[PDF][PDF] Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance.

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang, MM Guo… - 2016 - agriculturejournals.cz
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

[PDF][PDF] Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang, MM Guo… - pse.agriculturejournals.cz
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan - Plant Soil Environment, 2016 - agris.fao.org
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum). However, sensitivity of the photosynthetic electron transport system of …

Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance.

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang, MM Guo… - 2016 - cabidigitallibrary.org
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

[引用][C] Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang… - Plant, Soil and …, 2016 - cir.nii.ac.jp
Salt response of photosynthetic electron transport system in wheat cultivars with contrasting
tolerance | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 …

[PDF][PDF] Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang, MM Guo… - agriculturejournals.cz
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

[PDF][PDF] Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang, MM Guo… - researchgate.net
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li… - Plant, Soil and …, 2016 - econpapers.repec.org
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

[PDF][PDF] Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang, MM Guo… - core.ac.uk
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …

Salt response of photosynthetic electron transport system in wheat cultivars with contrasting tolerance

ZW Sun, LK Ren, JW Fan, Q Li, KJ Wang… - Plant, Soil and …, 2016 - ideas.repec.org
Soil salinity significantly decreases the photosynthetic efficiency and plant growth in wheat
(Triticum aestivum L.). However, sensitivity of the photosynthetic electron transport system of …