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Interaction of Heterodera glycines and Glomus mosseae on Soybean

机译:杂种大豆中的甘氨酸和Gromus mosseae在大豆上的相互作用

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摘要

The effects of the arbuscular mycorrhizal (AM) fungus Glomus mosseae on Heterodera glycines-soybean interactions were investigated in greenhouse experiments. Mycorrhizal and nonmycorrhizal soybean cultivars that were either resistant or susceptible to H. glycines were exposed to initial nematode population densities (Pi) of 0, 100, 1,000, or 10,000 eggs and infective juveniles. Soybean growth, nematode reproduction, and AM fungal colonization were determined after 35 (experiment I) and 83 (experiment II) days. Soybean shoot and root weights were reduced an average 29% across H. glycines Pi but were 36% greater overall in the presence of G. mosseae. Analyses of variance indicated that root colonization and stimulation of soybean growth by G. mosseae were inhibited at high H. glycines Pi, while the combined effects of the nematode and fungus on soybean growth were best described as additive in linear regression models. No evidence for increased nematode tolerance of mycorrhizal soybean plants was observed. Nematode population densities and reproduction were lower on a nematode-resistant soybean cultivar than on a susceptible cultivar, but reproduction was comparable on mycorrhizal and nonmycorrhizal plants. Root colonization by G. mosseae was reduced at high nematode Pi. The results suggest that nematode antagonism to the mycorrhizal symbiosis is a more likely consequence of interactions between H. glycines and AM fungi on soybean than is nematode suppression by the fungus.
机译:在温室实验中研究了丛枝菌根真菌(AM)真菌Glomus mosseae对异型藻甘氨酸-大豆相互作用的影响。对甘氨酸杆菌有抗性或易感性的菌根和非菌根大豆品种都暴露于0、100、1,000或10,000个卵和感染性幼虫的初始线虫种群密度(Pi)。在第35天(实验I)和第83天(实验II)后测定了大豆的生长,线虫繁殖和AM真菌定植。在甘氨酸毕赤酵母中,大豆芽和根的重量平均减少了29%,但在存在G. mosseae的情况下,总体上增加了36%。方差分析表明,高糖甘氨酸Pi抑制了G. mosseae对根的定殖和大豆生长的刺激,而线虫和真菌对大豆生长的综合影响在线性回归模型中最好地描述为加性。没有证据表明菌根大豆植物的线虫耐受性增加。耐线虫的大豆品种的线虫种群密度和繁殖率低于易感品种,但在菌根和非菌根植物上的繁殖率却相当。在高线虫Pi时,mosseae的根定植减少了。结果表明,线虫对菌根共生的拮抗作用比大豆上的线虫对真菌的抑制作用更可能是大豆甘汞和AM真菌之间相互作用的结果。

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