期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Effects of Ion Implantation on in Vitro Pollen Germination and Cellular Organization of Pollen Tube in Pinus thunbergii Parl. (Japanese Black Pine) 被引量:3
1
作者 李国平 黄群策 +3 位作者 杨鹭生 代西梅 秦广雍 霍裕平 《Plasma Science and Technology》 SCIE EI CAS CSCD 2006年第5期618-623,共6页
Low-energy ion implantation, as a new technology to produce mutation in plant breeding, has been widely applied in agriculture in China. But so far there is a little understanding of the underlying mechanisms responsi... Low-energy ion implantation, as a new technology to produce mutation in plant breeding, has been widely applied in agriculture in China. But so far there is a little understanding of the underlying mechanisms responsible for its biological effects at the cellular level. Here we report the biological effects of a nitrogen ion beams of 30 keV on the pollen grains of Pinus thunbergii Parl. In general, ion implantation inhibited pollen germination. The dose-response curve presented a particular saddle-like pattern. Ion implantation also changed the dimension of the elongated tubes and significantly induced tip swelling. Confocal microscopy indicated that the pollen tube tips in P. thunbergii contained an enriched network of microtubules. Ion implantation led to the disruption of microtubules especially in swollen tips. Treatment with colchicine demonstrated that tip swelling was caused by the disruption of microtubules in the tip, indicating a unique role for microtubules in maintaining the tip integrality of the pollen tube in conifer. Our results suggest that ion implantation induce the disruption of microtubule organization in pollen and pollen tubes and subsequently cause morphological abnormalities in the pollen tubes. This study may provide a clue for further investigation on the interaction between low-energy ion beams and pollen tube growth. 展开更多
关键词 ion implantation ion beam pollen tube CYTOSKELETON MICROTUBULES pinus thunbergii parl
下载PDF
Ion Implantation Hampers Pollen Tube Growth and Disrupts Actin Cytoskeleton Organization in Pollen Tubes of Pinus thunbergii 被引量:1
2
作者 李国平 黄群策 +1 位作者 杨鹭生 秦广雍 《Plasma Science and Technology》 SCIE EI CAS CSCD 2008年第3期391-393,共3页
Pollen grains of Pinus thunbergii Parl. (Japanese black pine) were implanted with 30 keV nitrogen ion beams and the effects of nitrogen ion implantation on pollen tube growth in vitro and the organization of actin c... Pollen grains of Pinus thunbergii Parl. (Japanese black pine) were implanted with 30 keV nitrogen ion beams and the effects of nitrogen ion implantation on pollen tube growth in vitro and the organization of actin cytoskeleton in the pollen tube cell were investigated using a confocal laser scanning microscope after fluorescence labeling. Treatment with ion implantation significantly blocked pollen tube growth. Confocal microscopy showed that ion implantation disrupted actin filament cytoskeleton organization in the pollen tube. It was found that there was a distinct correlation between the inhibition of pollen tube growth and the disruption of actin cytoskeleton organization, indicating that an intact actin cytoskeleton is essential for continuous pollen tube elongation in Pinus thunbergii. Although the detailed mechanism for the ion-implantation-induced bioeffect still remains to be elucidated, the present study assumes that the cytoskeleton system in pollen grains may provide a key target in response to ion beam implantation and is involved in mediating certain subsequent cytological changes. 展开更多
关键词 ion implantation pollen tube CYTOSKELETON actin filament pinus thunbergii parl
下载PDF
黑松针叶束促萌硬枝扦插繁殖技术 被引量:1
3
作者 闫亮 张德 +3 位作者 景慎诚 王爱 安丰敬 郭建和 《林业科技通讯》 2022年第8期108-109,共2页
选择当年生黑松(Pinus thunbergii Parl.)枝条做插穗,通过抹顶芽,促进插穗顶端针叶束萌发新芽,产生生长素刺激插穗基部产生愈合组织生根,插条生根率达91.2%,大田移栽育苗成活率89.7%,解决了生产中黑松不能硬枝扦插繁殖的问题。
关键词 黑松 pinus thunbergii parl. 针叶束促萌 硬枝扦插
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部