4.7 Article

pH-Dependent mitigation of aluminum toxicity in pea (Pisum sativum) roots by boron

期刊

PLANT SCIENCE
卷 318, 期 -, 页码 -

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2022.111208

关键词

Aluminum toxicity; RALF; Rhizosphere pH; Acid soil; Cell wall pectin

资金

  1. National Natural Science Foundation of China [32172672, 31672228]
  2. Ministry of Science and Technology of China [CB02-07, 2018YFD0201203, DL2020000027889001, G2021030008L]
  3. Guangdong Provincial Department of Science and Technology [2018A050506085, 20202003191030000, 202020031910300010]
  4. Higher Education Department of Guangdong Province [2020KCXTD025]

向作者/读者索取更多资源

Boron supply can mitigate the inhibition of root elongation induced by aluminum toxicity, and this alleviation effect is closely related to pH. Two concurrent mechanisms, namely, enhancing rhizosphere pH under strong acidic stress and stabilizing cell wall by cross-linking with RGII at relatively higher pH, explain the effect of boron in alleviating aluminum toxicity.
Boron (B) deficiency and aluminum (Al) toxicity are two major constraints on plants grown in acidic soils. B supply mitigates Al toxicity; however, the underlying mechanisms of this process remain elusive. In this work, Pisum sativum plants were used to address this issue. In the absence of pH buffers, B supply had a better mitigation effect on Al-induced root inhibition at pH 4.0 than pH 4.8. However, in MES buffered solution, mitigating effects of B on Al-induced root inhibition were more pronounced at pH 4.8, indicating a strong pH dependency of this process. Quantification of pH-dependent accumulation of Al in various root zones, modification of root pH by an exogenous addition of rapid alkalization factor (RALF), and measuring changes in the rhizosphere pH by fluorescent dyes have revealed operation of two concurrent mechanisms to explain alleviation of the inhibition of root elongation induced by Al toxicity by boron: (1) via enhancing rhizosphere pH under strong acidic stress (pH4.0), and (2) via stabilizing of cell wall by cross-linking with RGII at relatively higher pH (4.8). These findings provide scientific basis and support for the application of B fertilizers in the regions with inherited soil acidity.

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