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建立土壤湿度与玉米生育前期生理、生长和发育之间的功能关系。

Developing Functional Relationships between Soil Moisture Content and Corn Early-Season Physiology, Growth, and Development.

作者信息

Vennam Ranadheer Reddy, Ramamoorthy Purushothaman, Poudel Sadikshya, Reddy Kambham Raja, Henry William Brien, Bheemanahalli Raju

机构信息

Department of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS 39762, USA.

Geosystems Research Institute, Mississippi State University, Mississippi State, MS 39762, USA.

出版信息

Plants (Basel). 2023 Jun 28;12(13):2471. doi: 10.3390/plants12132471.

Abstract

Drought is a severe threat to agriculture production that affects all growth stages of plants, including corn ( L.). Any factor affecting early seedling growth and development will significantly impact yield. Despite the recurrence of low rainfall during the growing seasons, corn responses to different early-season soil moisture content levels have not been investigated. In this study, we investigated how corn morpho-physiological and biomass traits responded to varied soil moisture content during the early vegetative stage. Two corn hybrids were grown in a pot-culture facility under five different soil moisture treatments (0.15, 0.12, 0.09, 0.06, and 0.03 m m volumetric water content, VWC) to assess the growth and developmental responses to varied soil moisture content during early-season growth (V2 to V7) stage. Sub-optimal soil moisture content limited plant growth and development by reducing physiological and phenotypic expression. Stomatal conductance and transpiration were decreased by an average of 65% and 59% across stress treatments relative to optimum conditions. On average, soil moisture deficit reduced the total leaf area by 71% and 72% compared to the control in 'A6659VT2RIB' and 'P1316YHR', respectively. Shoot and root dry weights were reduced by 74% and 43% under 0.03 m m VWC. An increase in the root-to-shoot ratio was noticed under low VWC conditions compared to the control. Based on the stress tolerance index, the physiology and leaf growth parameters were more sensitive to soil moisture deficit. Our results highlight the impact of sub-optimal soil moisture on physiology and morphological traits during early-season growth. 'P1316YHR' demonstrated better physiological performance under stress conditions, while 'A6659VT2RIB' produced relatively better root growth. The findings suggest that biomass partitioning between shoot and root components is dynamic and depends on stress intensity. The current findings can help to prioritize traits associated with the early-season drought tolerance in corn. The functional relationships developed between soil moisture content and growth and developmental responses can be integrated into corn crop modeling to allow better irrigation management decisions.

摘要

干旱是对农业生产的严重威胁,影响植物的所有生长阶段,包括玉米(Zea mays L.)。任何影响幼苗早期生长发育的因素都会对产量产生重大影响。尽管生长季节经常出现降雨不足的情况,但尚未对玉米在不同早期土壤水分含量水平下的反应进行研究。在本研究中,我们调查了玉米在营养生长早期对不同土壤水分含量的形态生理和生物量特征的反应。在盆栽设施中,两种玉米杂交种在五种不同的土壤水分处理(0.15、0.12、0.09、0.06和0.03 m m体积含水量,VWC)下生长,以评估在生长早期(V2至V7)阶段对不同土壤水分含量的生长和发育反应。次优土壤水分含量通过降低生理和表型表达限制了植物的生长发育。与最佳条件相比,整个胁迫处理下气孔导度和蒸腾作用平均分别降低了65%和59%。平均而言,与对照相比,土壤水分亏缺在“A6659VT2RIB”和“P1316YHR”中分别使总叶面积减少了71%和72%。在0.03 m m VWC条件下,地上部和根部干重分别减少了74%和43%。与对照相比,在低VWC条件下发现根冠比增加。基于胁迫耐受指数,生理和叶片生长参数对土壤水分亏缺更敏感。我们的结果突出了次优土壤水分对生长早期生理和形态特征的影响。“P1316YHR”在胁迫条件下表现出更好的生理性能,而“A6659VT2RIB”的根系生长相对较好。研究结果表明,地上部和根部组分之间的生物量分配是动态的,并且取决于胁迫强度。目前的研究结果有助于确定与玉米早期耐旱性相关的性状的优先级。土壤水分含量与生长发育反应之间建立的功能关系可以整合到玉米作物模型中,以实现更好的灌溉管理决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8da4/10346487/da0030324d85/plants-12-02471-g001.jpg

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