Erthal Milton, Silva Carlos Peres, Cooper Richard M, Samuels Richard Ian
Instituto Superior de Tecnologia em Ciências Agrárias - FAETEC, Campos dos Goytacazes, RJ, Brazil.
Comp Biochem Physiol B Biochem Mol Biol. 2009 Jan;152(1):54-9. doi: 10.1016/j.cbpb.2008.09.086. Epub 2008 Sep 24.
The production of enzymes and the colonization of leaves by Leucoagaricus gongylophorus were investigated to further understand the digestive interactions of leaf-cutting ant colonies. The enzymes detected were indicative of a saprophytic origin of this fungus, producing all the enzymes necessary for plant tissue breakdown. Enhanced activities of certain enzymes in the fungus garden extracts may be due to the particular behaviour of the adult worker ants that concentrate fungal acquired enzymes in the rectal fluid and subsequently defaecate these enzymes onto the leaves. The production of chitinases by the fungus may be an ancestral vestige of lower attines, and may have a role as agonists of invading microbes. Growth of the fungus on plant cell wall medium resulted in highest enzyme activity against pectin, reflecting the fact that polygalacturonans comprise the main matrix of the primary plant cell wall. SEM shows that L. gongylophorus does not form specialized structures for cell wall penetration, but gains access to the inner plant tissue at the cut edges of the leaf fragments. Enzymes secreted by the fungus were compared to those seen in larval and adult leaf-cutting ants, demonstrating the inter-dependence of the symbiotic relationship between the ants and their fungi.
为了进一步了解切叶蚁群落的消化相互作用,对亮白鬼伞产生酶的情况以及其在叶片上的定殖进行了研究。检测到的酶表明这种真菌起源于腐生菌,能产生分解植物组织所需的所有酶。菌圃提取物中某些酶活性的增强可能归因于成年工蚁的特殊行为,它们将从真菌获取的酶集中在直肠液中,随后将这些酶排泄到叶片上。真菌产生几丁质酶可能是低等切叶蚁祖先的遗迹,并且可能作为入侵微生物的激动剂发挥作用。真菌在植物细胞壁培养基上生长时,对果胶的酶活性最高,这反映出聚半乳糖醛酸构成了植物初生细胞壁的主要基质这一事实。扫描电子显微镜显示,亮白鬼伞不会形成用于穿透细胞壁的特殊结构,而是在叶片碎片的切口边缘进入植物内部组织。将真菌分泌的酶与幼虫和成年切叶蚁体内的酶进行比较,证明了蚂蚁与其真菌之间共生关系的相互依赖性。