Wilson Andrea M, Wilken P Markus, van der Nest Magriet A, Steenkamp Emma T, Wingfield Michael J, Wingfield Brenda D
Department of Genetics, Forestry and Agricultural Biotechnology Institute, University of Pretoria, Private Bag X20, Hatfield, Pretoria, South Africa, 0028;
Department of Microbiology and Plant Pathology, Forestry and Agricultural Biotechnology Institute, University of Pretoria, Private Bag X20, Hatfield, Pretoria 0028, South Africa.
IMA Fungus. 2015 Jun;6(1):207-14. doi: 10.5598/imafungus.2015.06.01.13. Epub 2015 Jun 19.
Sexual reproduction is notoriously complex in fungi with species able to produce sexual progeny by utilizing a variety of different mechanisms. This is even more so for species employing multiple sexual strategies, which is a surprisingly common occurrence. While heterothallism is relatively well understood in terms of its physiological and molecular underpinnings, homothallism remains greatly understudied. This can be attributed to it involving numerous genetically distinct mechanisms that all result in self-fertility; including primary homothallism, pseudohomothallism, mating type switching, and unisexual reproduction. This review highlights the need to classify these homothallic mechanisms based on their molecular determinants and illustrates what is currently known about the multifaceted behaviours associated with homothallism.
众所周知,真菌的有性生殖非常复杂,不同物种能够通过多种不同机制产生有性后代。对于采用多种有性策略的物种来说更是如此,这一现象出奇地普遍。虽然异宗配合在其生理和分子基础方面相对得到了较好的理解,但同宗配合仍未得到充分研究。这可能是因为它涉及许多遗传上不同的机制,这些机制都导致了自育性;包括初级同宗配合、假同宗配合、交配型转换和单性生殖。这篇综述强调了根据其分子决定因素对这些同宗配合机制进行分类的必要性,并阐述了目前已知的与同宗配合相关的多方面行为。
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