首页> 外文期刊>Plant Production Science >Production of Raphanus sativus (C3)-Moricandia arvensis (C3-C4 intermediate) Monosomic and Disomic Addition Lines with Each Parental Cytoplasmic Background and their Photorespiratory Characteristics
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Production of Raphanus sativus (C3)-Moricandia arvensis (C3-C4 intermediate) Monosomic and Disomic Addition Lines with Each Parental Cytoplasmic Background and their Photorespiratory Characteristics

机译:具有每个亲本细胞质背景的萝卜(C3)-大叶桑ric(C3-C4中间体)单链和二链加成系的生产及其光呼吸特性

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We are maintaining five Moricandia arvensis monosomic addition lines of Raphanus sativus carrying R. sativus cytoplasm (autoplasmic MALs) and twelve M. arvensis MALs of R. sativus carrying M. arvensis cytoplasm (alloplasmic MALs) from BC6 to BC8 generation, and newly produced five M. arvensis disomic addition lines of R. sativus (autoplasmic DALs) and seven M. arvensis DALs of R. sativus carrying M. arvensis cytoplasm (alloplasmic DALs) from selfing and sib-crossing of the MALs and DALs in S3BC5 and S2BC6 generations. The structural, biochemical and physiological characteristics related to photorespiration of these MALs and DALs were compared to study the genetic mechanisms of the C3-C4 intermediate photosynthesis in the individual chromosomes of M. arvensis. The CO2 compensation point of the autoplasmic and alloplasmic DALs (RMa-b and MaR-b DALs) with one pair of M. arvensis ‘b’ chromosome were 29.4 and 30.1 μmol mol-1, respectively, which were significantly lower than that of other DALs and MALs as well as R. sativus (34.5 μmol mol-1). An immunogold electron microscopic study of the P-protein of glycine decarboxylase (GDC) in photosynthetic cells of the RMa-b DAL revealed that the bundle sheath cell (BSC) mitochondria were more intensively labeled for the protein than the mesophyll cell (MC) mitochondria. The ratio of the labeling density of the BSC mitochondria to that of the MC mitochondria was 1.13, which lies between values in M. arvensis (2.66) and R. sativus (0.76). These data suggest that the ‘b’ chromosome of M. arvensis genome controls the expression of C3-C4 intermediate characteristics.
机译:从BC6到BC8世代,我们正在维护5个携带R. sativus胞质(自体MALs)的萝卜的Raphanus ativensis单体组加成系和12个R. sativus R. sativus胞质M. arvensis MALs(自种质MALs),并新生产了5个S.BC5和S2BC6世代中MAL和DAL的自交和同胞杂交,R。sativus的M. arvensis二体添加系和自生和同胞杂交的7个携带M. arvensis细胞质的R. sativus的M. arvensis DAL。比较了这些MAL和DAL的与光呼吸有关的结构,生化和生理特性,以研究C.-C4中间光合作用的遗传机制。带有一对阿尔维链霉菌'b'染色体的自体和同质DAL(RMa-b和MaR-b DAL)的CO2补偿点分别为29.4和30.1μmolmol-1,显着低于其他DALs和MALs以及R. sativus(34.5μmolmol-1)。对RMa-b DAL光合细胞中甘氨酸脱羧酶(GDC)P蛋白的免疫金电子显微镜研究表明,与叶肉细胞(MC)线粒体相比,束鞘细胞(BSC)线粒体对蛋白质的标记强度更高。 BSC线粒体的标记密度与MC线粒体的标记密度之比为1.13,介于A.ensis(2.66)和R. sativus(0.76)之间。这些数据表明,阿尔维螺旋藻基因组的“ b”染色体控制着C3-C4中间特征的表达。

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