首页> 外文期刊>The Plant Genome >A multigenotype maize silk expression atlas reveals how exposure‐related stresses are mitigated following emergence from husk leaves
【24h】

A multigenotype maize silk expression atlas reveals how exposure‐related stresses are mitigated following emergence from husk leaves

机译:多蛋白型玉米丝绸表达Atlas揭示了壳叶子出现后如何减轻曝光相关的应力

获取原文
           

摘要

The extraordinarily long stigmatic silks of corn (Zea mays L.) are critical for grain production but the biology of their growth and emergence from husk leaves has remained underexplored. Accordingly, gene expression was assayed for inbreds ‘B73’ and ‘Mo17’ across five contiguous silk sections. Half of the maize genes (~20,000) are expressed in silks, mostly in spatiotemporally dynamic patterns. In particular, emergence triggers strong differential expression of ~1,500 genes collectively enriched for gene ontology terms associated with abiotic and biotic stress responses, hormone signaling, cell–cell communication, and defense metabolism. Further, a meta‐analysis of published maize transcriptomic studies on seedling stress showed that silk emergence elicits an upregulated transcriptomic response that overlaps strongly with both abiotic and biotic stress responses. Although the two inbreds revealed similar silk transcriptomic programs overall, genotypic expression differences were observed for 5,643 B73–Mo17 syntenic gene pairs and collectively account for?50% of genome‐wide expression variance. Coexpression clusters, including many based on genotypic divergence, were identified and interrogated via ontology‐term enrichment analyses to generate biological hypotheses for future research. Ultimately, dissecting how gene expression changes along the length of silks and between husk‐encased and emerged states offers testable models for silk development and plant response to environmental stresses.
机译:玉米(Zea Mays L.)的非常长的耻骨丝网对粮食生产至关重要,但它们的生长和壳叶的生物学的生物学仍然是令人遗憾的。因此,在五个连续的丝绸截面上测定基因表达以用于近晶的“B73”和“MO17”。玉米基因的一半(〜20,000)以丝绸表示,主要以现代的动态模式表示。特别地,出苗触发了〜1,500个基因的强差异表达,共同富集了与非生物学和生物应激反应,激素信号传导,细胞 - 细胞通信和防御代谢相关的基因本体论术语。此外,发表的玉米转录组研究关于幼苗应激的荟萃分析表明,丝射出引发了一种上调的转录组反应,其与非生物和生物应激反应强烈重叠。尽管两种自扰动揭示了类似的丝绸转录组族,但是对于5,643 b73-mo17同期基因对,并且共同占基因组的表达方差的α> 50%的基因型表达差异。通过本体学期的富集分析确定和询问包括基于基因型分歧的许多群体,以产生未来研究的生物假设。最终,解剖如何沿丝绸的长度以及壳体包裹和出现状态之间的基因表达如何改变,可用于丝绸开发和植物应对环境压力的可测量模型。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号