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食线虫真菌厚垣轮枝菌对拟南芥根的定殖受茉莉酸信号的调节,并导致开花加速和产量提高。

Arabidopsis thaliana root colonization by the nematophagous fungus Pochonia chlamydosporia is modulated by jasmonate signaling and leads to accelerated flowering and improved yield.

机构信息

Multidisciplinary Institute for Environmental Studies (MIES) 'Ramon Margalef', Department of Marine Sciences and Applied Biology, University of Alicante, Aptdo. 99, Alicante, 03080, Spain.

Food Research and Development Unit (UNIDA), Laboratory of Genetics, Technological Institute of Veracruz, Veracruz, 91897, México.

出版信息

New Phytol. 2017 Jan;213(1):351-364. doi: 10.1111/nph.14106. Epub 2016 Jul 26.

Abstract

Pochonia chlamydosporia has been intensively studied in nematode control of different crops. We have investigated the interaction between P. chlamydosporia and the model system Arabidopsis thaliana under laboratory conditions in the absence of nematodes. This study demonstrates that P. chlamydosporia colonizes A. thaliana. Root colonization monitored with green fluorescent protein-tagged P. chlamydosporia and quantitative PCR (qPCR) quantitation methods revealed root cell invasion. Fungal inoculation reduced flowering time and stimulated plant growth, as determined by total FW increase, faster development of inflorescences and siliques, and a higher yield in terms of seed production per plant. Precocious flowering was associated with significant expression changes in key flowering-time genes. In addition, we also provided molecular and genetic evidence that point towards jasmonate signaling as an important factor to modulate progression of plant colonization by the fungus. Our results indicate that P. chlamydosporia provides benefits to the plant in addition to its nematophagous activity. This report highlights the potential of P. chlamydosporia to improve yield in economically important crops.

摘要

多粘类芽孢杆菌在不同作物的线虫防治中得到了深入研究。我们在没有线虫的实验室条件下,研究了多粘类芽孢杆菌与模式系统拟南芥之间的相互作用。这项研究表明多粘类芽孢杆菌可以定殖拟南芥。通过绿色荧光蛋白标记的多粘类芽孢杆菌和定量 PCR(qPCR)定量方法监测根定殖,揭示了根细胞的入侵。真菌接种减少了开花时间,并通过总鲜重增加、花序和蒴果更快发育以及每株植物的种子产量提高来刺激植物生长。早熟开花与关键开花时间基因的显著表达变化有关。此外,我们还提供了分子和遗传证据,表明茉莉酸信号是调节真菌对植物定殖进展的重要因素。我们的结果表明,多粘类芽孢杆菌除了具有杀线虫活性外,还能为植物提供益处。本报告强调了多粘类芽孢杆菌在提高经济作物产量方面的潜力。

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