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首页> 外文期刊>Annals of Botany >Hydraulic connections of leaves and fruit to the parent plant in Capsicum frutescens (hot pepper) during fruit ripening
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Hydraulic connections of leaves and fruit to the parent plant in Capsicum frutescens (hot pepper) during fruit ripening

机译:果实成熟期间辣椒和辣椒叶片和果实与亲本的水力连接

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Background and Aims The hydraulic architecture and water relations of fruits and leaves of Capsicum frutescens were measured before and during the fruiting phase in order to estimate the eventual impact of xylem cavitation and embolism on the hydraulic isolation of fruits and leaves before maturation/abscission.Methods Measurements were performed at three different growth stages: ( 1) actively growing plants with some flowers before anthesis (GS1), ( 2) plants with about 50% fully expanded leaves and immature fruits (GS2) and ( 3) plants with mature fruits and senescing basal leaves (GS3). Leaf conductance to water vapour as well as leaf and fruit water potential were measured. Hydraulic measurements were made using both the high-pressure flow meter (HPFM) and the vacuum chamber ( VC) technique.Key Results The hydraulic architecture of hot pepper plants during the fruiting phase was clearly addressed to favour water supply to growing fruits. Hydraulic measurements revealed that leaves of GS1 plants as well as leaves and fruit peduncles of GS2 plants were free from significant xylem embolism. Substantial increases in leaf petiole and fruit peduncle resistivity were recorded in GS3 plants irrespective of the hydraulic technique used. The higher fraction of resistivity measured using the VC technique compared with the HPFM technique was apparently due to conduit embolism.Conclusions The present study is the first to look at the hydraulics of leaves and fruits during growth and maturation through direct, simultaneous measurements of water status and xylem efficiency of both plant regions at different hours of the day.
机译:背景和目的在结实期之前和期间测量了辣椒果实和叶子的水力结构和水的关系,以评估木质部空化和栓塞对成熟/脱落前果实和叶子的水力隔离的最终影响。在三个不同的生长阶段进行了测量:(1)开花前有一些花的活跃植物(GS1),(2)约有50%完全展开的叶片和未成熟果实(GS2)的植物,以及(3)具有成熟果实和衰老的基生叶(GS3)。测量了叶片对水蒸气的电导率以及叶片和果实的水势。使用高压流量计(HPFM)和真空室(VC)技术进行水力测量。关键结果明确指出了辣椒果实结实阶段的水力结构,有利于为生长的果实供水。水力测量表明,GS1植物的叶子以及GS2植物的叶子和花梗没有明显的木质部栓塞。不论使用何种水力技术,GS3植物的叶柄和果实花梗的电阻率均显着增加。使用VC技术测量的电阻率比使用HPFM技术测量的电阻率更高,这显然是由于导管栓塞引起的。结论本研究是第一个通过直接,同时测量水分状况来观察生长和成熟过程中叶片和果实的水力学的方法。两个植物区域在一天中的不同小时的木质素效率。

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