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A Nightmare for Males? A Maternally Transmitted Male-Killing Bacterium and Strong Female Bias in a Green Lacewing
Masayuki Hayashi1, Masaya Watanabe2, Fumiko Yukuhiro2
1Graduate School of Horticulture, Chiba University, Matsudo, Chiba, Japan.
Abstract:
For maternally transmitted microbes, a female-biased host sex ratio is of reproductive advantage. Here we found a strong female bias in a field population of the green lacewing, Mallada desjardinsi (Insecta; Neuroptera). This bias was attributed to the predominance of individuals harboring a maternally inherited male-killing bacterium that was phylogenetically closely related to the plant-pathogenic Spiroplasma phoeniceum and Spiroplasma kunkelii. Among 35 laboratory-reared broods produced by wild-caught females, 21 broods (60%)-all infected with Spiroplasma-consisted of only females (940 individuals). Among 14 broods consisting of both males and females (516 and 635 individuals, respectively), 4 broods were doubly infected with Spiroplasma and Rickettsia, 6 broods were singly infected with Rickettsia, and 3 broods were uninfected (remaining one brood was unknown). Mortality during embryonic and larval development was prominent in all-female broods but not in normal sex ratio broods. Following antibiotic treatment on all-female broods, mortality was significantly reduced and the sex ratio was restored to 1:1. Strong expression and high prevalence of this male-killer is remarkable considering its low density (~10-5-10-4 cells per host mitochondrial gene copy based on quantitative PCR). In addition, a bacterium closely related to Rickettsia bellii was present in 25 of 34 broods (73.5%), irrespective of the sex ratio, with the infection density comparable to other cases of endosymbiosis (~10-2-10-1 cells per mitochondrial gene copy). Higher density of Rickettsia than Spiroplasma was also demonstrated by electron microscopy which visualized both Spiroplasma-like cells and Rickettsia-like cells inside and outside the ovarian cells.
Insights
A male-killing Spiroplasma bacterium causes a female-biased sex ratio in green lacewings (Mallada desjardinsi). Antibiotic treatment restored the natural 1:1 sex ratio and reduced mortality in affected broods.
Area of Science:
- Entomology
- Microbiology
- Evolutionary Biology
Background:
- Maternally transmitted microbes can influence host sex ratios, often favoring females for reproductive advantage.
- A female-biased sex ratio was observed in a field population of the green lacewing, Mallada desjardinsi.
- This bias was investigated for microbial causes, particularly maternally inherited symbionts.
Purpose of the Study:
- To identify the microbial agent responsible for the female-biased sex ratio in Mallada desjardinsi.
- To investigate the impact of this microbial infection on host development and survival.
- To determine the phylogenetic relationship of the identified microbe and its prevalence.
Main Methods:
- Laboratory rearing of broods from wild-caught Mallada desjardinsi females.
- Microbial screening using quantitative PCR and electron microscopy to detect Spiroplasma and Rickettsia.
- Antibiotic treatment of affected broods to assess impact on sex ratio and mortality.
Main Results:
- A high prevalence (60%) of Spiroplasma infection was found in broods with a female-biased sex ratio.
- Spiroplasma-infected broods exhibited increased embryonic and larval mortality.
- Antibiotic treatment significantly reduced mortality and restored a 1:1 sex ratio in all-female broods.
- Rickettsia was also prevalent but did not appear to influence the sex ratio.
Conclusions:
- A maternally inherited Spiroplasma bacterium, related to plant pathogens, is the primary cause of male-killing in Mallada desjardinsi.
- This male-killing Spiroplasma, despite its low density, effectively manipulates host sex ratio and impacts development.
- The co-occurrence of Rickettsia suggests complex microbial interactions within the host.
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