Female parthenogenetic apomixis and androsporogenesis in Douglas-fir embryonal initials in an artificial sporangium.

Sexual Plant Reproduction Pub Date : 2011-12-01 Epub Date: 2011-06-05 DOI:10.1007/s00497-011-0171-2
Don J Durzan
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引用次数: 2

Abstract

Control of female parthenogenetic apomixis and androsporogenesis of Douglas-fir embryonal initials was studied using an experimental culture system in which changes in growth condition can mediate changes in cell identity and outcomes. This culture system constitutes an artificial sporangium in which myriad culture conditions can be simulated and should be applicable for research on a variety of gymnosperms. In this study, embryonal initials from developing seeds from two Douglas-fir trees were rescued and became reprogrammed for female parthenogenetic apomixis (fPA) and parthenogenetic androsporogenesis (mPA). Female PA was initiated by endomitosis forming a binucleate cell with a diploid egg-equivalent and an apoptotic ventral canal nucleus in an archegonial tube. Egg-equivalent nuclei formed cells (parthenotes) that were discharged into an aqueous culture medium. Parthenotes developed axial tiers atypical of early embryogenesis in seeds. Earlier in the year, androsporangial tubes were parthenogenetically differentiated and released monads, dyads, triads, and tetrads into the culture medium. Spores showed chromosomal aberrations. PA demonstrated a temporal separation in gender expression (dichogamy). Embryonal initials brought forward and by-passed the long juvenile phases normally needed for cells to develop into trees and express reproductive maturity. Expressions of fPA and mPA indicated that the specialized culture flasks served as an artificial sporangium (AS). Awareness is raised for the value of an AS for research in gymnosperm life cycles and as a teaching and research laboratory.

人工孢子囊内道格拉斯杉木胚首粒的雌孤雌无融合与雄孢子发生。
在生长条件变化介导细胞特性和结果变化的实验培养系统中,研究了道格拉斯杉木胚首字母雌性孤雌无融合和雄孢子发生的控制。该培养体系构成了一个人工孢子囊,可以模拟多种培养条件,可用于多种裸子植物的研究。本研究从两棵道格拉斯杉树的发育种子中提取胚首字母,并将其重新编程为雌性孤雌无融合(fPA)和雌性孤雌雄性孢子发生(mPA)。雌性PA由卵母细胞内分裂形成双核细胞,具有二倍体卵细胞等同物和凋亡的腹管核。与卵子相当的细胞核形成的细胞(孤雌)被放入水培养液中。孤雌体发育轴层,种子早期胚发生不典型。今年早些时候,雄孢子囊管被孤雌分化,并将单核、二体、三体和四体释放到培养基中。孢子显示染色体畸变。PA表现出性别表达的时间分离(二分法)。胚胎的首字母向前推进,绕过了细胞发育成树和表达生殖成熟所需的长幼期。fPA和mPA的表达表明专用培养瓶作为人工孢子囊(as)。提高了对裸子植物生命周期研究和作为教学和研究实验室的价值的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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