期刊
SOUTH AFRICAN JOURNAL OF BOTANY
卷 154, 期 -, 页码 32-40出版社
ELSEVIER
DOI: 10.1016/j.sajb.2023.01.004
关键词
Fluorescence microscopy; ISSR marker; Pollen grain histochemistry; Pollen; ovule ratio; Reproductive efficiency index; Stigma receptivity
The study aimed to determine the preferential reproduction mode of Catharanthus roseus using different genotypes and clarify the relative importance of allogamy and autogamy. The research showed that C. roseus has a mixed mode of reproduction, with allogamy being more prevalent and efficient. The high genetic diversity also supports allogamy as the primary mode of reproduction, while autogamy serves as a reproductive guarantee.
Despite the medicinal importance of Catharanthus roseus [L.] G. Don., the literature is still controversial about its mode of reproduction. The breeding of species depends on this information. The purpose of this study was to ascertain the preferential reproduction mode of C. roseus by using different genotypes of this species. We also sought to verify the relative importance of allogamy and autogamy on the species reproduction. Therefore, it was necessary to estimate the pollen:ovule ratio, the rates of open pollination and natural selffertilization, the efficiency of allogamy and autogamy, and pollen viability and stigma receptivity. Furthermore, we applied fluorescence microscopy to analyze the emission and development of pollen tubes in vivo in floral buds and investigated the histochemistry of the pollen grains. Finally, through ISSR markers, we estimated the genetic diversity of the genotypes. In general, C. roseus has a mixed reproduction mode, with the possible simultaneous occurrence of allogamy and autogamy. However, allogamy was much more prevalent, and it was also more efficient as a reproductive strategy in the genotypes. The high magnitude of genetic diversity found corroborates allogamy as the most prevalent mode of reproduction. Nevertheless, autogamy occurred in all the genotypes, although the seed production efficiency was low. Autogamy can be understood as a supposed reproductive guarantee mechanism by C. roseus. (c) 2023 SAAB. Published by Elsevier B.V. All rights reserved.
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