安徽农业科学
安徽農業科學
안휘농업과학
JOURNAL OF ANHUI AGRICULTURAL SCIENCES
2009年
31期
15566-15569
,共4页
徐青%秦恳%张炎%祁建钊
徐青%秦懇%張炎%祁建釗
서청%진간%장염%기건쇠
枸杞%雄性不育%营养物质%花粉败育
枸杞%雄性不育%營養物質%花粉敗育
구기%웅성불육%영양물질%화분패육
Lycium barbanun L.%Male sterility%Nutrient%Pollen abortion
[目的]研究不育枸杞花药营养物质代谢与花粉败育的关系,为枸杞不育系花粉败育机制研究提供理论依据.[方法]运用半薄切片和细胞化学染色技术,对枸杞不育系和可育系花药营养物质积累和分布状况进行观察和比较分析.[结果]与可育系相比,不育系花药减数分裂后,淀粉粒在药隔薄壁组织中骤减,表皮和药室内壁中的淀粉粒也大幅减少,绒毡层没有脂质积累;绒毡层和四分孢子先后发生液泡化,进入解体过程.[结论]药隔维管束多糖供应下降,导致绒毡层细胞糖脂转化机制发生紊乱,由此引发了绒毡层提前进入细胞程序性死亡过程,四分孢子因营养匮乏,最终解体.
[目的]研究不育枸杞花藥營養物質代謝與花粉敗育的關繫,為枸杞不育繫花粉敗育機製研究提供理論依據.[方法]運用半薄切片和細胞化學染色技術,對枸杞不育繫和可育繫花藥營養物質積纍和分佈狀況進行觀察和比較分析.[結果]與可育繫相比,不育繫花藥減數分裂後,澱粉粒在藥隔薄壁組織中驟減,錶皮和藥室內壁中的澱粉粒也大幅減少,絨氈層沒有脂質積纍;絨氈層和四分孢子先後髮生液泡化,進入解體過程.[結論]藥隔維管束多糖供應下降,導緻絨氈層細胞糖脂轉化機製髮生紊亂,由此引髮瞭絨氈層提前進入細胞程序性死亡過程,四分孢子因營養匱乏,最終解體.
[목적]연구불육구기화약영양물질대사여화분패육적관계,위구기불육계화분패육궤제연구제공이론의거.[방법]운용반박절편화세포화학염색기술,대구기불육계화가육계화약영양물질적루화분포상황진행관찰화비교분석.[결과]여가육계상비,불육계화약감수분렬후,정분립재약격박벽조직중취감,표피화약실내벽중적정분립야대폭감소,융전층몰유지질적루;융전층화사분포자선후발생액포화,진입해체과정.[결론]약격유관속다당공응하강,도치융전층세포당지전화궤제발생문란,유차인발료융전층제전진입세포정서성사망과정,사분포자인영양궤핍,최종해체.
[ Objective] The aim was to research the relation between nutrient metabolism in anther and pollen abortion of male sterility in Lycium barbarum L. , and provide some theoretical reference for studying pollen abortion mechanism of male sterility in Lycium barbarum L.. [ Method ] Using semi-thin section and cytochemistry technology, the nutrient accumulation and distribution of anther of male sterility and fertile lines in Lycium barbanun L. were observed and compared. [ Result] The result showed that after meiosis, starch grains in the connective parenchyma of anther decreased sharply, and starch grain in the epidermis and endothecium were also greatly decreased, while almost no lipid accumulated in tapetal cell in male sterility lines compared to the fertile lines. The tapetum and microspore tetrad was vaCuolation, and entered the disintegrating process. [Conclusion] The polysaccharide of anther vascular supplying decreased led to the mechanism of glycolipid translating lipid in tapetal cells appeared disorder, which triggered the tapetal cells disintegrating ahead of time, and the microspore of tetrad due to lack of nutrition disintegrated ultimately.