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首页> 外文期刊>Molecular Plant-Microbe Interactions >The Root-Colonizing Endophyte Pirifomospora indica Confers Drought Tolerance in Arabidopsis by Stimulating the Expression of Drought Stress–Related Genes in Leaves
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The Root-Colonizing Endophyte Pirifomospora indica Confers Drought Tolerance in Arabidopsis by Stimulating the Expression of Drought Stress–Related Genes in Leaves

机译:通过刺激叶片中与干旱胁迫相关的基因的表达,根定殖的内生菌内生Pirifomospora indica赋予了拟南芥耐旱性。

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Piriformospora indica is an endophytic fungus that colonizes the roots of many plant species, including Arabidopsis. We exposed 18-day-old Arabidopsis seedlings, which were either cocultivated with the fungus or mock-treated for the last 9 days, to mild drought stress for 84 h. During the first 36 to 48 h, seedlings cocultivated with the fungus continued to grow, while the uncolonized controls did not. This results in a threefold difference in the fresh weight and a more than twofold difference in the chlorophyll content. The photosynthetic efficiency was only slightly reduced in the colonized (F variable/F maximum [Fv/Fm] at t0h = 0.82 and t36h = 0.79) and was severely impaired in the uncolonized (Fv/Fm at t0h = 0.81 and t36h = 0.49) seedlings, which also showed symptoms of withering. When seedlings exposed to drought stress for 72 or 84 h were transferred to soil, 10% (72 h) and none (84 h) of uncolonized seedlings reached the flowering stage and produced seeds, while 59% (72 h) and 47% (84 h) of the colonized seedlings flowered and produced seeds. After exposure to drought stress for 3 h, the message levels for RESPONSE TO DEHYDRATION 29A, EARLY RESPONSE TO DEHYDRATION1, ANAC072, DEHYDRATION-RESPONSE ELEMENT BINDING PROTEIN2A, SALT-, AND DROUGHT-INDUCED RING FINGER1, phospholipase Dδ, CALCINEURIN B-LIKE PROTEIN (CBL)1, CBL-INTERACTING PROTEIN KINASE3, and the histone acetyltransferase (HAT) were upregulated in the leaves of P. indica–colonized seedlings. Uncolonized seedlings responded 3 to 6 h later, and the message levels increased much less. We identified an Arabidopsis ethylmethane-sulfonate mutant that is less resistant to drought stress and in which the stress-related genes were not upregulated in the presence of P. indica. Thus, P. indica confers drought-stress tolerance to Arabidopsis, and this is associated with the priming of the expression of a quite diverse set of stress-related genes in the leaves. Transfer to soil was again associated with a faster and stronger upregulation of the message levels for phospholipase Dδ, CBL1, and HAT in P. indica–colonized seedlings, indicating that this response might also contribute to better survival on soil.
机译:印度梨(Piriformospora indica)是一种内生真菌,它定居在许多植物物种的根中,包括拟南芥。我们将18天大的拟南芥幼苗(与真菌共培养或在最后9天进行模拟处理)暴露于轻度干旱胁迫下84小时。在最初的36至48小时内,与真菌共培养的幼苗继续生长,而未定殖的对照则没有。这导致鲜重的三倍差异和叶绿素含量的两倍以上差异。在殖民地中,光合效率仅略有降低(在t0h = 0.82和t36h = 0.79时,F变量/ F最大值[Fv / Fm]),在未殖民地时(在t0h = 0.81和t36h = 0.49时的Fv / Fm)受到严重损害。幼苗,也表现出枯萎的症状。当将遭受干旱胁迫72或84 h的幼苗转移到土壤中时,10%(72 h)且没有(84 h)未定殖的幼苗达到开花阶段并产生种子,而59%(72 h)和47%( 84 h)被定植的幼苗开花并产生种子。暴露于干旱胁迫3小时后,对脱水29A,对脱水1的早期响应,ANAC072,脱水-响应元素结合蛋白2A,盐和干旱诱导的环指1,磷脂酶Dδ,钙蛋白酶B-的信息水平(CBL)1,CBL相互作用蛋白激酶3和组蛋白乙酰转移酶(HAT)在印度in定植幼苗的叶片中上调。未定殖的幼苗在3到6小时后响应,而信息水平的增加则少得多。我们确定了拟南芥的乙基磺酸磺酸盐突变体,该突变体对干旱胁迫的抵抗力较低,并且在与印度。相关的情况下,与胁迫相关的基因没有上调。因此,P。indica赋予了拟南芥干旱胁迫耐受性,这与启动叶片中许多与胁迫相关的基因的表达有关。再次转移到土壤中与印度。定植的幼苗中磷脂酶Dδ,CBL1和HAT的信息水平更快,更强地上调相关,表明这种反应也可能有助于土壤上更好的存活。

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