂开中起作用。我们发现这些基因在营养器官和生殖器官中均表达,并且它们在长角果中的表达部分取决于INDEHISCENT和ALCATRAZ转录因子。在早期花卉发育阶段,cel6和man7突变体的开裂区的细胞分化被延迟,CEL6和MAN7表达的时空模式与cel6和man7突变体中延迟的细胞分化位置的比较表明:在此阶段,CEL6和MAN7可能间接影响了角膜瓣中细胞分化的时间。还发现了CEL6和MAN7在几乎成熟的角果树中促进分离层中的细胞变性,因为该层中的细胞在cel6和man7突变体以及cel6-1 man7-3双突变体中保持完整,而在野外类型控制。对单,双,三和四重突变体的表型研究表明,cel6-1,man7-3和 adpg1-1 adpg2-1 的高阶突变体组合除某些涉及 cel6-1 man7-3 adpg2-1 <的组合外,与相应的低阶突变体组合相比,它们产生了更严重的角果分离表型/ em>。我们的结果表明,通过改变各种细胞壁修饰酶的活性,可以使长角果的开裂能力得到不同程度的控制。

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