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首页> 外文期刊>Pakistan journal of botany >Trichoderma aspereullm ACCC30536 inoculation differently regulates the time-course expression of five indole-3-acetic acid amido synthetase genes and the levels of IAA, SA and JA in Populus davidiana × P. alba var. Pyramidalis
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Trichoderma aspereullm ACCC30536 inoculation differently regulates the time-course expression of five indole-3-acetic acid amido synthetase genes and the levels of IAA, SA and JA in Populus davidiana × P. alba var. Pyramidalis

机译:Trichoderma AspereullM ACCC30536接种不同地调节五个吲哚-3-乙酸amido合成酶基因的时间过程表达和杨树Davidiana×P. Alba VAR中的IAA,SA和JA的水平。 Pyramidalis.

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Some indole-3-acetic acid amido synthetases (GH3 proteins) were confirmed to catalyze the connection between IAA, SA or JA with amino acid to regulate hormone dynamic balances in promoting plant growth; they can also improve plants’ resistance to stress through activating SA, JA and ethylene signaling pathways. Trichoderma spp. are widely-known beneficial biocontrol agents. However, the expression pattern of plant GH3 genes induced by Trichoderma remained unexplored. In this study, five GH3 genes in Populus davidiana × P. alba var. pyramidalis (named PodaGH3-1 , PodaGH3-2 , PodaGH3-5 , PodaGH3-9 and PodaGH3-10 ) were cloned. Their characteristic analysis showed that the five PodaGH3s genes were highly conservative and closely related at the residues linked to ATP binding with IAA or JA, and their expression levels changed obviously under Trichoderma inoculation. Moreover, IAA, JA and SA contents showed a fluctuating yet increasing trend during the 72 hours when poplar seedling rhizosphere was colonized by Trichoderma . In summary, all the five PodaGH3s could be activated by the interaction between biotrophic Trichoderma and poplar seedlings.
机译:确认一些吲哚-3-乙酸酰胺合成酶(GH3蛋白质)催化IAA,SA或JA与氨基酸之间的连接,以调节促进植物生长方面的激素动态平衡;它们还可以通过激活SA,JA和乙烯信号通路来改善植物对应力的抵抗力。 Trichoderma SPP。是广为人知的有益生物控制剂。然而,Trichoderma诱导的植物GH3基因的表达模式仍未探明。在这项研究中,杨树大卫族人的五个GH3基因βP.Alba Var。克隆了金字塔(命名Podagh3-1,Podagh3-2,Podagh3-5,Podagh3-9和Podagh3-10)。它们的特征分析表明,五个PodagH3S基因在与IAA或Ja的与ATP结合有关的残留物中,其在与ATP结合的残留物中,它们的表达水平在Trichoderma接种下显而易见。此外,IAA,JA和SA内容在72小时内显示出杨树幼苗根际通过Trichoderma殖民殖民的72小时的波动趋势。总之,所有五个PODAGH3都可以通过生物养殖richoderma和白杨幼苗之间的相互作用来激活。

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