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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Spatial difference of drought effect on photosynthesis of leaf subtending to cotton boll and its relationship with boll biomass
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Spatial difference of drought effect on photosynthesis of leaf subtending to cotton boll and its relationship with boll biomass

机译:干旱对棉花蒴果光合作用的空间差异及其与棉铃生物质的关系

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The leaf subtending to a cotton boll (LSCB) is vital to boll development and biomass, but few studies have examined the effects of drought on the source capacity of LSCBs on different fruiting branches (FBs). To investigate the response of LSCB photosynthesis on different FBs and the relationship of boll biomass to drought, a drought experiment was performed with three treatments: well-watered (WW, soil water relative content [SRWC] 75 +/- 5%), mild drought (MD, SRWC 60 +/- 5%), and severe drought (SD, SRWC 45 +/- 5%). Despite photosynthetic active radiation increasing under drought conditions, the pre-dawn leaf water potential, net photosynthesis rate (Pn), stomatal conductance (Gs), transpiration rate (Tr), and maximum quantum yield in PSII (Fv/Fm) under MD and SD significantly decreased when compared with WW, with a more pronounced decrease observed on upper FBs. Additionally, the maximum sucrose and hexose levels in LSCBs increased under drought conditions, whereas the maximum starch content decreased on FB10-11, but showed a varied trend on FB2-3 and FB6-7. Although carbohydrate levels in the LSCBs increased, biomass per cotton boll decreased. More importantly, the ratio of cotton boll biomass was significantly correlated to the maximum sucrose content ratio on each FB, indicating that sucrose allocation was important to cotton boll biomass. Cotton boll biomass notably decreased on upper FBs, but was maintained on lower FBs, indicating that drought promoted carbon allocation in older bolls. Thus, LSCBs and cotton bolls on upper FBs were more affected under drought conditions due to decreased photosynthesis and carbohydrate allocation.
机译:将叶片与棉花棉铃(LSCB)进行细化,对棉铃发育和生物量至关重要,但很少有研究检测干旱对不同果实分支(FBS)对LSCB源能力的影响。为了研究LSCB光合作用对不同FBS的响应和铃声生物质对干旱的关系,用三种处理进行干旱实验:浇水(WW,土壤水相对含量[SRWC] 75 +/- 5%),温和干旱(MD,SRWC 60 +/- 5%)和严重干旱(SD,SRWC 45 +/- 5%)。尽管在干旱条件下增加了光合活性辐射,但在MD和MD下的PSII(FV / FM)中的催眠叶水势,净光合速率(PN),气孔导率(GS),蒸腾率(TR)和最大量子产率。与WW相比,SD显着降低,在上部FBS上观察到更明显的降低。另外,在干旱条件下,LSCB中的最大蔗糖和己糖水平增加,而最大淀粉含量在FB10-11上降低,但在FB2-3和FB6-7上显示了不同的趋势。虽然LSCB中的碳水化合物水平增加,但每棉铃的生物量减少。更重要的是,棉铃生物质的比例与每个FB上的最大蔗糖含量比显着相关,表明蔗糖分配对棉铃生物质很重要。上FBS上棉铃生物质显着降低,但维持在较低的FBS上,表明干旱促进了较旧的棉铃中的碳分配。因此,由于光合作用和碳水化合物分配降低,在干旱条件下,上FBS上的LSCB和棉铃儿更受影响。

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