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首页> 外文期刊>Plant Molecular Biology >Identification and characterization of a null-activity mutant containing a cryptic pre-mRNA splice site for cytosolic fructose-1,6-bisphosphatase in Flaveria linearis
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Identification and characterization of a null-activity mutant containing a cryptic pre-mRNA splice site for cytosolic fructose-1,6-bisphosphatase in Flaveria linearis

机译:鉴定和表征无效活性突变体,其包含线性黄曲霉中胞质果糖-1,6-双磷酸酶的隐前mRNA剪接位点。

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摘要

Cytosolic fructose-1,6-bisphosphatase (cytFBPase) (E.C. 3.1.3.11) catalyzes the first irreversible reaction of daytime sucrose synthesis. A Flaveria linearis (F. linearis) mutant (line 84-9) previously shown to have ~10% wildtype cytFBPase activity contains no cytFBPase activity based on enzymatic and immunoprecipitation analysis. Genetic segregation and Southern analysis of an F2 population shows one gene copy of cytFBPase in F. linearis and linkage of null cytFBPase activity to the cytFBPase structural gene. A point mutation is present in the structural gene coding for cytFBPase in the mutant, causing a cryptic pre-mRNA splice site and a corresponding 24 amino acid deletion spanning the active site of the enzyme. Collectively, these data support the identification of a null-activity mutant for cytFBPase in F. linearis. This is the first report of a null mutant in the daytime sucrose synthesis pathway confirmed by both enzymatic and molecular analysis. Null cytFBPase in F. linearis does not predispose all lines to high starch accumulation due to an epistatic gene interaction; low starch accumulation in null cytFBPase lines segregates with elevated pyrophosphate-dependent phosphofructokinase (PFP) activity when grown in a 16 h photoperiod. Surprisingly, growth of parental lines and F2 progeny having null cytFBPase in continuous light rescued the wildtype growth phenotype. All null cytFBPase lines showed CO2-insensitivity/reversed sensitivity of photosynthesis, indicating that null cytFBPase causes a reduced total capacity for both photosynthesis and end-product synthesis regardless of starch and PFP phenotype. Collectively, the data indicate that F. linearis, a C3-C4 photosynthetic intermediate, has alternative cytFBPase-independent pathways for daytime sucrose synthesis.
机译:胞质果糖-1,6-双磷酸酶(cytFBPase)(E.C. 3.1.3.11)催化白天蔗糖合成的第一个不可逆反应。基于酶促和免疫沉淀分析,先前显示具有〜10%的野生型cytFBPase活性的黄褐线虫(F. linearis)突变体(品系84-9)不包含cytFBPase活性。遗传分离和F2群体的Southern分析显示,线性虫中cytFBPase的一个基因拷贝和无效的cytFBPase活性与cytFBPase结构基因的联系。在突变体中编码cytFBPase的结构基因中存在一个点突变,从而导致隐秘的前mRNA剪接位点和相应的跨越该酶活性位点的24个氨基酸缺失。总体而言,这些数据支持鉴定线性拟南芥中cytFBPase的无效活性突变体。这是通过酶促和分子分析证实的白天蔗糖合成途径中无效突变体的首次报道。由于上位基因的相互作用,线性镰刀菌中的无效cytFBPase不会使所有品系易于发生高淀粉积累。在16小时的光周期中生长时,无效cytFBPase系中的低淀粉积累会与焦磷酸依赖性磷酸果糖激酶(PFP)活性升高相关。令人惊讶地,在连续光照下具有无效cytFBPase的亲本系和F2后代的生长拯救了野生型生长表型。所有无效的cytFBPase品系均显示出CO 2 不敏感/光合作用的敏感性逆转,表明无效的cytFBPase不管淀粉和PFP表型如何,都导致光合作用和最终产物合成的总容量降低。总体而言,数据表明线形镰刀菌(一种C3-C4光合中间体)具有白天蔗糖合成的其他cytFBPase独立途径。

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