Yu X M, Griffith M, Wiseman S B
Department of Biology, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.
Plant Physiol. 2001 Jul;126(3):1232-40. doi: 10.1104/pp.126.3.1232.
Antifreeze activity is induced by cold temperatures in winter rye (Secale cereale) leaves. The activity arises from six antifreeze proteins that accumulate in the apoplast of winter rye leaves during cold acclimation. The individual antifreeze proteins are similar to pathogenesis-related proteins, including glucanases, chitinases, and thaumatin-like proteins. The objective of this study was to study the regulation of antifreeze activity in response to ethylene and salicyclic acid, which are known regulators of pathogenesis-related proteins induced by pathogens. Nonacclimated plants treated with salicylic acid accumulated apoplastic proteins with no antifreeze activity. In contrast, when nonacclimated plants were exposed to ethylene, both antifreeze activity and the concentration of apoplastic protein increased in rye leaves. Immunoblotting revealed that six of the seven accumulated apoplastic proteins consisted of two glucanases, two chitinases, and two thaumatin-like proteins. The ethylene-releasing agent ethephon and the ethylene precursor 1-aminocyclopropane-1-carboxylate also induced high levels of antifreeze activity at 20 degrees C, and this effect could be blocked by the ethylene inhibitor AgNO(3). When intact rye plants were exposed to 5 degrees C, endogenous ethylene production and antifreeze activity were detected within 12 and 48 h of exposure to cold, respectively. Rye plants exposed to drought produced both ethylene and antifreeze activity within 24 h. We conclude that ethylene is involved in regulating antifreeze activity in winter rye in response to cold and drought.
在冬黑麦(Secale cereale)叶片中,低温会诱导抗冻活性。这种活性源于六种抗冻蛋白,它们在低温驯化期间在冬黑麦叶片的质外体中积累。这些抗冻蛋白个体与病程相关蛋白相似,包括葡聚糖酶、几丁质酶和类甜蛋白。本研究的目的是研究乙烯和水杨酸对抗冻活性的调节作用,已知乙烯和水杨酸是病原体诱导的病程相关蛋白的调节因子。用水杨酸处理未驯化的植物会积累无抗冻活性的质外体蛋白。相反,当未驯化的植物暴露于乙烯时,冬黑麦叶片中的抗冻活性和质外体蛋白浓度都会增加。免疫印迹显示,七种积累的质外体蛋白中有六种由两种葡聚糖酶、两种几丁质酶和两种类甜蛋白组成。乙烯释放剂乙烯利和乙烯前体1-氨基环丙烷-1-羧酸在20℃时也诱导了高水平的抗冻活性,并且这种效应可以被乙烯抑制剂AgNO₃阻断。当完整的冬黑麦植株暴露于5℃时,分别在暴露于低温12小时和48小时内检测到内源性乙烯产生和抗冻活性。暴露于干旱的冬黑麦植株在24小时内同时产生了乙烯和抗冻活性。我们得出结论,乙烯参与调节冬黑麦对寒冷和干旱的抗冻活性。