Contrasting adaptation of xylem to dehydration in two Vitis vinifera L. sub-species

J. Pouzoulet, A. Pivovaroff, E. Scudiero, M. E. D. Guzman, P. Rolshausen, L. Santiago
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引用次数: 7

Abstract

Xylem hydraulic properties of agricultural crop species can be linked to their region of origin, but because crop systems are often irrigated to reach optimum quality and yield, key differences in drought resistance are not often considered. We investigated how hydraulic conductivity and xylem vulnerability to drought-induced cavitation of two grapevine cultivars correspond to their centers of domestication with 'Merlot' (Vitis vinifera subspecies occidentalis) having been domesticated in a temperate forest region, and 'Thompson Seedless' (Vitis vinifera subspecies orientalis) domesticated in a semi-arid region. We used anatomical measurements and xylem vulnerability curves to evaluate hydraulic traits and drought resistance. Our results showed that 'Thompson Seedless' was significantly more vulnerable to drought-induced cavitation than 'Merlot'. Bench dehydration produced significantly different estimations of xylem vulnerability to cavitation in each cultivar. This result was consistent with anatomical measurement, with 'Thompson Seedless' stems having greater maximum stem-specific hydraulic conductivity, more vessels, higher vessel density and a greater lumen fraction than 'Merlot'. The relatively large amount of xylem vessels and lumen area in 'Thompson Seedless' is consistent with domestication in a semi-arid habitat where a greater number and size diversity of xylem vessels would be needed to transport water and meet evaporative demand as opposed to cultivars that were domesticated in temperate forest regions like 'Merlot'. These differences appear to expose 'Thompson Seedless' to high xylem vulnerability to cavitation.
两个葡萄亚种木质部对脱水适应的比较
农业作物的木质部水力特性可以与其原产地联系起来,但由于作物系统经常通过灌溉来达到最佳质量和产量,因此通常不考虑抗旱性的关键差异。我们研究了两种葡萄品种的水电性和木质部对干旱诱导空化的脆弱性如何对应于它们的驯化中心,其中“梅洛”(葡萄亚种西方)在温带森林地区驯化,而“汤普森无籽”(葡萄亚种东方)在半干旱地区驯化。我们用解剖测量和木质部易损曲线来评价水力性状和抗旱性。我们的研究结果表明,“汤普森无籽”比“梅洛”更容易受到干旱引起的空化的影响。实验脱水对不同品种木质部空化脆弱性的影响有显著差异。该结果与解剖测量结果一致,“汤普森无籽”茎比“梅洛”茎具有更大的最大茎特异性水力传导性,更多的血管,更高的血管密度和更大的管腔分数。“汤普森无籽”的木质部导管和管腔面积相对较大,与“梅洛”等温带森林地区驯化的品种相比,在半干旱栖息地驯化的品种需要更多数量和大小多样性的木质部导管来输送水分和满足蒸发需求。这些差异似乎暴露了“汤普森无籽”木质部对空化的高度脆弱性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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