Turgeman Tidhar, Lubinsky Olga, Roth-Bejerano Nurit, Kagan-Zur Varda, Kapulnik Yoram, Koltai Hinanit, Zaady Eli, Ben-Shabat Shimon, Guy Ofer, Lewinsohn Efraim, Sitrit Yaron
The Jacob Blaustein Institute for Desert Research, Ben-Gurion University of the Negev, Beer-Sheva, 84105, Israel.
Life Sciences Department, Ben-Gurion University of the Negev, 84105, Beer-Sheva, Israel.
Mycorrhiza. 2016 May;26(4):287-97. doi: 10.1007/s00572-015-0667-y. Epub 2015 Nov 12.
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.
已知外生菌根真菌布氏块菌会分泌生长素。虽然已经描述了真菌生长素对植物根系的一些影响,但仍缺乏全面的了解。一种用于研究菌根前期信号交换的共培养系统揭示了以前未被认识的由真菌生长素介导的根-真菌相互作用。分泌的真菌生长素诱导主根负向地性、减弱主根生长速率并抑制宿主初期发育。生长素还诱导了拟南芥载体AUX1和PIN1的表达,这两者都参与向地性反应。外源施加生长素导致一种根表型,该表型完全模仿了外生菌根真菌诱导的表型。拟南芥生长素受体突变体tir1-1、tir1-1 afb2-3、tir1-1 afb1-3 afb2-3和tir1-1 afb2-3 afb3-4与布氏块菌的共培养证实生长素诱导了观察到的根表型。生长素既诱导主根偏离重力轴又协调生长速率这一发现是新的。我们提出了一个模型,其中真菌生长素诱导水平根发育以及共生伙伴之间生长速率的协调,同时还有生长素对侧根诱导的已知作用,这增加了在真菌孢子丰富的土壤平面上可用于定殖的位点的可及性。因此,这里新观察到的根对布氏块菌的反应有助于共生体之间的成功相遇。