不同形态三叶草茎部黄酮类化合物存在下丛枝菌根真菌的发育

J. Scervino, M. A. Ponce, I. Mónica, H. Vierheilig, J. Ocampo, A. Godeas
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引用次数: 16

摘要

研究了从非丛生菌根(AM)接种的三叶草芽中分离得到的3-甲氧基-5,6,7,8-羟基-4′羟基黄酮(NMHTV)和5,6,7,8-羟基-3′甲氧基黄酮(MH-1)的效果;5,6,7,8-羟基-4'-羟基黄酮(MH-2);5,7-羟基-3,4'-甲氧基黄酮(MH-3);从三叶草(Trifolium repens)芽中分离得到的AM真菌,对孢子萌发、菌丝长度、菌丝分枝和辅助细胞簇数或次生孢子数(共生前阶段)和番茄(Lycopersicum esculentum)真菌的进入点数和AM定植根的百分比(共生阶段)进行了研究。从菌根定殖的三叶草茎中分离的黄酮类化合物对内生真菌Gigaspora和Glomus的共生前和共生阶段的影响不显著。从非AM三叶草茎中分离得到的类黄酮NMHTV对孢子萌发率没有影响,但显著提高了Gi共生前阶段的其他步骤(P < 0.05)。使用浓度为2µM的玛格丽塔芽孢。Gi的共生阶段。当添加2µM的类黄酮NMHTV时,玛格丽塔的生长也显著增加。黄酮类化合物对藓属、内藓属和Gi的共生前发育无影响。除浓度为8 uM时外,均抑制了Gi的菌丝长度。rosea。这些结果提示类黄酮NMHTV可能与番茄根系对Gi形成AM的敏感性有关。玛格丽塔。外源施用AM定殖后三叶草芽中新合成的类黄酮MH-1、MH-2和MH-3对番茄AM共生前和共生阶段的刺激缺失,表明AM共生的自调节可能至少部分是由于AM定殖植物中刺激AM共生的类黄酮消失所致。
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DEVELOPMENT OF ARBUSCULAR MYCORRHIZAL FUNGI IN THE PRESENCE OF DIFFERENT PATTERNS OF Trifolium repens SHOOT FLAVONOIDS
We tested the effects of the flavonoid 3-methoxi-5,6,7,8-hydroxy-4'hydroxy flavone (NMHTV) isolated from shoots of non arbuscular mycorrhizal (AM) inoculated clover, and of the flavonoids 5,6,7,8-hydroxy-3-methoxy flavone (MH-1); 5,6,7,8-hydroxy-4'-hydroxy flavone (MH-2); and 5,7-hydroxy-3,4'-methoxy flavone (MH-3); isolated from AM clover {Trifolium repens) shoots, on spore germination, hyphal length, hyphal branches and the number of cluster of auxiliary cells or the number of secondary spores (Presymbiotic stage) and on the number of entry points and the percentage of AM colonized root of tomato (Lycopersicum esculentum) by the AM fungi Gigaspora rosea, Giaspora margarita, Glomus mosseae and Glomus intraradices (Symbiotic stage). Non significant effects of the flavonoids isolated from the shoot of mycorrhizal colonized clover on the presymbiotic and symbiotic stages of Gigaspora and Glomus endophytes were found. The flavonoid NMHTV isolated from non AM clover shoot, did not affect the percentage of germination of spores but significantly increased (P < 0.05) the other steps of the presymbiotic stage of Gi. margarita spores when 2 µM concentration was used. The symbiotic stage of Gi. margarita was also significantly increased when 2 µM of the flavonoid NMHTV was applied. This flavonoid had no effect on the presymbiotic development of G. mosseae, G. intraradices and Gi. rosea except when 8 uM concentration was used, which inhibited the hyphal length of Gi. rosea. These results suggest the possible implication of the flavonoid NMHTV in the susceptibility of tomato roots to the AM formation by Gi. margarita. The absence of stimulation of the AM presymbiotic and symbiotic stages in tomato by exogenous application of the newly synthesized flavonoids MH-1, MH-2, and MH-3, in clover shoots after AM colonization, indicated that the autorregulation of the AM symbiosis can be, at least partially, due to the disappearance of flavonoids in AM colonized plants that stimulated the AM symbiosis.
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