Arid
DOI10.1007/s00572-015-0667-y
The role of pre-symbiotic auxin signaling in ectendomycorrhiza formation between the desert truffle Terfezia boudieri and Helianthemum sessiliflorum
Turgeman, Tidhar1; Lubinsky, Olga2; Roth-Bejerano, Nurit2; Kagan-Zur, Varda2; Kapulnik, Yoram3; Koltai, Hinanit3; Zaady, Eli4; Ben-Shabat, Shimon5; Guy, Ofer6; Lewinsohn, Efraim7; Sitrit, Yaron1
通讯作者Sitrit, Yaron
来源期刊MYCORRHIZA
ISSN0940-6360
EISSN1432-1890
出版年2016
卷号26期号:4页码:287-297
英文摘要

The ectendomycorrhizal fungus Terfezia boudieri is known to secrete auxin. While some of the effects of fungal auxin on the plant root system have been described, a comprehensive understanding is still lacking. A dual culture system to study pre mycorrhizal signal exchange revealed previously unrecognized root-fungus interaction mediated by the fungal auxin. The secreted fungal auxin induced negative taproot gravitropism, attenuated taproot growth rate, and inhibited initial host development. Auxin also induced expression of Arabidopsis carriers AUX1 and PIN1, both of which are involved in the gravitropic response. Exogenous application of auxin led to a root phenotype, which fully mimicked that induced by ectomycorrhizal fungi. Co-cultivation of Arabidopsis auxin receptor mutants tir1-1, tir1-1 afb2-3, tir1-1 afb1-3 afb2-3, and tir1-1 afb2-3 afb3-4 with Terfezia confirmed that auxin induces the observed root phenotype. The finding that auxin both induces taproot deviation from the gravity axis and coordinates growth rate is new. We propose a model in which the fungal auxin induces horizontal root development, as well as the coordination of growth rates between partners, along with the known auxin effect on lateral root induction that increases the availability of accessible sites for colonization at the soil plane of fungal spore abundance. Thus, the newly observed responses described here of the root to Terfezia contribute to a successful encounter between symbionts.


英文关键词Auxin Desert truffle Terfezia boudieri Helianthemum sessiliflorum Gravitropism
类型Article
语种英语
国家Israel
收录类别SCI-E
WOS记录号WOS:000374403400003
WOS关键词FUNGUS PISOLITHUS-TINCTORIUS ; LATERAL ROOT-FORMATION ; MYCORRHIZA FORMATION ; ARABIDOPSIS ; GRAVITROPISM ; TRANSPORT ; RESPONSES ; ESTABLISHMENT ; HYPAPHORINE ; ASSOCIATION
WOS类目Mycology
WOS研究方向Mycology
来源机构Ben-Gurion University of the Negev
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/195136
作者单位1.Ben Gurion Univ Negev, Jacob Blaustein Inst Desert Res, IL-84105 Beer Sheva, Israel;
2.Ben Gurion Univ Negev, Dept Life Sci, IL-84105 Beer Sheva, Israel;
3.Agr Res Org, Volcani Ctr, Inst Plant Sci, IL-50250 Bet Dagan, Israel;
4.Agr Res Org, Gilat Res Ctr, IL-85280 Beer Sheva, Israel;
5.Ben Gurion Univ Negev, Fac Hlth Sci, Dept Biochem & Pharmacol, IL-84105 Beer Sheva, Israel;
6.Ramat Negev R&D, DN, Desert Agrores Ctr, IL-85515 Halutza, Israel;
7.Agr Res Org, Newe Yaar Res Ctr, Dept Vegetable Crops, POB 1021, Ramat Yishay, Israel
推荐引用方式
GB/T 7714
Turgeman, Tidhar,Lubinsky, Olga,Roth-Bejerano, Nurit,et al. The role of pre-symbiotic auxin signaling in ectendomycorrhiza formation between the desert truffle Terfezia boudieri and Helianthemum sessiliflorum[J]. Ben-Gurion University of the Negev,2016,26(4):287-297.
APA Turgeman, Tidhar.,Lubinsky, Olga.,Roth-Bejerano, Nurit.,Kagan-Zur, Varda.,Kapulnik, Yoram.,...&Sitrit, Yaron.(2016).The role of pre-symbiotic auxin signaling in ectendomycorrhiza formation between the desert truffle Terfezia boudieri and Helianthemum sessiliflorum.MYCORRHIZA,26(4),287-297.
MLA Turgeman, Tidhar,et al."The role of pre-symbiotic auxin signaling in ectendomycorrhiza formation between the desert truffle Terfezia boudieri and Helianthemum sessiliflorum".MYCORRHIZA 26.4(2016):287-297.
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