Leaf trait covariation and controls on leaf mass per area (LMA) following cotton domestication

Author:

Lei Zhangying12,Westerband Andrea C2,Wright Ian J234,He Yang1,Zhang Wangfeng1,Cai Xiaoyan5,Zhou Zhongli5,Liu Fang5,Zhang Yali1ORCID

Affiliation:

1. Key Laboratory of Oasis Eco-agriculture, Xinjiang Production and Construction Corps, Shihezi University , Shihezi , P.R. China

2. School of Natural Sciences, Faculty of Science and Engineering, Macquarie University , North Ryde , NSW , Australia

3. Hawkesbury Institute for the Environment, Western Sydney University , Locked Bag 1797, Penrith, NSW 2751 , Australia

4. ARC Centre for Plant Success in Nature & Agriculture, Western Sydney University , Penrith, NSW 2751 , Australia

5. State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences , Anyang, 455000 , P.R. China

Abstract

Abstract Background and Aims The process of domestication has driven dramatic shifts in plant functional traits, including leaf mass per area (LMA). It remains unclear whether domestication has produced concerted shifts in the lower-level anatomical traits that underpin LMA and how these traits in turn affect photosynthesis. Methods In this study we investigated controls of LMA and leaf gas exchange by leaf anatomical properties at the cellular, tissue and whole-leaf levels, comparing 26 wild and 31 domesticated genotypes of cotton (Gossypium). Key Results As expected, domesticated plants expressed lower LMA, higher photosynthesis and higher stomatal conductance, suggesting a shift towards the ‘faster’ end of the leaf economics spectrum. At whole-leaf level, variation in LMA was predominantly determined by leaf density (LD) both in wild and domesticated genotypes. At tissue level, higher leaf volume per area (Vleaf) in domesticated genotypes was driven by a simultaneous increase in the volume of epidermal, mesophyll and vascular bundle tissue and airspace, while lower LD resulted from a lower volume of palisade tissue and vascular bundles (which are of high density), paired with a greater volume of epidermis and airspace, which are of low density. The volume of spongy mesophyll exerted direct control on photosynthesis in domesticated genotypes but only indirect control in wild genotypes. At cellular level, a shift to larger but less numerous cells with thinner cell walls underpinned a lower proportion of cell wall mass, and thus a reduction in LD. Conclusions Taken together, cotton domestication has triggered synergistic shifts in the underlying determinants of LMA but also photosynthesis, at cell, tissue and whole-leaf levels, resulting in a marked shift in plant ecological strategy.

Funder

National Natural Science Foundation of China

Shihezi University

Macquarie University

ARC Centre for Plant Success in Nature & Agriculture

China Scholarship Council

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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