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Helianthus Nighttime Conductance and Transpiration Respond to Soil Water But Not Nutrient Availability

机译:向日葵夜间电导和蒸腾对土壤水分的响应,但对土壤养分的吸收没有响应

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摘要

We investigated the response of Helianthus species nighttime conductance (gnight) and transpiration (Enight) to soil nutrient and water limitations in nine greenhouse studies. The studies primarily used wild Helianthus annuus, but also included a commercial and early domesticate of H. annuus and three additional wild species (Helianthus petiolaris Nutt., Helianthus deserticola Heiser, and Helianthus anomalus Blake). Well-watered plants of all species showed substantial gnight (0.023–0.225 mol m–2 s–1) and Enight (0.29–2.46 mmol m–2 s–1) measured as instantaneous gas exchange. Based on the potential for transpiration to increase mass flow of mobile nutrients to roots, we hypothesized that gnight and Enight would increase under limiting soil nutrients but found no evidence of responses in all six studies testing this. Based on known daytime responses to water limitation, we hypothesized that gnight and Enight would decrease when soil water availability was limited, and results from all four studies testing this supported our hypothesis. We also established that stomatal conductance at night was on average 5 times greater than cuticular conductance. Additionally, gnight and Enight varied nocturnally and across plant reproductive stages while remaining relatively constant as leaves aged. Our results further the ability to predict conditions under which nighttime water loss will be biologically significant and demonstrate that for Helianthus, gnight can be regulated.
机译:在九个温室研究中,我们调查了向日葵物种夜间电导(黑夜)和蒸腾作用(黑夜)对土壤养分和水分限制的响应。这些研究主要使用野生向日葵,但也包括商业化和早期驯化的H. annuus以及其他三种野生物种(Helianthus petiolaris Nutt。,Helianthus deserticola Heiser和Helianthus anomalus Blake)。按瞬时气体交换测量,所有物种的水分充足的植物显示出大量的骑士(0.023–0.225 mol m–2 s–1)和夜间(0.29–2.46 mmol m–2 s–1)。基于蒸腾作用增加根系流动性养分的质量流量的潜力,我们假设在有限的土壤养分条件下,骑士和夜间活动会增加,但在所有六项测试中均未发现反应的证据。根据已知的白天对水分限制的响应,我们假设当土壤水分有限时,night和Enight会减少,并且所有四项研究的结果都支持我们的假设。我们还确定,夜间气孔电导平均比表皮电导大5倍。此外,骑士和夜夜在植物繁殖阶段夜间变化,而随着叶片衰老而保持相对恒定。我们的结果进一步增强了预测夜间失水在生物学上具有重要意义的条件的能力,并证明了对于向日葵,可以调节骑士。

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  • 来源
    《Plant Physiology》 |2007年第1期|p.145-155|共11页
  • 作者单位

    Department of Plant Biology, University of Georgia, Athens, Georgia 30602–7271;

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  • 正文语种 eng
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