枣树胚胎细胞的雌性孤雌无融合和雄孢子发生孤雌生殖:人工孢子囊内的子代和无性异孢子。

Sexual Plant Reproduction Pub Date : 2012-09-01 Epub Date: 2012-06-05 DOI:10.1007/s00497-012-0189-0
Don J Durzan
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引用次数: 4

摘要

裸子植物的细胞命运、发育时间和生殖与无融合发育的发生受到体外培养条件的影响。本研究在黑暗中通过单细胞瓶颈的放大细胞悬液和人工孢子囊(AS)中,利用Araucaria angustifolia的胚胎母粒,研究了雌性孤雌生殖无融合(fPA)、雄孢子生殖孤雌生殖(mAP)和后代发生。在23-25°C和黑暗条件下,根据定义的营养、激素和前馈-自适应反馈过程控制进行表达。在fPA中,胚胎初始细胞核经历有丝分裂和无丝分裂,形成一个二倍体卵细胞当量和一个凋亡的腹管核在转分化的卵母细胞管中。卵当量细胞作为孤雌孢子排出并扩散到水培养基中,随后发生无核针叶树型前胚发生。这取代了原胚发生的多形和中心特征。利用胚首字母的原生质融合在多孔板上重建fPA的异核表达。在mAP中,恢复性减数分裂(自分裂)负责雄性孢子的发生和单核、二体、四体和多体的排出。在子代的展示中,生殖发育被带到一个更早的个体发育阶段,并通过胚胎的首字母表达。秋水仙碱增加了多倍体,但雄孢子的形成变得异常和破碎。异常的自融合导致染色体束的形成,从而导致胚胎首字母的基因组沉默、细胞分裂和分裂微核细胞的形成。雌雄孤雌孢子在水环境中的分散表现为异型性无性异孢子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Female parthenogenetic apomixis and androsporogenetic parthenogenesis in embryonal cells of Araucaria angustifolia: interpolation of progenesis and asexual heterospory in an artificial sporangium.

Cell fate, development timing and occurrence of reproductive versus apomictic development in gymnosperms are shown to be influenced by culture conditions in vitro. In this study, female parthenogenetic apomixis (fPA), androsporogenetic parthenogenesis (mAP) and progenesis were demonstrated using embryonal initials of Araucaria angustifolia in scaled-up cell suspensions passing through a single-cell bottleneck in darkness and in an artificial sporangium (AS). Expression was based on defined nutrition, hormones and feedforward-adaptive feedback process controls at 23-25 °C and in darkness. In fPA, the nucleus of an embryonal initial undergoes endomitosis and amitosis, forming a diploid egg-equivalent and an apoptotic ventral canal nucleus in a transdifferentiated archegonial tube. Discharge of egg-equivalent cells as parthenospores and their dispersal into the aqueous culture medium were followed by free-nuclear conifer-type proembryogenesis. This replaced the plesiomorphic and central features of proembryogenesis in Araucariaceae. Protoplasmic fusions of embryonal initials were used to reconstruct heterokaryotic expressions of fPA in multiwell plates. In mAP, restitutional meiosis (automixis) was responsible for androsporogenesis and the discharge of monads, dyads, tetrads and polyads. In a display of progenesis, reproductive development was brought to an earlier ontogenetic stage and expressed by embryonal initials. Colchicine increased polyploidy, but androspore formation became aberrant and fragmented. Aberrant automixis led to the formation of chromosomal bouquets, which contributed to genomic silencing in embryonal initials, cytomixis and the formation of pycnotic micronucleated cells. Dispersal of female and male parthenospores displayed heteromorphic asexual heterospory in an aqueous environment.

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Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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