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首页> 外文期刊>植物工场学会誌 >Changes in free sugar contents through arbuscular mycorrhizal fungus symbiosis in tomato seedlings raised in a greenhouse
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Changes in free sugar contents through arbuscular mycorrhizal fungus symbiosis in tomato seedlings raised in a greenhouse

机译:通过番茄幼苗中的丛枝菌根菌生物血分症改变自由甘油含量的变化

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To estimate the relationship between free sugar contents and growth enhancement through symbiosis of arbuscular mycorrhizal (AM) fungi (Glomus fasciculatum and Gigaspora margarita), we investigated the changes in free sugar contents through AM fungus symbiosis in tomato (Licopersicon esculentum Mill., cv. Momotaro-T93) seedlings.Five weeks after inoculation, AM fungus infection level in whole root system reached 17.6 percent in Glomus fasciculatum, while in Gigaspora margarita, 24.2 percent, althouth no major difference between noninoculated and inoculated plants appeared in the plant growth. Regardless of fungus species, total free sugar contents showed greater values in shoots, tap roots and branched roots of AM fungus-infected plants than in noninoculated ones; trehalose was detected in roots of plants infected with each fungus species. Tweve weeks after inoculation, exceeding noninoculated plants, AM fungus-infected plants gave greater values of plant height, proximal diameter of shoots, and dry weight of both shoots and roots, regardless of fungus species. Water contents of both shoots and roots showed similar levels among the treatments. AM fungus infection level showed 25.8 percent in Glomus fasciculatum, 38.2percent in Gigaspora margarita. Total free sugar contents increased in shoots and tap roots of infected plants in both fungus species; the effect was pronounced more in Glomus fasciculatum than in Gigaspora margarita.free sugar, which caused the increase in total free sugar contents, differed among the parts of the plants. Trehalose was detected in shoots and branched roots in Glomus fasciculatum infected plants. These results suggest that increase of free sugar contents are closely associated with plant growth enhancement through AM fungus symbiosis in tomato seedlings.
机译:为了估算通过丛枝菌根(AM)真菌(Glomus Fasciculatum和Gigaspora Margarita)的共生糖含量和生长增强之间的关系,我们通过番茄(LiCopersicon Ecculentum Mill,CV中的氨纶共生,调查了游离糖含量的变化。 MOMOTARO-T93)幼苗。在接种后的周末,整根系统的真菌感染水平达到17.6%,而在Gigaspora Margarita,24.2%,Althth在植物生长中出现了非常规和接种植物之间的主要区别。无论真菌物种如何,在芽中出现更大的糖含量,射击根部和am真菌感染植物的枝条的含量大于非常规的植物;在用每种真菌物种感染的植物根中检测到海藻糖。接种后的Tweve周,超过非常规植物,AM真菌感染植物的植物高度,射击近径的值较大,无论真菌物种如何,射击和根部的干重。芽和根部的水含量显示治疗中的相似水平。 Glomus Fasciculatum的Am真菌感染水平显示出25.8%,38.2。吉拉塔玛格丽塔。枝条中的总不含糖含量增加,在真菌物种中挖掘受感染植物的根;在Glomus Fasciculatum中的效果比在Gigaspora Margarita.free糖中发出更多的效果,这导致总含糖含量的增加,不同于植物的部分。在射击中检测到海藻糖,在Glomus Fasciculatum感染植物中的分支根。这些结果表明,通过在番茄幼苗中,通过Am真菌共生的植物生长增强的增加与植物生长增强密切相关。

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