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Flower Development and Anatomy of Agapanthus praecox ssp. orientalis (Leighton) Leighton 被引量:3
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作者 ZHANG Di SHEN Xiao-hui ZHUO Li-huan 《Agricultural Sciences in China》 CAS CSCD 2011年第9期1365-1373,共9页
Floral buds of Agapanthus praecox ssp. orientalis were observed under dissecting and optical microscope to characterize floral organs development and to study relationships between anther development and microsporogen... Floral buds of Agapanthus praecox ssp. orientalis were observed under dissecting and optical microscope to characterize floral organs development and to study relationships between anther development and microsporogenesis. Floral organs differentiation was comprised of 6 distinct stages including nought differentiation, inflorescence bud differentiation, floret primordia differentiation, tepal primordia differentiation, stamen primordia differentiation, and pistil primordia differentiation. Six tepals differentiated almost simultaneously which cross arranged in space and appeared in hexagonal distribution pattern. Six stamens were differentiated inside the tepals at the same time. Finally, 3 carpel primordia differentiated and formed syncarpous pistil. The whole process of floral bud differentiation took approximately 40 d with the first 3 stages developing more slowly than the later 3 stages. Morphology and color of the anther underwent obvious changes during the period between stamen primordia differentiation and anther maturation. Microspores also underwent significant development during this same interval. The relationship between the process of microsporogenesis and anther development has already been made clear by the sauash techniaue. 展开更多
关键词 agapanthus praecox ssp. orientalis floral organs floral bud differentiation MICROSPOROGENESIS
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超低温保存诱发百子莲胚性愈伤组织延迟性细胞死亡特征
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作者 任宁 陈冠群 申晓辉 《分子植物育种》 CAS 北大核心 2023年第18期6096-6105,共10页
为了探究超低温保存诱发延迟性细胞死亡(cryopreservation-induced delayed-onset cell death, CIDOCD)对冻后细胞活性的影响,本研究以百子莲(Agapanthus praecox ssp. orientalis)胚性愈伤组织为试验材料,通过TTC染色法、伊文思蓝法定... 为了探究超低温保存诱发延迟性细胞死亡(cryopreservation-induced delayed-onset cell death, CIDOCD)对冻后细胞活性的影响,本研究以百子莲(Agapanthus praecox ssp. orientalis)胚性愈伤组织为试验材料,通过TTC染色法、伊文思蓝法定性定量检测超低温保存冻后恢复培养阶段细胞活性;采用TUNEL检测分析PCD变化规律;实时荧光定量PCR检测PCD相关基因表达。结果发现恢复培养6 h较0 h细胞存活率下降约8.29%,至24 h活性逐渐回升,30 h后细胞活性再次降低(较24 h降低约10.43%)。同时检测到明显的TUNEL阳性荧光变化,PCD发生比例在恢复培养0~36 h后期增多(30 h较24 h增加11.79%左右)。表明百子莲胚性愈伤组织超低温保存冻后发生CIDOCD,影响恢复培养实际冻存效率,6 h和30 h是活性下降关键时间点。Caspase、DAD1等PCD相关基因的差异性表达也证明了延迟性PCD在恢复培养阶段的发生。本研究为进一步完善超低温保存诱发PCD的分子网络及优化冻后恢复培养基以提高冻存效果提供参考。 展开更多
关键词 百子莲(agapanthus praecox) 胚性愈伤组织 超低温保存诱发延迟性细胞死亡 细胞活性 程序性细胞死亡
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百子莲ApCathB启动子克隆及其对超低温保存的响应分析 被引量:1
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作者 陈冠群 黄婷婷 申晓辉 《分子植物育种》 CAS CSCD 北大核心 2020年第14期4499-4506,共8页
组织蛋白酶B基因(ApCathB)是影响百子莲胚性愈伤组织超低温保存冻存率的关键基因,为探究ApCathB如何响应超低温保存复合逆境,利用染色体步移法扩增获得ApCathB的启动子序列,使用PlantCARE在线软件分析该启动子中含光、激素和非生物胁迫... 组织蛋白酶B基因(ApCathB)是影响百子莲胚性愈伤组织超低温保存冻存率的关键基因,为探究ApCathB如何响应超低温保存复合逆境,利用染色体步移法扩增获得ApCathB的启动子序列,使用PlantCARE在线软件分析该启动子中含光、激素和非生物胁迫相关的顺式作用元件。将ProApCathB::GUS表达载体转化拟南芥,获得转基因植株,GUS组织化学染色表明ApCathB启动子在拟南芥幼苗时期和小花等部位活性较高,在成熟叶中较低。转基因拟南芥萌发60 h幼苗在超低温保存处理过程中,GUS基因和蛋白的表达量在脱水处理后显著提高,暗示ApCathB启动子受到脱水处理的诱导进而响应超低温保存复合逆境,这为进一步研究ApCathB在百子莲超低温保存中的功能及其相关调控机制提供了数据参考。 展开更多
关键词 百子莲(agapanthus praecox ssp.orientalis) 组织蛋白酶B(ApCathB) 启动子 超低温保存 复合逆境响应
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