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Evidence for mitochondrial gene control of mating types in Phytophthora
1Dept. of Plant and Environmental Protection Services, Beaumont Agricultural Research Center, University of Hawaii at Manoa, Hilo, HI 96720, USA.
Abstract:
When protoplasts carrying metalaxyl-resistant (Mr) nuclei from the A1 isolate of Phytophthora parasitica were fused with protoplasts carrying chloroneb-resistant (Cnr) nuclei from the A2 isolate of the same species, fusion products carrying Mr nuclei were either the A2 or A1A2 type, while those carrying Cnr nuclei were the A1, A2, or A1A2 type. Fusion products carrying Mr and Cnr nuclei also behaved as the A1, A2, or A1A2 type. The result refutes the hypothesis that mating types in Phytophthora are controlled by nuclear genes. When nuclei from the A1 isolate of P. parasitica were fused with protoplasts from the A2 isolate of the same species and vice versa, all of the nuclear hybrids expressed the mating type characteristics of the protoplast parent. The same was true when the nuclei from the A1 isolate of P. parasitica were fused with the protoplasts from the A0 isolate of Phytophthora capsici and vice versa. These results confirm the observation that mating type genes are not located in the nuclei and suggest the presence of mating type genes in the cytoplasms of the recipient protoplasts. When mitochondria from the A1 isolate of P. parasitica were fused with protoplasts from the A2 isolate of the same species, the mating type of three out of five regenerated protoplasts was changed to the A1 type. The result demonstrated the decisive effect of mitochondrial donor sexuality on mating type characteristics of mitochondrial hybrids and suggested the presence of mating type genes in mitochondria. All of the mitochondrial hybrids resulting from the transfer of mitochondria from the A0 isolate of P. capsici into protoplasts from the A1 isolate of P. parasitica were all of the A0 type. The result supports the hypothesis of the presence of mating type genes in mitochondria in Phytophthora.
Insights
Mating types in Phytophthora are not controlled by nuclear genes. This study suggests that mating type genes are located in the cytoplasm and mitochondria, influencing sexual characteristics in Phytophthora species.
Area of Science:
- Mycology
- Plant Pathology
- Genetics
Background:
- Phytophthora species exhibit distinct mating types (A1 and A2) crucial for sexual reproduction.
- The genetic basis of mating type determination in Phytophthora has been a subject of ongoing research.
- Previous hypotheses suggested nuclear gene control of mating types.
Purpose of the Study:
- To investigate the genetic location of mating type determination in Phytophthora parasitica and Phytophthora capsici.
- To refute or support the hypothesis of nuclear gene control over mating types.
- To explore the potential role of cytoplasmic and mitochondrial factors in mating type inheritance.
Main Methods:
- Protoplast fusion experiments involving isolates with different resistance markers (metalaxyl-resistant, chloroneb-resistant).
- Nuclear and mitochondrial transfer between different Phytophthora species and isolates.
- Analysis of mating type characteristics in resulting fusion products and hybrids.
Main Results:
- Nuclear hybrids predominantly expressed the mating type of the protoplast parent, refuting nuclear gene control.
- Cytoplasmic factors in recipient protoplasts influenced mating type expression.
- Mitochondrial transfer experiments demonstrated a decisive effect of mitochondrial donor sexuality on mating type, supporting the presence of mating type genes in mitochondria.
Conclusions:
- Mating type determination in Phytophthora is not controlled by nuclear genes.
- Cytoplasmic and mitochondrial components play significant roles in determining mating type characteristics.
- Mitochondria are likely to harbor mating type genes in Phytophthora.
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