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首页> 外文期刊>Scientific reports. >ABC transporter genes ABC-C6 and ABC-G33 alter plant-microbe-parasite interactions in the rhizosphere
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ABC transporter genes ABC-C6 and ABC-G33 alter plant-microbe-parasite interactions in the rhizosphere

机译:ABC转运蛋白基因ABC-C6和ABC-G33改变根际的植物微生物 - 寄生虫相互作用

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Plants are master regulators of rhizosphere ecology, secreting a complex mixture of compounds into the soil, collectively termed plant root exudate. Root exudate composition is highly dynamic and functional, mediating economically important interactions between plants and a wide range of soil organisms. Currently we know very little about the molecular basis of root exudate composition, which is a key hurdle to functional exploitation of root exudates for crop improvement. Root expressed transporters modulate exudate composition and could be manipulated to develop beneficial plant root exudate traits. Using Virus Induced Gene silencing (VIGS), we demonstrate that knockdown of two root-expressed ABC transporter genes in tomato cv. Moneymaker, ABC-C6 and ABC-G33, alters the composition of semi-volatile compounds in collected root exudates. Root exudate chemotaxis assays demonstrate that knockdown of each transporter gene triggers the repulsion of economically relevant Meloidogyne and Globodera spp. plant parasitic nematodes, which are attracted to control treatment root exudates. Knockdown of ABC-C6 inhibits egg hatching of Meloidogyne and Globodera spp., relative to controls. Knockdown of ABC-G33 has no impact on egg hatching of Meloidogyne spp. but has a substantial inhibitory impact on egg hatching of G. pallida. ABC-C6 knockdown has no impact on the attraction of the plant pathogen Agrobacterium tumefaciens, or the plant growth promoting Bacillus subtilis, relative to controls. Silencing ABC-G33 induces a statistically significant reduction in attraction of B. subtilis, with no impact on attraction of A. tumefaciens. By inoculating selected differentially exuded compounds into control root exudates, we demonstrate that hexadecaonic acid and pentadecane are biologically relevant parasite repellents. ABC-C6 represents a promising target for breeding or biotechnology intervention strategies as gene knockdown leads to the repulsion of economically important plant parasites and retains attraction of the beneficial rhizobacterium B. subtilis. This study exposes the link between ABC transporters, root exudate composition, and ex planta interactions with agriculturally and economically relevant rhizosphere organisms, paving the way for new approaches to rhizosphere engineering and crop protection.
机译:植物是根际生态的母体监管机构,将化合物的复杂混合物分泌到土壤中,集体称为植物根部渗出物。根出渗出物组合具有高度动态和功能性,介导植物之间的经济上重要的相互作用和各种土壤生物。目前我们对根渗出物组成的分子基础几乎没有知之甚少,这是一种用于作物改善的根部渗出物的功能剥削的关键障碍。根表达转运剂调节渗出物组合物,可以被操纵以发展有益的植物根部渗出物性状。使用病毒诱导的基因沉默(Vigs),我们证明了番茄CV中的两个根表达的ABC转运基因的敲低。 MoneyMaker,ABC-C6和ABC-G33,改变了收集的根部渗出物中半挥发性化合物的组成。根渗出物趋化性测定表明,每个转运蛋白基因的敲低触发了经济相关的Meloidogyne和Globodera SPP的排斥。植物寄生线虫,被吸引控制处理根部渗出物。 ABC-C6的敲低抑制Meloidogyne和Globodera SPP的蛋孵化。相对于对照。 ABC-G33的敲低对Meloidogyne SPP的蛋孵化没有影响。但对G.Pallida的卵孵化具有大量抑制作用。 ABC-C6相对于对照,ABC-C6敲低对Tumefaciens的植物病原体病原体的吸引力或促进枯草芽孢杆菌的植物生长。沉默的ABC-G33诱导B.枯草芽孢杆菌的统计学显着降低,对A.Tumefaciens的吸引力没有影响。通过将所选择的差异被渗出的化合物接种到对照根部外渗,我们证明了十六烷酸和戊烷是生物相关的寄生虫釜。 ABC-C6代表了育种或生物技术干预策略的有希望的目标,因为基因敲低导致对经济上重要的植物寄生虫的排斥,并保留有益流虫B.枯草芽孢杆菌的吸引力。本研究公开了ABC转运蛋白,根渗出物组合物与农村与农业和经济相关的根际生物相互作用之间的联系,为流离际工程和作物保护的新方法铺平了道路。

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