Correia M J, Coelho D, David M M
Universidade do Algarve, CDCTPV, Campus de Gambelas, 8000-117 Faro, Portugal.
Tree Physiol. 2001 Jul;21(10):645-53. doi: 10.1093/treephys/21.10.645.
Responses of leaf growth and leaf water relations to seasonal drought were monitored during two successive years in three cultivars (Galhosa, Espargal and Mulata) of Ceratonia siliqua L. growing in the field in southern Portugal. Leaf water relations of fully expanded leaves were characterized by pressureâ volume analysis, and morphometric measurements of petiolar xylem were made. The three cultivars differed with respect to onset of leaf initiation. In Galhosa, there was a sharp peak of leaf initiation in June that was immediately followed by a period when leaf expansion rates were highest. The onset of leaf growth occurred earlier in Espargal and Mulata than in Galhosa, and both cultivars continued producing new leaves throughout the summer period. The diurnal pattern of water relations in recently expanded leaves indicated that, during midsummer, Galhosa was the only cultivar in which leaf water potential did not fall below the turgor loss point and leaf relative water content remained above 90%. The occurrence of osmotic adjustment in recently expanded leaves of Galhosa was not demonstrated conclusively. However, during the dry season following leaf formation, a seasonal decrease in osmotic potential sufficient to maintain turgor was detected in 1-year-old leaves of Galhosa but not in 1-year-old leaves of the other cultivars. Among cultivars, Galhosa petioles had the widest xylem conduits, which may partly explain why midday leaf water potential in Galhosa never decreased below -2.0 MPa even at the end of the summer drought.
在葡萄牙南部田间种植的三种角豆树(Ceratonia siliqua L.)品种(Galhosa、Espargal和Mulata)中,连续两年监测了叶片生长和叶片水分关系对季节性干旱的响应。通过压力-容积分析表征完全展开叶片的水分关系,并对叶柄木质部进行形态测量。这三个品种在叶片起始时间方面存在差异。在Galhosa中,6月出现叶片起始的尖峰,随后紧接着是叶片扩展速率最高的时期。Espargal和Mulata的叶片生长起始时间比Galhosa早,并且两个品种在整个夏季都持续产生新叶。最近展开叶片的水分关系日变化模式表明,在仲夏期间,Galhosa是唯一叶片水势不低于膨压丧失点且叶片相对含水量保持在90%以上的品种。Galhosa最近展开叶片中渗透调节的发生没有得到确凿证明。然而,在叶片形成后的旱季,在Galhosa的1年生叶片中检测到足以维持膨压的渗透势季节性下降,而在其他品种的1年生叶片中未检测到。在各品种中,Galhosa叶柄的木质部导管最宽,这可能部分解释了为什么即使在夏季干旱末期,Galhosa的午间叶片水势也从未降至-2.0 MPa以下。