U.S. Department of Agriculture, Agricultural Research Service, Western Regional Research Center, 800 Buchanan St., Albany, California 94710.
Plant Physiol. 1991 Dec;97(4):1409-13. doi: 10.1104/pp.97.4.1409.
We have monitored the activities of RNases WL(A), WL(B), and WL(C) (A Blank, TA McKeon [1991] Plant Physiol 97: 1402-1408) during leaf senescence in wheat (Triticum aestivum L. cv Chinese Spring). When seedlings were induced to senesce in darkness, protein loss from primary leaves began immediately. RNase WL(B) activity was unchanged for 2 days and then rose linearly, reaching a sixfold elevation in 7 days. RNase WL(C) activity declined for 2 days and then rose linearly, reaching a twofold elevation in 7 days. RNase WL(A) activity declined in the first 2 days and was unchanged thereafter. Although differentially expressed, these RNase activities may respond to a common regulatory mechanism(s) which, at 2 days of darkness, signals progression into a more advanced stage of senescence. The RNase activities were also differentially expressed during light-induced recovery, returning to normal levels in dissimilar patterns. In flag leaves of greenhouse-grown wheat, the three RNase activities increased during the early postanthesis period when protein content was stable and underwent further, accelerated accumulation during senescence. RNase WL(B) activity showed the largest overall senescence-associated elevation (sixfold), followed by RNase WL(C) (fourfold) and RNase WL(A) (threefold).
我们在小麦(Triticum aestivum L. cv Chinese Spring)叶片衰老过程中监测了 RNases WL(A)、WL(B) 和 WL(C)(A Blank,TA McKeon [1991] Plant Physiol 97: 1402-1408)的活性。当幼苗在黑暗中诱导衰老时,初级叶片中的蛋白质损失立即开始。RNase WL(B)活性在最初的两天内保持不变,然后呈线性上升,7 天后上升了六倍。RNase WL(C)活性在最初的两天内下降,然后呈线性上升,7 天后上升了两倍。RNase WL(A)活性在前两天下降,之后保持不变。尽管这些 RNase 活性表达不同,但它们可能响应一个共同的调节机制(s),在黑暗的前两天,该机制发出信号,进入衰老的更高级阶段。这些 RNase 活性在光诱导恢复过程中也表现出不同的表达,以不同的模式恢复到正常水平。在温室中生长的小麦的旗叶中,当蛋白质含量稳定时,三种 RNase 活性在授粉后的早期增加,并在衰老过程中进一步加速积累。RNase WL(B)活性表现出最大的整体衰老相关升高(六倍),其次是 RNase WL(C)(四倍)和 RNase WL(A)(三倍)。