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Tetrazolium Staining, Mitochondria, and Barley Quality

机译:四唑鎓染色,线粒体和大麦品质

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Triphenyl tetrazolium chloride (TTC) staining of individual isolated barley aleurone layers was carried out under aseptic conditions and the amount of formazan generated under a standardized incubation period was quantified. The nature of the tests minimized or excluded the influences of grain damage, ageing or contaminating microorganisms. Embryos from selected Triumph barley grains, having intensely or poorly staining aleurone layers, were grown on to maturity. Collected grain was analysed and embryos from the highest-staining progeny from the high-staining aleurone line and the lowest-staining progeny of the low-staining aleurone line were grown on to yield grain of the second selected generations. Aleurone layers of the high-staining line continued to stain intensely, respired strongly, and generated large amounts of a-amylase in response to gibberellic acid and embryos from these grains respired and grew vigorously, as did whole grains. In contrast, the aleurone layers of grains from the low-staining line continued to stain poorly and respired weakly, generated little a-amylase in response to gibberellic acid, the embryos respired slowly and lacked vigour and, like the whole grains, grew poorly. It is proposed that these results are the consequence of the selection procedure separating lines with superior and inferior mitochondria. If this apparently novel approach using TTC staining is confirmed as being valid, it opens a new way for plant breeders to select for more vigorous cereal lines.
机译:在无菌条件下对单个分离的大麦糊粉层进行三苯基氯化四氮唑(TTC)染色,并量化在标准孵育期中生成的甲maz的数量。测试的性质将谷物损坏,老化或污染微生物的影响降至最低或排除在外。来自选定的胜利大麦籽粒的糊状糊粉层染色强烈或较差的胚可以生长到成熟。分析收集的谷粒,并从高染色糊粉leu系的最高染色后代和低染色糊粉line系的最低染色后代中生长出胚,以产生第二代选定的籽粒。高染色系的Aleurone层继续强烈染色,强烈呼吸,并响应赤霉素而产生大量α-淀粉酶,这些谷粒的胚芽和整个谷粒都呼吸并旺盛生长。相比之下,来自低染色品系的谷物糊粉层继续染色较差,呼吸作用较弱,对赤霉素反应几乎不产生α-淀粉酶,胚芽呼吸缓慢且缺乏活力,就像整个谷物一样,生长不良。提出这些结果是选择程序将线粒体上,下线分开的结果。如果这种使用TTC染色的新颖方法被证实是有效的,那么它将为植物育种者选择更有活力的谷物品系开辟一条新途径。

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