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Ultrastructural Studies on the Development of Oil Cells in Litsea pungens 被引量:2
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作者 初庆刚 胡正海 《Acta Botanica Sinica》 CSCD 2001年第4期339-347,共9页
The developmental process of oil cells in the shoot of Litsea pungens Hemsl. has been studied with transmission electron microscopy. According to the development of the three layers of cell wall, the developmental pro... The developmental process of oil cells in the shoot of Litsea pungens Hemsl. has been studied with transmission electron microscopy. According to the development of the three layers of cell wall, the developmental process could be divided into 4 stages. In stage 1, the cell wall consisted only of a primary (the outmost) cellulose layer, which might further be divided into two substages, the oil cell initial, and the vacuolizing oil cell. During this stage, there were some small electron translucent vesicles and dark osmiophilic droplets of variant sizes in the different-shaped plastids. It was observed that some dark and gray osmiophilic materials coalesced to vacuoles in the cytoplasm. In stage 2, a lamellated suberin layer accumulated inside the primary cellulose layer. In stage 3, a thicker and looser inner cellulose wall layer was formed gradually inside the suberin layer. Some dark osmiophilic droplets have been observed in this loose inner cellulose wall layer. The plasmodesmata were blocked up and became a special structure. Then, the big vacuole, which is the oil sac, was full of osmiophilic oil. In stage 4, the oil cell became matured and the cytoplasm disintegrated. The oil sac enveloped from plasmalemma was attached to the cupule, which was formed by the protuberance of the inner cellulose wall layer into the lumen. After the maturity of oil cell, the ground cytoplasm began to disintegrate and became electron opaque or exhibited in a disordered state, and the osmiophilic oil appeared light gray. 展开更多
关键词 Litsea pungens oil cells development ULTRASTRUCTURE suberin layer cupule
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桃PpNST1和PpSND1转录因子基因的克隆与表达分析 被引量:5
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作者 胡昊 刘勇 +3 位作者 刘悦萍 邬瑞杰 花宝光 王有年 《植物生理学报》 CAS CSCD 北大核心 2012年第6期589-596,共8页
为了解NAC类转录因子与桃果实内果皮发育木质化的关系,本文以桃内果皮为试材,采用同源基因克隆法获得了两个NAC类转录因子的全长编码区,分别命名为PpNST1和PpSND1。序列分析表明2个基因编码区全长均为1188bp,可编码396个氨基酸,其预测... 为了解NAC类转录因子与桃果实内果皮发育木质化的关系,本文以桃内果皮为试材,采用同源基因克隆法获得了两个NAC类转录因子的全长编码区,分别命名为PpNST1和PpSND1。序列分析表明2个基因编码区全长均为1188bp,可编码396个氨基酸,其预测蛋白均包含1个NAC结构域和2个特征结构域(LP-box和WQ-box)。氨基酸序列系统进化分析显示PpNST1和PpSND1与苹果、葡萄、毛果杨和拟南芥等参与调控次生细胞壁形成和木质化的NST/SND1类转录因子具有较高同源性。荧光实时定量PCR分析表明,PpNST1和PpSND1的表达水平随内果皮的木质化程度加强而不断升高,分别于盛花期后59和52 d达到最高表达量,且它们在内果皮中的表达水平远高于中果皮。对PpNST1和PpSND1下游可能的作用靶标进行进一步的表达分析表明,PpNST1和PpSND1可能在内果皮发育木质化过程中扮演重要角色。 展开更多
关键词 内果皮 发育木质化 NAC转录因子
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