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首页> 外文期刊>Plant physiology >Structural and biochemical dissection of photorespiration in hybrids differing in genome constitution between Diplotaxis tenuifolia (C-3-C-4) and radish (C-3)
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Structural and biochemical dissection of photorespiration in hybrids differing in genome constitution between Diplotaxis tenuifolia (C-3-C-4) and radish (C-3)

机译:Diplotaxis tenuifolia(C-3-C-4)和萝卜(C-3)之间基因组组成不同的杂种中光呼吸的结构和生化解剖

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We compared the structural, biochemical, and physiological characteristics involved in photorespiration of intergeneric hybrids differing in genome constitution (DtDtR, DtDtRR, and DtRR) between the C-3-C-4 intermediate species Diplotaxis tenuifolia (DtDt) and the C-3 species radish (Raphanus sativus; RR). The bundle sheath (BS) cells in D. tenuifolia included many centripetally located chloroplasts and mitochondria, but those of radish had only a few chloroplasts and mitochondria. In the hybrids, the numbers of chloroplasts and mitochondria, the ratio of centripetally located organelles to total organelles, and the mitochondrial size in the BS cells increased with an increase in the constitution ratio of the Dt:R genome. The P-protein of glycine decarboxylase (GDC) was confined to the BS mitochondria in D. tenuifolia, whereas in radish, it accumulated more densely in the mesophyll than in the BS mitochondria. In the hybrids, more intense accumulation of GDC in the BS relative to the mesophyll mitochondria occurred with an increase in the Dt:R ratio. These structural and biochemical features in the hybrids were reflected in the gas exchange characteristics of leaves, such as the CO2 compensation point. Our data indicate that the leaf structure, the intercellular pattern of GDC expression, and the gas exchange characteristics of C-3-C-4 intermediate photosynthesis are inherited in the hybrids depending on the constitution ratio of the parent genomes. Our findings also demonstrate that the apparent reduced photorespiration in C-3-C-4 intermediate plants is mainly due to the structural differentiation of mitochondria and chloroplasts in the BS cells combined with the BS-dominant expression of GDC.
机译:我们比较了C-3-C-4中间物种Diplotaxis tenuifolia(DtDt)和C-3物种之间基因组组成不同的种间杂种(DtDtR,DtDtRR和DtRR)的光呼吸涉及的结构,生化和生理特性萝卜(Raphanus sativus; RR)。圆叶石楠的束鞘细胞(BS)包括许多向心定位的叶绿体和线粒体,但是萝卜的束鞘鞘仅有少数叶绿体和线粒体。在杂种中,BS细胞中叶绿体和线粒体的数量,向心定位的细胞器与总细胞器的比率以及线粒体大小随Dt:R基因组构成比的增加而增加。甘氨酸脱羧酶(GDC)的P蛋白局限于D. tenuifolia中的BS线粒体,而在萝卜中,它的叶肉中的密度比BS线粒体中的密度更高。在杂种中,相对于叶肉线粒体,BS中GDC的积累更加强烈,而Dt:R比率增加。杂种中的这些结构和生化特征反映在叶片的气体交换特性上,例如CO2补偿点。我们的数据表明,根据亲本基因组的构成比,杂种中遗传了叶片结构,GDC表达的细胞间模式以及C-3-C-4中间光合作用的气体交换特性。我们的发现还表明,C-3-C-4中间植物中明显的光呼吸减少主要是由于BS细胞中线粒体和叶绿体的结构分化以及BS为主的GDC表达所致。

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