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作 者:王爱勤[1] 杨丽涛[1] 王自章[2] 韦宇拓[3] 何龙飞[1] 李杨瑞[1]
机构地区:[1]广西大学农学院,广西南宁530005 [2]中国科学院植物研究所,北京100093 [3]广西大学生命科学与技术学院,广西南宁530005
出 处:《作物学报》2006年第5期734-737,共4页Acta Agronomica Sinica
基 金:国家自然科学基金(39860039)资助项目
摘 要:ACC合成酶(ACS)是高等植物乙烯生物合成途径中的限速酶。在克隆到甘蔗ACC合成酶基因家族3个成员Sc-ACS1、Sc-ACS2和Sc-ACS3的基础上,分别以它们作为探针,检测了激素诱导和环境胁迫对甘蔗苗期该3成员表达的影响。结果表明,乙烯利诱导Sc-ACS1在叶中表达,在根中不表达;Sc-ACS2在根、叶中表达;Sc-ACS3主要在根部表达,在叶中不表达。在甘蔗叶片中,Sc-ACS1对冷胁迫、暗培养和LiCl胁迫均有应答,并受植物生长激素IAA诱导而表达;Sc-ACS2无论是在生长激素诱导还是环境胁迫下,其mRNA均维持较低水平。1-aminocyclopropane-1-carboxylic acid synthase is one of the key rate-limiting enzymes for ethylene biosynthesis in higher plants. Based on the cloning of Sc-ACS1, Sc-ACS2 and Sc-ACS3 of ACS gene families, their expressions were tested in the roots and leaves of sugarcane with Sc-ACS1, Sc-ACS2 and Sc-ACS3 as the probes, respectively. The results of Northern blotting analysis showed that the expression of Sc-ACS1 was induced by ethephon in leaves, but not in roots; that of Sc-ACS2 in leaves and roots; and that of Sc-ACS3 in roots, while not in leaves. Under the environmental stresses (cold stress, dark-growing condition and LiCl stress)and hormone inducement (IAA), the mRNA of Sc-ACS1 showed a higher expression while that of Sc-ACS2 maintained low expression level in leaves.
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