首页> 外文期刊>Physiologia plantarum >Impact of carbon dioxide enrichment on the responses of maize leaf transcripts and metabolites to water stress.
【24h】

Impact of carbon dioxide enrichment on the responses of maize leaf transcripts and metabolites to water stress.

机译:二氧化碳富集对玉米叶片转录物和代谢产物对水分胁迫的响应的影响。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Maize (Zea mays) was grown in indoor chambers with ambient (38 Pa) and elevated (70 Pa) CO2. Drought treatments were imposed 17 days after sowing by withholding nutrient solution. Decreases of soil water content, leaf water potential, net CO2 assimilation and stomatal conductance as a result of drought were delayed approximately 2 days by CO2 enrichment. Concentrations of 28 of 33 leaf metabolites were altered by drought. Soluble carbohydrates, aconitate, shikimate, serine, glycine, proline and eight other amino acids increased, and leaf starch, malate, fumarate, 2-oxoglutarate and seven amino acids decreased with drought. Drought-dependent decreases of nitrate, alanine and aspartate were impacted by limiting nitrogen. Transcript levels of 14 stress-related maize genes responded to drought but this was delayed or modified by CO2 enrichment. Overall, CO2 enrichment eliminated many early responses of maize metabolites and transcripts to water stress but was less effective when drought was severe. Four metabolite groupings were identified by clustering analysis. These groupings included compounds that decreased with water stress, compounds involved in osmotic adjustment and aromatic compounds that alleviate oxidative stress. Metabolite changes also supported the suggestion that water stress inhibited C4 photosynthesis and induced photorespiration.
机译:玉米(Zea mays )在室内(38 Pa)和升高(70 Pa)CO 2 的室内室内生长。播种后第17天通过保留营养液进行干旱处理。 CO 2 的富集使干旱导致的土壤水分,叶水势,CO 2 净同化和气孔导度的下降大约延迟了2天。 33种叶片代谢产物中28种的浓度因干旱而改变。干旱导致可溶性碳水化合物,乌头酸,sh草酸,丝氨酸,甘氨酸,脯氨酸和其他8个氨基酸增加,而叶淀粉,苹果酸,富马酸,2-氧戊二酸和7个氨基酸减少。氮限制了干旱引起的硝酸盐,丙氨酸和天冬氨酸的减少。 14个与胁迫相关的玉米基因的转录本水平对干旱有响应,但这被CO 2 富集所延迟或修饰。总体而言,CO 2 富集消除了玉米代谢产物和转录本对水分胁迫的许多早期反应,但在严重干旱时效果不佳。通过聚类分析确定了四个代谢物分组。这些分组包括随着水分胁迫而降低的化合物,参与渗透调节的化合物以及减轻氧化胁迫的芳族化合物。代谢物的变化也支持水分胁迫抑制C 4 光合作用并诱导光呼吸的建议。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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