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Leaf Proteolytic Activities and Senescence during Grain Development of Field-grown Corn (Zea mays L.)

机译:大田玉米(Zea mays L.)籽粒发育过程中的叶片蛋白水解活性和衰老

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摘要

Some proteolytic enzymes occurring in the leaves of field-grown corn (Zea mays) (B73) were identified and partially characterized. Changes in activities of several proteolytic enzymes and in concentrations of protein and chlorophyll as a function of intraleaf segments (tip to base), leaf position, and leaf senescence during grain development and maturation were followed in crude leaf extracts.The aminopeptidase (not affected by sulfhydryl or fluoride reagents) was most active at pH 7, while the carboxypeptidase(s) (sensitive to fluoride, but insensitive to sulfhydryl reagents) was most active in the acid range, pH 3 to 6. The presence of two or more endopeptidases is indicated. Endopeptidase (caseolytic) activity at pH 5.4 appeared to be stimulated by sulfhydryl groups or EDTA, while caseolytic activity at pH 7.5 was not.Visually, individual leaf senescence starts at the leaf tip and the necrotic (brown) V-shaped area enlarges progressively toward the leaf base. Canopy senescence occurs in two phases. Foliar symptoms are first observed on the bottom leaf and then in sequential order up the plant. Subsequently, senescence occurs on the top leaf and moves downward. These foliar senescence symptoms are paralleled by decreases in exopeptidase activities, protein, and chlorophyll concentrations and by increases in endopeptidase activities.During development and maturation of the grain, both aminopeptidase and carboxypeptidase activity of the middle half of the ear leaf increased (2- to 3-fold) during the onset of the visual reproductive phase (tassel and car emergence). However, during grain development and plant senescence, both activities decreased rapidly and concurrently with the loss of protein and chlorophyll from this leaf section. In contrast, caseolytic activity at both pH 5.4 and 7.5 increased gradually during the early reproductive phase and rapidly with leaf senescence. The fastest rate of increase in caseolytic activities was concurrent with the most rapid loss of protein from the leaves. The coincidence of these events suggests a major role for the caseolytic enzymes in initiating the rapid hydrolysis of leaf protein.
机译:鉴定并部分鉴定了田间种植的玉米(Zea mays)(B73)叶片中存在的一些蛋白水解酶。粗叶提取物中的几种蛋白水解酶的活性以及叶内节段(叶尖至基部),叶片位置和叶片衰老过程中蛋白质水解和叶绿素浓度的变化随粗叶提取物中的变化而变化。巯基或氟化物试剂在pH值为7时活性最高,而羧肽酶(对氟化物敏感,但对巯基试剂不敏感)在pH值3至6的酸性范围内最活跃。存在两种或多种内肽酶指示。巯基或EDTA刺激pH值为5.4的内肽酶(酪蛋白分解)活性,而pH 7.5未被酪蛋白水解活性。叶基。冠层衰老分为两个阶段。首先在底部叶片上观察到叶的症状,然后依次在植物上观察到。随后,衰老发生在顶叶上并向下移动。这些叶衰老症状与外肽酶活性,蛋白质和叶绿素浓度的降低以及内肽酶活性的增加相平行。在谷物的发育和成熟过程中,耳叶中半部的氨肽酶和羧肽酶活性都增加了(2- 3倍)在视觉生殖阶段(流苏和汽车出没)的发作。但是,在谷物发育和植物衰老过程中,两种活性均迅速下降,并且与此叶片部分的蛋白质和叶绿素损失同时发生。相反,在pH值5.4和7.5时,酪蛋白水解活性在生殖的早期阶段逐渐增加,并随着叶片的衰老而迅速增加。酪蛋白水解活性增加最快的速度与叶片中蛋白质的最快速损失同时发生。这些事件的巧合表明酪蛋白水解酶在启动叶蛋白的快速水解中起主要作用。

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