Mitter Birgit, Pfaffenbichler Nikolaus, Flavell Richard, Compant Stéphane, Antonielli Livio, Petric Alexandra, Berninger Teresa, Naveed Muhammad, Sheibani-Tezerji Raheleh, von Maltzahn Geoffrey, Sessitsch Angela
Bioresources, Center for Health & Bioresources, Austrian Institute of Technology GmbH Tulln, Austria.
Indigo Agriculture, Charlestown MA, USA.
Front Microbiol. 2017 Jan 23;8:11. doi: 10.3389/fmicb.2017.00011. eCollection 2017.
The microbial component of healthy seeds - the seed microbiome - appears to be inherited between plant generations and can dynamically influence germination, plant performance, and survival. As such, methods to optimize the seed microbiomes of major crops could have far-reaching implications for plant breeding and crop improvement to enhance agricultural food, feed, and fiber production. Here, we describe a new approach to modulate seed microbiomes of elite crop seed embryos and concomitantly design the traits to be mediated by seed microbiomes. Specifically, we discovered that by introducing the endophyte PsJN to the flowers of parent plants we could drive its inclusion in progeny seed microbiomes, thereby inducing vertical inheritance to the offspring generation. We demonstrated the introduction of PsJN to seeds of monocot and dicot plant species and the consequential modifications to seed microbiome composition and growth traits in wheat, illustrating the potential role of novel seed-based microbiomes in determining plant traits.
健康种子的微生物成分——种子微生物群——似乎在植物世代间遗传,并能动态影响种子萌发、植株表现和存活。因此,优化主要作物种子微生物群的方法可能对植物育种和作物改良产生深远影响,以提高农业粮食、饲料和纤维产量。在此,我们描述了一种调节优良作物种子胚的种子微生物群并同时设计由种子微生物群介导的性状的新方法。具体而言,我们发现通过将内生菌PsJN引入亲本植物的花中,我们可以促使其包含在后代种子微生物群中,从而诱导向子代的垂直遗传。我们展示了将PsJN引入单子叶和双子叶植物物种的种子以及对小麦种子微生物群组成和生长性状的相应改变,说明了新型种子微生物群在决定植物性状方面的潜在作用。