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When smaller is better: leaf hydraulic conductance and drought vulnerability correlate to leaf size and venation density across four Coffea arabica genotypes

机译:越小越好:四种阿拉伯咖啡基因型的叶片水力传导率和干旱脆弱性与叶片大小和叶脉密度相关

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摘要

Leaf hydraulic conductance (K-leaf) and drought vulnerability in terms of leaf water potential inducing 50% loss of K-leaf (P-50), were assessed in four genotypes of Coffea arabica L. We tested three hypotheses: (1) leaf P-50 is lower in small leaves with higher vein densities; (2) lower P-50 translates into lower K-leaf, limiting gas exchange rates and higher leaf mass per unit area (LMA); (3) P-50 values are coordinated with symplastic drought tolerance. We found partial support for Hypotheses 1 and 3, but not for Hypothesis 2. Significant correlations existed among leaf size, vein network and drought resistance. Smaller leaves displayed higher major vein density, higher K-leaf and more negative P-50. K-leaf was correlated with leaf gas exchange rates. A negative relationship was observed between K-leaf and LMA, whereas P-50 was found to be positively correlated with LMA. Across coffee genotypes, reduced leaf surface area and increased vein density shifts P-50 towards more negative values while not translating into higher LMA or lower K-leaf. Breeding crop varieties for both increased safety of the leaf hydraulic system towards drought-induced dysfunction and high gas exchange rates per unit of leaf area is probably a feasible target for future adaptation of crops to climate change scenarios
机译:在四种基因型阿拉伯咖啡中评估了叶片水力传导率(K-leaf)和干旱脆弱性,从而导致叶片水分势降低了K-leaf损失50%(P-50)。我们测试了三种假设:(1)叶片在具有较高静脉密度的小叶片中,P-50较低; (2)较低的P-50转化为较低的K叶片,限制了气体交换速率,并增加了单位面积的叶片质量(LMA); (3)P-50值与共生耐旱性协调。我们发现部分支持假设1和3,但不支持假设2。叶子大小,静脉网络和抗旱性之间存在显着相关性。较小的叶片显示较高的主静脉密度,较高的K叶和更多的负P-50。钾叶与叶片气体交换率相关。在K叶和LMA之间观察到负相关,而P-50与LMA正相关。在各种咖啡基因型中,减少的叶片表面积和增加的静脉密度会将P-50移向更大的负值,而不会转化为较高的LMA或较低的K叶。育种作物品种以提高叶片液压系统的安全性,以应对干旱引起的功能障碍,以及单位叶面积的气体交换率高,这可能是未来作物适应气候变化情景的可行目标

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