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bundle sheath defective2 a Mutation That Disrupts the Coordinated Development of Bundle Sheath and Mesophyll Cells in the Maize Leaf.

机译:束鞘缺陷2一种突变破坏了玉米叶片束鞘和叶肉细胞的协调发育。

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摘要

Within the maize leaf primordium, coordinated cell division and differentiation patterns result in the development of two morphologically and biochemically distinct photosynthetic cell types, the bundle sheath and the mesophyll. The bundle sheath defective2-mutable1 (bsd2-m1) mutation specifically disrupts C4 differentiation in bundle sheath cells in that the levels of bundle sheath cell-specific photosynthetic enzymes are reduced and the bundle sheath chloroplast structure is aberrant. In contrast, mesophyll cell-specific enzymes accumulate to normal levels, and the mesophyll cell chloroplast structure is not perturbed. Throughout mutant leaf development, the large and small subunits of ribulose bisphosphate carboxylase are absent; however, both rbcL and RbcS transcripts accumulate. Moreover, chloroplast-encoded rbcL transcripts accumulate ectopically in mesophyll cells. Although the bundle sheath cell chloroplast structure deteriorates rapidly when plants are exposed to light, this deterioration is most likely a secondary effect resulting from cell-specific photooxidative damage. Therefore, we propose that the Bsd2 gene plays a direct role in the post-transcriptional control of rbcL transcript accumulation and/or translation, both in bundle sheath and mesophyll cells, and an indirect role in the maintenance of bundle sheath cell chloroplast structure.
机译:在玉米叶片原基中,协调的细胞分裂和分化模式导致了两种形态和生化上不同的光合细胞类型的发展,即束鞘和叶肉。束鞘缺陷2-mutable1(bsd2-m1)突变特异性地破坏了束鞘细胞中的C4分化,因为束鞘细胞特异性光合酶的水平降低,束鞘叶绿体结构异常。相反,叶肉细胞特异性酶积累到正常水平,而叶肉细胞的叶绿体结构不受干扰。在整个叶片发育过程中,不存在核糖二磷酸羧化酶的大亚基和小亚基。但是,rbcL和RbcS成绩单都会累积。此外,叶绿体编码的叶绿体编码的rbcL转录物异位积累。尽管当植物暴露于光下时,束鞘细胞的叶绿体结构会迅速变质,但这种变质很可能是细胞特异性光氧化损伤导致的次级效应。因此,我们建议Bsd2基因在束鞘和叶肉细胞中的rbcL转录物积累和/或翻译的转录后控制中起直接作用,而在束鞘细胞叶绿体结构的维持中起间接作用。

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