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Differential Activity of Striga hermonthica Seed Germination Stimulants and Gigaspora rosea Hyphal Branching Factors in Rice and Their Contribution to Underground Communication

机译:水稻Striga hermonthica种子萌发兴奋剂和Gigaspora rosea菌丝分支因子的差异活性及其对地下交流的贡献

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摘要

Strigolactones (SLs) trigger germination of parasitic plant seeds and hyphal branching of symbiotic arbuscular mycorrhizal (AM) fungi. There is extensive structural variation in SLs and plants usually produce blends of different SLs. The structural variation among natural SLs has been shown to impact their biological activity as hyphal branching and parasitic plant seed germination stimulants. In this study, rice root exudates were fractioned by HPLC. The resulting fractions were analyzed by MRM-LC-MS to investigate the presence of SLs and tested using bioassays to assess their Striga hermonthica seed germination and Gigaspora rosea hyphal branching stimulatory activities. A substantial number of active fractions were revealed often with very different effect on seed germination and hyphal branching. Fractions containing (−)−orobanchol and ent-2'-epi-5-deoxystrigol contributed little to the induction of S. hermonthica seed germination but strongly stimulated AM fungal hyphal branching. Three SLs in one fraction, putative methoxy-5-deoxystrigol isomers, had moderate seed germination and hyphal branching inducing activity. Two fractions contained strong germination stimulants but displayed only modest hyphal branching activity. We provide evidence that these stimulants are likely SLs although no SL-representative masses could be detected using MRM-LC-MS. Our results show that seed germination and hyphal branching are induced to very different extents by the various SLs (or other stimulants) present in rice root exudates. We propose that the development of rice varieties with different SL composition is a promising strategy to reduce parasitic plant infestation while maintaining symbiosis with AM fungi.
机译:Strigolactones(SLs)触发寄生植物种子的发芽和共生丛枝菌根(AM)真菌的菌丝分支。 SL中存在广泛的结构变异,植物通常会生产不同SL的混合物。天然SL之间的结构变异已显示出会影响它们作为菌丝分支和寄生植物种子发芽刺激物的生物学活性。在这项研究中,通过HPLC对稻根分泌物进行分级分离。通过MRM-LC-MS分析所得级分,以研究SL的存在,并使用生物测定法对其进行评估,以评估其Striga hermonthica种子的发芽和玫瑰蔷薇菌丝状分支刺激活性。通常会发现大量活性成分,对种子发芽和菌丝分支的影响非常不同。包含(-)-邻苯二酚和ent-2'-epi-5-deoxystrigol的馏分对诱导葡萄链球菌种子萌发的贡献很小,但强烈刺激AM真菌菌丝分支。一小部分中的三个SL,推定的甲氧基-5-脱氧雌三醇异构体,具有中等的种子萌发和菌丝分枝诱导活性。两个部分包含强烈的发芽刺激物,但仅显示适度的菌丝分支活性。我们提供的证据表明,尽管使用MRM-LC-MS无法检测到SL代表质量,但这些兴奋剂很可能是SL。我们的结果表明,水稻根系分泌物中存在的各种SL(或其他刺激物)在不同程度上诱导了种子的萌发和菌丝分支。我们认为,开发具有不同SL组成的水稻品种是一种有希望的策略,可以减少寄生植物的侵染,同时保持与AM真菌的共生。

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