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S-Glycoprotein-Like Protein Regulates Defense Responses in Nicotiana Plants against Ralstonia solanacearum1[C][W]

机译:S-糖蛋白样蛋白调节烟草植物对茄形青枯菌的防御反应[C] [W]

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摘要

RsRGA4 (for Ralstonia solanacearum-responsive gene A4) encodes a polypeptide similar to S-locus glycoprotein (SGP) from Brassica rapa and SGP-like proteins from Ipomoea trifida and Medicago truncatula. Therefore, we designated RsRGA4 as NtSGLP (for Nicotiana tabacum SGP-like protein) and NbSGLP (its Nicotiana benthamiana ortholog). NbSGLP is expressed in root, leaf, petal, gynoecium, and stamen. Expression of NbSGLP was strongly induced by inoculation with an avirulent strain of R. solanacearum (Rs8107) and slightly enhanced by inoculation with virulent R. solanacearum (RsOE1-1). Expression of NbSGLP was induced by inoculation with an hrpY-deficient mutant of RsOE1-1 and Rs8107. Expression was also induced by aminocyclopropane carboxylic acid and salicylic acid. Virus-induced gene silencing of NbSGLP enhanced the growth of Rs8107. Growth of RsOE1-1 and appearance of wilt symptoms were also accelerated in silenced plants. Expression of PR-1a and EREBP was reduced, and markers for basal defense, such as callose deposition and reduced vascular flow, were compromised in NbSGLP-silenced plants. Moreover, growth of Pseudomonas cichorii, Pseudomonas syringae pv tabaci, and P. syringae pv mellea was also enhanced in the silenced plants. On the other hand, silencing of NbSGLP did not interfere with the appearance of the hypersensitive response. NbSGLP was secreted in a signal peptide-dependent manner. Agrobacterium tumefaciens-mediated expression of NbSGLP induced PR-1a and EREBP expression, callose deposition, and reduced vascular flow. NbSGLP-induced callose deposition and reduced vascular flow were not observed in salicylic acid-deficient N. benthamiana NahG plants. Taken together, SGLP might have a role in the induction of basal defense in Nicotiana plants.
机译:RsRGA4(针对青枯雷尔氏菌应答基因A4)编码类似于来自芸苔属的S-位点糖蛋白(SGP)和来自三叶番薯和Medi藜的SGP样蛋白的多肽。因此,我们将RsRGA4命名为NtSGLP(针对烟草SGP样蛋白)和NbSGLP(其Nicotiana benthamiana ortholog)。 NbSGLP在根,叶,花瓣,妇科和雄蕊中表达。 NbSGLP的表达是通过接种无毒的青枯菌(Rs8107)强烈诱导的,而通过接种有毒的青枯菌(RsOE1-1)略有增强。通过接种RsOE1-1和Rs8107的hrpY缺陷型突变体诱导NbSGLP的表达。氨基环丙烷羧酸和水杨酸也诱导表达。病毒诱导的NbSGLP基因沉默增强了Rs8107的生长。在沉默的植物中,RsOE1-1的生长和枯萎症状的出现也被加速。在NbSGLP沉默的植物中,PR-1a和EREBP的表达降低,基础防御的标志物,例如call质沉积和血管流量减少,受到损害。此外,沉默植物中的假单胞菌,丁香假单胞菌烟草和丁香假单胞菌pv mellea的生长也得到增强。另一方面,沉默NbSGLP不会干扰超敏反应的出现。 NbSGLP以信号肽依赖性方式分泌。农杆菌介导的NbSGLP的表达诱导PR-1a和EREBP的表达,call的沉积和减少的血管流量。在水杨酸不足的本氏烟草NahG植物中未观察到NbSGLP诱导的愈伤组织沉积和血管流量减少。总体而言,SGLP可能在烟草植物的基础防御诱导中起作用。

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