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HOW TO PREVENT CHEATING: A DIGESTIVE SPECIALIZATION TIES MUTUALISTIC PLANT-ANTS TO THEIR ANT-PLANT PARTNERS

机译:如何防止作弊:消化专业将多态植物与他们的蚂蚁植物伙伴联系在一起

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摘要

Mutualisms often involve reciprocal adaptations of both partners. Acacia ant-plants defended by symbiotic Pseudomyrmex ant mutualists secrete sucrose-free extrafloral nectar, which is unattractive to generalists. We aimed to investigate whether this extrafloral nectar can also exclude exploiters, that is nondefending ant species. Mutualist workers discriminated against sucrose whereas exploiters and generalists with no affinity toward Acacia myrmecophytes preferred sucrose, because mutualist workers lacked the sucrose-cleaving enzyme invertase, which is present in workers of the other two groups. Sucrose uptake induced invertase activity in workers of parasites and generalists, but not mutualists, and in larvae of all species: the mutualists loose invertase during their ontogeny. This reduced metabolic capacity ties the mutualists to their plant hosts, but it does not completely prevent the mutualism from exploitation. We therefore investigated whether the exploiters studied here are cheaters (i.e., have evolved from former mutualists) or parasites (exploiters with no mutualistic ancestor). A molecular phylogeny demonstrates that the exploiter species did not evolve from former mutualists, and no evidence for cheaters was found. We conclude that being specialized to their partner can prevent mutualists from becoming cheaters, whereas other mechanisms are required to stabilize a mutualism against the exploitation by parasites.
机译:互惠关系经常涉及双方的相互适应。由共生Pseudomyrmex蚂蚁互助者捍卫的金合欢蚂蚁植物分泌不含蔗糖的花外花蜜,这对通才没有吸引力。我们旨在调查这种花外花蜜是否也可以排除剥削者,即无防御的蚂蚁物种。互助劳动者歧视蔗糖,而对金合欢属植物无亲和力的开发者和通才选择蔗糖,因为互助劳动者缺乏蔗糖分解酶转化酶,这在另两组工人中都存在。蔗糖的摄取在寄生虫和通才的工人中,而不是在共生者中,以及在所有物种的幼虫中,都诱导了转化酶的活性:共生者在个体发育过程中失去了转化酶。这种降低的代谢能力将共产主义者与他们的植物宿主联系起来,但是并不能完全防止共生被剥削。因此,我们调查了这里研究的剥削者是作弊者(即从前互惠主义者进化而来)还是寄生虫(没有互惠祖先的剥削者)。分子系统学研究表明,剥削者物种并非从以前的互助主义者进化而来,也没有发现作弊者的证据。我们得出的结论是,专心于他们的伴侣可以防止共产主义者成为骗子,而还需要其他机制来稳定共生主义以防止被寄生虫剥削。

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