火灾、霜冻和干旱限制了南部非洲Erica(Ericaceae)木材的结构多样性

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-08-01 DOI:10.1093/botlinnean/boad033
F. M. Akinlabi, Michael D Pirie, A. Oskolski
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引用次数: 1

摘要

Erica由大约860种常绿灌木和树木组成,分布在欧洲、非洲南部和马达加斯加。大约20个欧洲物种的木材结构得到了很好的研究,但尽管它与更广泛的地理范围内的适应有关,但尚未在更大的多样性中进行探索,尤其是在南部非洲谱系中。在这项研究中,我们检测了来自南部非洲的28种Erica的木材结构。在非洲Erica分支中,梯状穿孔板的损失可能是由中新世中期干旱和季节性增加引起的,其重新获得可能代表了高海拔物种E.nubigena对冰冻的适应。由于埃里卡的血管大多是孤立的,无孔气管元件可能形成一个辅助导管网络,而不是血管群。在干旱和炎热季节突出的栖息地,射线频率的增加可能有助于水胁迫引起的栓塞后血管的重新填充。较宽的射线是由非洲Erica和地中海E.australis组成的谱系的祖先。射线宽度与夏季干旱表现之间的负相关关系与Ojeda的模型一致,该模型解释了南非Erica播种机和呼吸机的多样性。
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Fire, frost, and drought constrain the structural diversity of wood within southern African Erica (Ericaceae)
Erica comprises ~860 species of evergreen shrubs and trees ranged from Europe to southern Africa and Madagascar. Wood structure of the around 20 European species is well studied, but despite its relevance to adaptation across the wider geographic range, it has not yet been explored across the much greater diversity, particularly of southern African lineages. In this study, we examine wood structure of 28 Erica species from southern Africa. In the African Erica clade, loss of scalariform perforation plates could be driven by increased aridity and seasonality in the mid-Miocene, and its re-gain can represent an adaptation to freezing in the high elevation species E. nubigena. As vessels in Erica are mostly solitary, imperforate tracheary elements probably form a subsidiary conduit network instead of vessel groups. Increase of ray frequency in habitats with a prominent dry and hot season probably facilitates refilling of vessels after embolism caused by water stress. Wider rays are ancestral for the lineage comprising African Erica and the Mediterranean E. australis. The negative correlation between ray width and expression of summer drought is consistent with Ojeda’s model explaining the diversification of seeders and resprouters among southern African Erica.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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