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Analysis of Stress-Responsive Gene Expression in Cultivated and Weedy Rice Differing in Cold Stress Tolerance

机译:耐寒性不同的栽培稻和杂草稻的胁迫响应基因表达分析

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摘要

Rice (Oryza sativa L.) cultivars show impairment of growth in response to environmental stresses such as cold at the early seedling stage. Locally adapted weedy rice is able to survive under adverse environmental conditions, and can emerge in fields from greater soil depth. Cold-tolerant weedy rice can be a good genetic source for developing cold-tolerant, weed-competitive rice cultivars. An in-depth analysis is presented here of diverse indica and japonica rice genotypes, mostly weedy rice, for cold stress response to provide an understanding of different stress adaptive mechanisms towards improvement of the rice crop performance in the field. We have tested a collection of weedy rice genotypes to: 1) classify the subspecies (ssp.) grouping (japonica or indica) of 21 accessions; 2) evaluate their sensitivity to cold stress; and 3) analyze the expression of stress-responsive genes under cold stress and a combination of cold and depth stress. Seeds were germinated at 25°C at 1.5- and 10-cm sowing depth for 10d. Seedlings were then exposed to cold stress at 10°C for 6, 24 and 96h, and the expression of cold-, anoxia-, and submergence-inducible genes was analyzed. Control plants were seeded at 1.5cm depth and kept at 25°C. The analysis revealed that cold stress signaling in indica genotypes is more complex than that of japonica as it operates via both the CBF-dependent and CBF-independent pathways, implicated through induction of transcription factors including OsNAC2, OsMYB46 and OsF-BOX28. When plants were exposed to cold + sowing depth stress, a complex signaling network was induced that involved cross talk between stresses mediated by CBF-dependent and CBF-independent pathways to circumvent the detrimental effects of stresses. The experiments revealed the importance of the CBF regulon for tolerance to both stresses in japonica and indica ssp. The mechanisms for cold tolerance differed among weedy indica genotypes and also between weedy indica and cultivated japonica ssp. as indicated by the up/downregulation of various stress-responsive pathways identified from gene expression analysis. The cold-stress response is described in relation to the stress signaling pathways, showing complex adaptive mechanisms in different genotypes.
机译:水稻(Oryza sativa L.)品种在幼苗早期对环境压力(例如寒冷)的响应显示出生长受损。适应当地情况的杂草稻能够在不利的环境条件下生存,并且可以在土壤深度更大的田间出现。耐寒杂草水稻可以作为开发耐寒,具有杂草竞争力的水稻品种的良好遗传资源。本文对diverse稻和粳稻基因型(主要是杂草稻)进行了深入分析,以分析冷胁迫响应,从而了解了不同的胁迫适应机制,可改善田间水稻作物的生长性能。我们测试了杂草稻基因型的集合,以:1)对21个种的亚种(ssp。)分组(粳稻或in稻)进行分类; 2)评估其对冷应激的敏感性; 3)分析冷胁迫以及冷胁迫和深度胁迫共同作用下胁迫响应基因的表达。种子在25°C以1.5和10厘米的播种深度萌发10天。然后将幼苗暴露于10°C的冷胁迫下6、24和96h,分析冷诱导,缺氧诱导和浸没诱导的基因的表达。对照植物以1.5cm深度播种并保持在25℃。分析表明,in型基因型的冷胁迫信号传导比粳稻更为复杂,因为它通过CBF依赖性和CBF依赖性途径起作用,这涉及诱导包括OsNAC2,OsMYB46和OsF-BOX28在内的转录因子。当植物暴露于低温+播种深度胁迫下时,诱导了一个复杂的信号网络,该网络涉及CBF依赖性和CBF依赖性途径介导的胁迫之间的串扰,从而规避了胁迫的不利影响。实验表明,CBF调节子对于忍受粳稻和in稻两种胁迫的重要性。耐寒性的机制在杂草in型基因型之间以及在杂草in型和栽培粳稻属之间也不同。如通过基因表达分析鉴定的各种应激反应途径的上调/下调所示。相对于压力信号传导途径描述了冷应激反应,显示了不同基因型的复杂适应机制。

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