Talent Nadia
Department of Natural History, Royal Ontario Museum, 100 Queen's Park, Toronto, Ontario, Canada.
Theory Biosci. 2009 May;128(2):121-38. doi: 10.1007/s12064-009-0061-4. Epub 2009 Mar 5.
Gametophytic apomixis, asexual reproduction involving megagametophytes, occurs in many flowering-plant families and as several variant mechanisms. Developmental destabilization of sexual reproduction as a result of hybridization and/or polyploidy appears to be a general trigger for its evolution, but the evidence is complicated by ploidy-level changes and hybridization occurring with facultative apomixis. The repeated origins of polyploid apomictic complexes in the palaeopolyploid Maloid Rosaceae suggest a new model of evolutionary transitions that may have wider applicability. Two conjectures are fundamental to this model: (1) that as previously suggested by Rutishauser, like many sexual flowering plants the polyploid apomicts require maternal-paternal balance in the second fertilization event that gives rise to the endosperm, and (2) that the observed variation in endosperm ploidy levels relates less to flexibility late in development than to the known variation in developmental origin of the megagametophyte between mechanisms loosely categorized as diplospory and apospory. The model suggests explanations for the relative frequencies of apospory and diplospory, and for the wide but incomplete associations of apospory with a pollination requirement (pseudogamy) and of diplospory with autonomous development of the endosperm. It is suggested that pollination from other taxa may provide some adaptive advantage to pseudogamous apospory.
配子体无融合生殖是一种涉及雌配子体的无性繁殖方式,存在于许多开花植物科中,有多种变异机制。杂交和/或多倍体导致的有性生殖发育不稳定似乎是其进化的普遍触发因素,但由于倍性水平变化以及兼性无融合生殖中发生的杂交,证据变得复杂。古多倍体苹果蔷薇科中多倍体无融合生殖复合体的多次起源提示了一种可能具有更广泛适用性的进化转变新模型。该模型有两个基本猜想:(1)如鲁蒂沙伊泽之前所提出的,与许多有性开花植物一样,多倍体无融合生殖体在产生胚乳的第二次受精事件中需要母本 - 父本平衡;(2)观察到的胚乳倍性水平变化与发育后期的灵活性关系较小,而与在大致归类为二倍体孢子生殖和无孢子生殖的机制之间雌配子体发育起源的已知变化有关。该模型解释了无孢子生殖和二倍体孢子生殖的相对频率,以及无孢子生殖与授粉需求(假受精)和二倍体孢子生殖与胚乳自主发育之间广泛但不完全的关联。有人认为,来自其他类群的授粉可能为假受精无孢子生殖提供一些适应性优势。