Wang Zhong-Feng, Ying Tie-Jin
Biosystem Engineering and Food Science College, Zhejiang University, Hangzhou 310029, China.
Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 2004 Feb;30(1):27-33.
The characteristics in seedling development, vegetative growth and fruit ripening of Epinastics (Epi) mutant overproducing ethylene and its wild type VFN8 tomato (Lycopersicon esculentum Mill.) were systematically investigated. Epi overproduced ethylene during vegetative growth and fruit development. Incomplete triple response in etiolated seedling, strong petiole episnasty in adult plant, and accelerated abscission and fruit ripening displayed enhanced ethylene response, consistent with the known mode of ethylene response. Significant apical dominance and compact vegetative shape in Epi suggested an important role of ethylene in the regulation of apical dominance. The characteristics such as inhibited apical hook formation in etiolated seedling and delayed senescence of leaves and petals in Epi, which were not typical of symptoms induced by ethylene, suggest that different growth and developmental characteristics are possibly regulated through different signal transduction pathways.
对乙烯过量产生的矮化(Epi)突变体及其野生型VFN8番茄(Lycopersicon esculentum Mill.)在幼苗发育、营养生长和果实成熟方面的特征进行了系统研究。Epi在营养生长和果实发育过程中乙烯产生过量。黄化幼苗中不完全三重反应、成年植株中强烈的叶柄偏上性以及加速脱落和果实成熟表现出增强的乙烯反应,这与已知的乙烯反应模式一致。Epi中显著的顶端优势和紧凑的营养形态表明乙烯在顶端优势调节中起重要作用。Epi中黄化幼苗顶端弯钩形成受抑制以及叶片和花瓣衰老延迟等特征并非典型的乙烯诱导症状,这表明不同的生长和发育特征可能通过不同的信号转导途径进行调节。