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Wood Anatomy of Calyceraceae with Reference to Ecology, Habit, and Systematic Relationships

机译:Calyceraceae的木解剖学参考生态,习惯和系统关系

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摘要

Qualitative and quantitative data are presented for secondary xylem of 14 species of four genera of Calyceraceae; root wood is studied for acaulescent perennials and one annual. The wood anatomy of most species of Calycera has character states identical to those seen in wood of most Asteraceae (including phylads of Asteraceae thought to be basic in that family). Goodeniaceae have two features (tracheids, diffuse parenchyma) more primitive than corresponding conditions in Asteraceae and CaIyceraceae according to traditional criteria. Diversity in wood anatomy within Calyceraceae is explainable in terms of adaptation to particular ecological conditions. Although woods of the family as a whole are xeromorphic, most Calycera species show few adaptations to extreme xeromorphy. The highest degree of wood xeromorphy occurs in species of relatively high elevation or high latitude. The presence of pseudoscalariform pitting, with transitions to helical-banded secondary xylem vessels, very much like those of primary xylem, in Boopis graminea and Nastanthus spp., coupled with absence of Iibriform fibers (replaced by axial parenchyma) are probably related to expansion and contraction of the wood in response to fluctuation in moisture availability.
机译:定性和定量数据表示为对14种4个属的头花草科的次生木质部;根木材研究了无茎多年生植物和一个年度。 Calycera的大多数种类的木材解剖有(被认为是该家庭的基本菊科包括phylads)等同于那些最菊科的木看到人物的状态。草海桐有两个特征(管胞,弥漫性实质)比根据传统的标准对应于菊科和CaIyceraceae条件更原始的。多样性中的头花草科木材解剖是适应特定的生态条件方面解释的。虽然家庭整体的树林旱生,最Calycera物种的研究表明一些适应极端xeromorphy。木xeromorphy度最高的发生在相对高海拔或高纬度的物种。 pseudoscalariform点蚀的存在下,与过渡到螺旋带状二次木质部导管,非常像那些初生木质部的,在Boopis禾本科和Nastanthus属,加上没有Iibriform纤维(由轴向薄壁组织替代)都可能与膨胀和响应于波动中的水分的可用性木材的收缩。

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