Graduate Program in Ecology and Natural Resources, Department of Biology, Federal University of Ceará, Fortaleza, Ceará, Brazil.
Centro de Ciências, Central Analítica, Federal University of Ceará, Fortaleza, Ceará, Brazil.
Plant Cell Environ. 2024 May;47(5):1685-1700. doi: 10.1111/pce.14829. Epub 2024 Jan 29.
Trichomes are common in plants from dry environments, and despite their recognized role in protection and defense, little is known about their role as absorptive structures and in other aspects of leaf ecophysiology. We combine anatomical and ecophysiological data to evaluate how trichomes affect leaf gas exchange and water balance during drought. We studied two congeneric species with pubescent leaves which co-occur in Brazilian Caatinga: Croton blanchetianus (dense trichomes) and Croton adenocalyx (sparse trichomes). We found a novel foliar water uptake (FWU) pathway in C. blanchetianus composed of stellate trichomes and underlying epidermal cells and sclereids that interconnect the trichomes from both leaf surfaces. The water absorbed by these trichomes is redistributed laterally by pectin protuberances on mesophyll cell walls. This mechanism enables C. blanchetianus leaves to absorb water more efficiently than C. adenocalyx. Consequently, the exposure of C. blanchetianus to dew during drought improved its leaf gas exchange and water status more than C. adenocalyx. C. blanchetianus trichomes also increase their leaf capacity to reflect light and maintain lower temperatures during drought. Our results emphasize the multiple roles that trichomes might have on plant functioning and the importance of FWU for the ecophysiology of Caatinga plants during drought.
茸毛在来自干燥环境的植物中很常见,尽管人们已经认识到它们在保护和防御方面的作用,但对于它们作为吸收结构的作用以及在叶片生态生理学的其他方面的作用却知之甚少。我们结合解剖学和生理生态学数据来评估茸毛在干旱期间如何影响叶片的气体交换和水分平衡。我们研究了两种在巴西 Caatinga 中共生的具柔毛的同属物种:Croton blanchetianus(密被茸毛)和 Croton adenocalyx(疏生茸毛)。我们在 C. blanchetianus 中发现了一种新的叶片水分吸收(FWU)途径,由星状茸毛和下面的表皮细胞和石细胞组成,这些细胞将来自两个叶片表面的茸毛相互连接。这些茸毛吸收的水分通过质壁上的果胶突起横向重新分配。这种机制使 C. blanchetianus 叶片比 C. adenocalyx 更有效地吸收水分。因此,在干旱期间,C. blanchetianus 暴露在露水中可以比 C. adenocalyx 更有效地改善其叶片气体交换和水分状况。C. blanchetianus 的茸毛还可以增加叶片反射光的能力,并在干旱期间保持较低的温度。我们的研究结果强调了茸毛在植物功能方面可能具有的多种作用,以及 FWU 在 Caatinga 植物干旱期间的生态生理学中的重要性。