Schultes N P, Brutnell T P, Allen A, Dellaporta S L, Nelson T, Chen J
Department of Biology, Yale University, New Haven, Connecticut 06511, USA.
Plant Cell. 1996 Mar;8(3):463-75. doi: 10.1105/tpc.8.3.463.
Adjacent bundle sheath and mesophyll cells cooperate for carbon fixation in the leaves of C4 plants. Mutants with compromised plastid development should reveal the degree to which this cooperation is obligatory, because one can assay whether mesophyll cells with defective bundle sheath neighbors retain C4 characteristics or revert to C3 photosynthesis. The leaf permease1-mutable1 (lpe1-m1) mutant of maize exhibits disrupted chloroplast ultrastructure, preferentially affecting bundle sheath choroplasts under lower light. Despite the disrupted ultrastructure, the metabolic cooperation of bundle sheath and mesophyll cells for C4 photosynthesis remains intact. To investigate this novel mutation, the Activator transposon-tagged allele and cDNAs corresponding to the Lpe1 mRNA from wild-type plants were cloned. The Lpe1 gene encodes a polypeptide with significant similarity to microbial pyrimidine and purine transport proteins. An analysis of revertant sectors generated by Activator excision suggests that the Lpe1 gene product is cell autonomous and can be absent up to the last cell divisions in the leaf primordium without blocking bundle sheath chloroplast development.
在C4植物的叶片中,相邻的维管束鞘细胞和叶肉细胞协同进行碳固定。质体发育受损的突变体应能揭示这种协同作用的必需程度,因为可以测定与有缺陷的维管束鞘相邻的叶肉细胞是否保留C4特征或恢复为C3光合作用。玉米的叶通透酶1-突变体1(lpe1-m1)表现出叶绿体超微结构破坏,在较低光照下优先影响维管束鞘叶绿体。尽管超微结构遭到破坏,但维管束鞘细胞和叶肉细胞在C4光合作用中的代谢协同作用仍然完好无损。为了研究这种新突变,克隆了激活子转座子标签等位基因以及与野生型植物Lpe1 mRNA对应的cDNA。Lpe1基因编码一种与微生物嘧啶和嘌呤转运蛋白具有显著相似性的多肽。对激活子切除产生的回复突变区的分析表明,Lpe1基因产物是细胞自主的,在叶原基的最后细胞分裂之前都可以不存在,而不会阻碍维管束鞘叶绿体的发育。