Reddy S M, Hitchin S, Melayah D, Pandey A K, Raffier C, Henderson J, Marmeisse R, Gay G
Université Lyon 1, UMR CNRS 5557, USC INRA 1193 d'Ecologie Microbienne Bât. A. Lwoff, 43 boulevard du 11 Novembre 1918, 69622 Villeurbanne Cedex, France.
New Phytol. 2006;170(2):391-400. doi: 10.1111/j.1469-8137.2006.01677.x.
In an attempt to determine whether auxin-regulated plant genes play a role in ectomycorrhizal symbiosis establishment, we screened a Pinus pinaster root cDNA library for auxin-upregulated genes. This allowed the identification of a cDNA, Pp-GH3.16, which encodes a polypeptide sharing extensive homologies with GH3 proteins of different plants. Pp-GH3.16 was specifically upregulated by auxins and was not affected by cytokinin, gibberellin, abscisic acid or ethylene, or by heat shock, water stress or anoxia. Pp-GH3.16 mRNAs were quantified in pine roots inoculated with two ectomycorrhizal fungi, Hebeloma cylindrosporum and Rhizopogon roseolus. Surprisingly, Pp-GH3.16 was downregulated following inoculation with both fungal species. The downregulation was most rapid on establishment of symbiosis with an indole-3-acetic acid (IAA)-overproducing mutant of H. cylindrosporum, which overproduced mycorrhizas characterized by a hypertrophic Hartig net. This indicates that, despite being auxin-inducible, Pp-GH3.16 can be downregulated on establishment of symbiosis with a fungus that releases auxin. By contrast, Pp-GH3.16 was not downregulated in pine root systems inoculated with a nonmycorrhizal mutant of H. cylindrosporum, suggesting that the downregulation we observed in mycorrhizal root systems was a component of the molecular cross-talk between symbiotic partners at the origin of differentiation of symbiotic structures.
为了确定生长素调节的植物基因是否在外生菌根共生建立过程中发挥作用,我们筛选了海岸松根cDNA文库以寻找生长素上调的基因。这使得我们鉴定出一个cDNA,即Pp-GH3.16,它编码一种与不同植物的GH3蛋白具有广泛同源性的多肽。Pp-GH3.16被生长素特异性上调,不受细胞分裂素、赤霉素、脱落酸或乙烯的影响,也不受热激、水分胁迫或缺氧的影响。对接种了两种外生菌根真菌(柱状孢革菌和玫瑰红须腹菌)的松树根中的Pp-GH3.16 mRNA进行了定量分析。令人惊讶的是,接种这两种真菌后Pp-GH3.16均被下调。在用柱状孢革菌的一个过量产生吲哚-3-乙酸(IAA)的突变体建立共生关系时,下调最为迅速,该突变体过量产生以肥大的哈蒂氏网为特征的菌根。这表明,尽管Pp-GH3.16是生长素诱导型的,但在与释放生长素的真菌建立共生关系时它可能会被下调。相比之下,在接种柱状孢革菌非菌根突变体的松树根系中Pp-GH3.16没有被下调,这表明我们在菌根根系中观察到的下调是共生结构分化起始时共生伙伴之间分子相互作用的一个组成部分。