Yi Lan Qiu, Zhu Li Liu, Hong Li, Song Chen, Liang Bi Chen, Hui Qiao Tian
{"title":"[Cytological observation of anther abortion and starch distribution of a cytoplasm male sterile pepper (Capsicum annum L.)].","authors":"Yi Lan Qiu, Zhu Li Liu, Hong Li, Song Chen, Liang Bi Chen, Hui Qiao Tian","doi":"","DOIUrl":null,"url":null,"abstract":"<p><p>A cytoplasm male sterile pepper (Capsicum annum L.) was examined using cytochemical method to study its pollen abortion. Thick sections of both anthers of male sterility line 8214A and its maintainer 8214B at different stages were stained using Periodic Acid-Schiff's (PAS) reaction to detect starch distribution. Anther structure and starch distribution in both anthers of male sterility and maintainer line were similar before the meiosis of microspore mother cells. After meiosis, the size of tapetal cells of fertile anthers of maintainer line increased and became high vacuolation. Abundant small starches appeared in the connective cells from tetrad stage to early stage of microspore development. At the late stage of microspore, the tapetal cells began to degenerate and the starches in the connective cells became large. Bi-cellular pollen synthesized starches after the large vacuole of vegetative cell disappeared, and abundant starches were stored in the mature pollen. In the anthers of male sterile line, meiosis of microspore mother could occurred and the tetrads could be formed in the locule, but the tetrads were extruded together because the locule could not enlarge its space. Finally, the tetrad microspores degenerated. The development of vascular tissue of the sterile anthers was normal and abundant starches were stored in the connective cells, which suggested that the function of plant transporting polysaccharide into anther was normal but tapetum could not transport the polysaccharide into locule. According to our result, the pollen abortion occurred in the tetrad stage and the abnormal development of tapetal cells might be the reason which induced tetrad microspore abortion in this male sterile pepper.</p>","PeriodicalId":87435,"journal":{"name":"Fen zi xi bao sheng wu xue bao = Journal of molecular cell biology","volume":"41 4","pages":"283-93"},"PeriodicalIF":0.0000,"publicationDate":"2008-08-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Fen zi xi bao sheng wu xue bao = Journal of molecular cell biology","FirstCategoryId":"1085","ListUrlMain":"","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
A cytoplasm male sterile pepper (Capsicum annum L.) was examined using cytochemical method to study its pollen abortion. Thick sections of both anthers of male sterility line 8214A and its maintainer 8214B at different stages were stained using Periodic Acid-Schiff's (PAS) reaction to detect starch distribution. Anther structure and starch distribution in both anthers of male sterility and maintainer line were similar before the meiosis of microspore mother cells. After meiosis, the size of tapetal cells of fertile anthers of maintainer line increased and became high vacuolation. Abundant small starches appeared in the connective cells from tetrad stage to early stage of microspore development. At the late stage of microspore, the tapetal cells began to degenerate and the starches in the connective cells became large. Bi-cellular pollen synthesized starches after the large vacuole of vegetative cell disappeared, and abundant starches were stored in the mature pollen. In the anthers of male sterile line, meiosis of microspore mother could occurred and the tetrads could be formed in the locule, but the tetrads were extruded together because the locule could not enlarge its space. Finally, the tetrad microspores degenerated. The development of vascular tissue of the sterile anthers was normal and abundant starches were stored in the connective cells, which suggested that the function of plant transporting polysaccharide into anther was normal but tapetum could not transport the polysaccharide into locule. According to our result, the pollen abortion occurred in the tetrad stage and the abnormal development of tapetal cells might be the reason which induced tetrad microspore abortion in this male sterile pepper.
采用细胞化学方法对一株细胞质雄性不育辣椒(Capsicum annum L.)花粉败育进行了研究。采用PAS (Periodic Acid-Schiff’s)反应对雄性不育系8214A及其保持系8214B花药不同时期的厚切片进行染色,检测淀粉的分布。小孢子母细胞减数分裂前,雄性不育系和保持系的花药结构和淀粉分布相似。减数分裂后,保持系可育花药绒毡层细胞大小增大,液泡化程度高。从四分体到小孢子发育早期,结缔细胞中出现了大量的小淀粉。在小孢子后期,绒毡层细胞开始退化,结缔组织细胞中的淀粉变大。双细胞花粉在营养细胞大液泡消失后合成淀粉,成熟花粉中储存了丰富的淀粉。在雄性不育系的花药中,小孢子母细胞可以发生减数分裂,四分体也可以在室中形成,但由于室不能扩大其空间,四分体被挤在一起。最后,四分体小孢子退化。不育花药维管组织发育正常,结缔细胞中储存了大量淀粉,说明植物将多糖转运到花药的功能正常,但绒毡层不能将多糖转运到花药室。结果表明,花粉败育发生在四分体阶段,绒毡层细胞发育异常可能是导致该雄不育辣椒四分体小孢子败育的原因。