首页> 外文期刊>Frontiers in Plant Science >A Novel G16B09-Like Effector From Heterodera avenae Suppresses Plant Defenses and Promotes Parasitism
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A Novel G16B09-Like Effector From Heterodera avenae Suppresses Plant Defenses and Promotes Parasitism

机译: Heterodera avenae 的新型G16B09效应子抑制植物防御并促进寄生

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Plant parasitic nematodes secrete effectors into host plant tissues to facilitate parasitism. In this study, we identified a G16B09-like effector protein family from the transcriptome of Heterodera avenae , and then verified that most of the members could suppress programmed cell death triggered by BAX in Nicotiana benthamiana . Ha18764, the most homologous to G16B09, was further characterized for its function. Our experimental evidence suggested that Ha18764 was specifically expressed in the dorsal gland and was dramatically upregulated in the J4 stage of nematode development. A Magnaporthe oryzae secretion system in barley showed that the signal peptide of Ha18764 had secretion activity to deliver mCherry into plant cells. Arabidopsis thaliana overexpressing Ha18764 or Hs18764 was more susceptible to Heterodera schachtii . In contrast, BSMV-based host-induced gene silencing (HIGS) targeting Ha18764 attenuated H. avenae parasitism and its reproduction in wheat plants. Transient expression of Ha18764 suppressed PsojNIP, Avr3a/R3a, RBP-1/Gpa2, and MAPK kinases (MKK1 and NPK1 ~(Nt))-related cell death in Nicotiana benthamiana . Co-expression assays indicated that Ha18764 also suppressed cell death triggered by four H. avenae putative cell-death-inducing effectors. Moreover, Ha18764 was also shown strong PTI suppression such as reducing the expression of plant defense-related genes, the burst of reactive oxygen species, and the deposition of cell wall callose. Together, our results indicate that Ha18764 promotes parasitism, probably by suppressing plant PTI and ETI signaling in the parasitic stages of H. avenae .
机译:植物寄生线虫将效应子分泌到宿主植物组织中以促进寄生。在这项研究中,我们从黑麦草杂种的转录组中鉴定出一个G16B09样效应蛋白家族,然后验证了大多数成员可以抑制烟草中BAX触发的程序性细胞死亡。 Ha18764与G16B09最同源,其功能得到进一步表征。我们的实验证据表明,Ha18764特别在背腺中表达,并在线虫发育的J4阶段显着上调。大麦中的稻瘟病菌(Magnaporthe oryzae)分泌系统显示,Ha18764的信号肽具有分泌活性,可将mCherry传递至植物细胞。过表达Ha18764或Hs18764的拟南芥更容易受到沙氏杂种的影响。相比之下,针对Ha18764的基于BSMV的宿主诱导的基因沉默(HIGS)减弱了小麦植物中的H. avenae寄生性及其繁殖。 Ha18764的瞬时表达抑制了本氏烟草中PsojNIP,Avr3a / R3a,RBP-1 / Gpa2和MAPK激酶(MKK1和NPK1〜(Nt))相关的细胞死亡。共表达测定表明,Ha18764还抑制了由四个H. avenae假定的诱导细胞死亡的效应子触发的细胞死亡。此外,Ha18764还显示出强大的PTI抑制作用,如减少植物防御相关基因的表达,活性氧的爆发以及细胞壁wall的沉积。在一起,我们的结果表明,Ha18764可能通过抑制植物的PTI和ETI信号传导,在寄生虫阶段提高了寄生性。

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