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Ethylene-induced microtubule reorientation is essential for fast inhibition of root elongation in Arabidopsis 被引量:4
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作者 Yichuan Wang Yusi Ji +1 位作者 Ying Fu Hongwei Guo 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2018年第9期864-877,共14页
Microtubule reorientation is a long-standing observation that has been implicated in regulating the inhibitory effect of ethylene on axial elongation of plant cells. However, the signaling mechanism underlying ethylen... Microtubule reorientation is a long-standing observation that has been implicated in regulating the inhibitory effect of ethylene on axial elongation of plant cells. However, the signaling mechanism underlying ethylene-induced microtubule reorientation has re- mained elusive. Here, we reveal, by live confocal imaging and kinetic root elongation assays, that the time courses of ethylene-induced microtubule reorientation and root elongation inhibition are highly correlated, and that microtubule reorientation is required for the full responsiveness of root elongation to ethylene treatment. Our genetic analysis demonstrated that the effect of ethylene on microtubule orientation and root elongation is mainly transduced through the canonical linear ethylene signaling pathway. By using pharmacological and genetic analyses, we demonstrate further that the TIR1/AFBs-Aux/IAAs-ARFs auxin signaling pathway, but not the ABP1-ROP6-RlC1 auxin signaling branch, is essential for ethylene-induced microtubule reorientation and root elongation inhibition. Together, these findings offer evidence for the functional significance and elucidate the signaling mechanism for ethylene-induced microtubule reorientation in fast root elongation inhibition in Arabidopsis. 展开更多
关键词 MBD GFP ethylene-induced microtubule reorientation is essential for fast inhibition of root elongation in Arabidopsis
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Nicotiana benthamiana LRR-RLP Nb EIX2 mediates the perception of an EIX-like protein from Verticillium dahliae 被引量:2
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作者 Zhiyuan Yin Nan Wang +4 位作者 Lei Pi Lei Li Weiwei Duan Xiaodan Wang Daolong Dou 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第5期949-960,共12页
Verticillium wilt diseases caused by the soil-borne fungus Verticillium dahliae result in devastating yield losses in many economically important crops annually. Here, we identified a novel ethyleneinducing xylanase(E... Verticillium wilt diseases caused by the soil-borne fungus Verticillium dahliae result in devastating yield losses in many economically important crops annually. Here, we identified a novel ethyleneinducing xylanase(EIX)-like protein, VdEIX3, from V. dahliae, which exhibits immunity-inducing activity in Nicotiana benthamiana. In vitro-purified VdEIX3 can induce strong oxidative burst, activate the expression of defense-related genes, and increase resistance against oomycete and fungal pathogens in N. benthamiana. VdEIX3 orthologs of other Verticillium pathogens also induce cell death in N. benthamiana, which form a new type of EIX protein family that is distinct from the known EIX proteins. A leucine-rich repeat receptor-like protein, NbEIX2, regulates the perception of VdEIX3 in N. benthamiana. Our results demonstrate that VdEIX3 is a novel EIX-like protein that can be recognized by N. benthamiana NbEIX2, and also suggest that NbEIX2 is a promising receptor-like protein that is potentially applicable to transgenic breeding for improving resistance to Verticillium wilt diseases. 展开更多
关键词 ethylene-inducing xylanase(EIX) microbe-associated molecular pattern(MAMP) Nicotiana benthamiana PRR Verticil ium dahliae
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