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Insights into the dwarfing mechanism of pear(Pyrus betulaefolia) based on anatomical and structural analysis using X-ray scanning
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作者 Lili Dong Chuxuan Yang +6 位作者 Jing Wang Jingjing Li Mei Zhao Dingli Li Zhiyun Qiu Chunhui Ma Zhenhua Cui 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第2期355-366,共12页
The lack of a suitable rootstock to control scion growth has limited the development of high-density plantations in pear production, which is partly attributed to poor understanding of the dwarfing mechanism. In the p... The lack of a suitable rootstock to control scion growth has limited the development of high-density plantations in pear production, which is partly attributed to poor understanding of the dwarfing mechanism. In the present study, the rootstock of the dwarf-type pear (Pyrus betulaefolia)PY-9’ was identified and used as the material for anatomical analysis.PY-9’ grew to half the tree height of the normal cultivar Zhengdu’, along with fewer internodes and shorter length. Significant differences in growth rate betweenPY-9’ andZhengdu’ were detected at approximately 30 days after full bloom, which corresponded with the time of the greatest difference in water potential between the dwarf and normal cultivar.PY-9’ showed a higher photosynthetic rate thanZhengdu’. Anatomical analysis showed thatPY-9’ had higher area ratios of both phloem and xylem and more developed vascular tissues thanZhengdu’. The three-dimensional reconstructed skeleton of the xylem from X-ray computed tomography scanning revealed greater intervessel connectivity inZhengdu’ than inPY-9’, which could contribute to the more vigorous growth ofZhengdu’. This study thus provides the first comparison of the microstructural properties of xylem elements between a dwarfing-type and vigorous-type pear rootstock, providing new insights into the dwarfing mechanism in pear and facilitating breeding of dwarf pear rootstocks to increase crop productivity. 展开更多
关键词 pyrus betulaefolia Anatomical analysis Dwarfing mechanism Intervessel connectivity ROOTSTOCK
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发根农杆菌介导的杜梨毛状根遗传转化方法 被引量:3
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作者 郝紫微 戴雨沁 +1 位作者 张绍铃 王鹏 《湖北农业科学》 2021年第1期151-154,159,共5页
以杜梨(Pyrus betulaefolia)为研究材料,利用发根农杆菌(Agrobacterium rhizogenes)开发了一种简单、快速、高效的杜梨毛状根遗传转化方法。将含有mCherry基因的表达载体pROK2导入发根农杆菌K599,侵染杜梨幼苗,通过注射烟草叶片、常规PC... 以杜梨(Pyrus betulaefolia)为研究材料,利用发根农杆菌(Agrobacterium rhizogenes)开发了一种简单、快速、高效的杜梨毛状根遗传转化方法。将含有mCherry基因的表达载体pROK2导入发根农杆菌K599,侵染杜梨幼苗,通过注射烟草叶片、常规PCR及体视显微镜观察,检测转化效率。结果表明,利用侵染烟草叶片瞬时表达的方法,证明mCherry可以正常表达;发根农杆菌侵染40株杜梨后,再生毛状根植株为34株,再生率达85%,通过PCR鉴定,转基因毛状根长势良好且鉴定为阳性的植株有6株,阳性率达到17.6%;经体视显微镜观察,可以在转基因根中直接观察到mCherry的红色荧光。通过发根农杆菌直接侵染杜梨苗的方法,成功实现了外源基因在杜梨新生不定根中的表达,操作简便,转化率高,周期较短,为梨树基因功能研究和遗传改良提供了新型工具,为提高梨树遗传转化成功率奠定了基础。 展开更多
关键词 杜梨(pyrus betulaefolia) 发根农杆菌(Agrobacterium rhizogenes) 毛状根 遗传转化
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